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X-WR-CALDESC:Events for Institute of Biomedical Engineering (BME)
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DTSTART;TZID=America/Toronto:20221011T120000
DTEND;TZID=America/Toronto:20221011T130000
DTSTAMP:20220929T200029Z
CREATED:20220929T200029Z
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UID:10000131-1665489600-1665493200@bme.utoronto.ca
SUMMARY:Compositional And Structural Gradients In Dental Enamel: From Nano- To Mesoscale
DESCRIPTION:Derk Joester\, PhD.\nAssociate Professor \nDepartment of Materials Science & Engineering Northwestern University \nEvanston\, IL\, USA \nCompositional And Structural Gradients In Dental Enamel: From Nano- To Mesoscale\nTuesday October 11\, 2022 \n12:00 pm \nBiography: Derk Joester is originally from Munich (Bavaria\, Germany) and studied Chemistry in Tübingen. He travelled to the US on a Fulbright Scholarship to study Chemistry and Biochemistry\, and then went on to get his Diploma in Organic Chemistry at ETH Zurich\, Switzerland\, in 1998. He received his Ph.D. for work carried out in organic\, supra-molecular chemistry with Prof. François Diederich at ETH Zurich in 2003\, and in the same year became a Postdoctoral Fellow at Weizmann Institute of Science in the lab of Prof. Lia Addadi in the Department of Structural Biology. From 2005-2007 he continued his research at the Weizmann Institute as a Minerva Fellow. In September 2007 he accepted a position at the Materials Science & Engineering Department at Northwestern University\, Evanston\, Illinois. In 2013\, he was promoted to Associate Professor. His research interests include biological mechanisms of crystal growth\, the role of organic/inorganic interfaces and confinement in phase transformations\, metastable precursor phases\, and the structure and properties biomineral-organic composites with hierarchical architectures. \nAbstract: Dental enamel\, the hard\, wear-resistant covering of human teeth has a hierarchical structure and composition. It is composed of hydroxylapatite crystallites\, thousands of which are bundled into rods that are organized in a three-dimensional weave. This architecture provides great fracture resistance and a much- enhanced fatigue life. It has long been known that the susceptibility of enamel to caries\, i.e. acid corrosion\, is greatly dependent on the presence of magnesium\, iron\, carbonate\, and fluoride ions. However\, imaging the distribution of these minor components in enamel has remained challenging.
URL:https://bme.utoronto.ca/event/compositional-and-structural-gradients-in-dental-enamel-from-nano-to-mesoscale/
LOCATION:Lecture Room 170 124 Edward Street\, 124 Edward Street\, Toronto
CATEGORIES:External Speaker Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20221011T120000
DTEND;TZID=America/Toronto:20221011T130000
DTSTAMP:20221005T172529Z
CREATED:20220512T151429Z
LAST-MODIFIED:20221005T172529Z
UID:10000017-1665489600-1665493200@bme.utoronto.ca
SUMMARY:Invited Academic Seminar Series - Zhi Pei Liang- Ultrafast Magnetic Resonance Spectroscopic Imaging for Brain Mapping  (Virtual Delivery with an in-person streaming option)
DESCRIPTION:*** This talk will be delivered virtually\, however the presentation will be streamed in the DC Red Room for those wanting to attend ‘in-person’. Cookies and coffee will be provided for attendees. ***\n\nSpeaker\nZhi Pei Liang\nFranklin W. Woeltge Professor\nDepartment of Electrical and Computer Engineering\nUniversity of Illinois at Urbana-Champaign \n\nAbstract\nSince its invention in the early 1970s\, magnetic resonance imaging (MRI) has become a premier tool for structural imaging and functional imaging using water proton spin signals. MR spectroscopic imaging (MRSI) has also long been recognized as a potentially powerful tool for noninvasive molecular imaging by exploiting the spin signals from other molecules. However\, state-of-the-art MRSI methods\, after more than four decades of development\, still far short of providing adequate spatial resolution\, speed\, and signal-to-noise ratio useful for routine clinical applications. \n  \nThe talk will discuss our recent “breakthroughs” in overcoming the longstanding technical barriers of MRSI-based molecular imaging using a new technology known as SPICE (SPectroscopic Imaging by exploiting spatiospectral CorrElation). SPICE uses a subspace mathematical framework to effectively integrate rapid scanning\, sparse sampling\, constrained image reconstruction\, quantum simulation\, and machine learning. Preliminary results show an unprecedented capability for simultaneous mapping of brain structures\, function and metabolism using intrinsic spin signals from multiple molecules. In this talk\, I’ll give an overview of SPICE and also show some “SPICY” experimental results we have obtained. \n  \nBiographical Sketch:\nZhi-Pei Liang received his Ph.D. degree in Biomedical Engineering from Case Western Reserve University in 1989.  He subsequently joined the University of Illinois at Urbana-Champaign (UIUC) first as a postdoctoral fellow (supervised by late Nobel Laureate Paul Lauterbur) and then as a faculty member in the Department of Electrical and Computer Engineering. Dr. Liang is currently the Franklin W. Woeltge Professor of Electrical and Computer Engineering; he also chairs the Computational Imaging Group in the Beckman Institute for Advanced Science and Technology.   Dr. Liang’s research is in the general area of magnetic resonance imaging and spectroscopy\, ranging from spin physics\, signal processing\, machine learning\, to biomedical applications. Research from his group has received a number of recognitions\, including the Sylvia Sorkin Greenfield Award (Medical Physics\, 1990)\, Whitaker Biomedical Engineering Research Award (1991)\, NSF CAREER Award (1995)\, Henry Magnuski Scholar Award (UIUC\, 1999)\, University Scholar Award (UIUC\, 2001)\, Isidor I. Rabi Award (International Society of Magnetic Resonance in Medicine\, 2009)\, IEEE-EMBC Best Paper Awards (2010\, 2011\, 2021)\, IEEE-ISBI Best Paper Award (2010\, 2015)\, Otto Schmitt Award (International Federation for Medical and Biological Engineering\, 2012)\, Technical Achievement Award (IEEE Engineering in Medicine and Biology Society\, 2014)\, Andrew Yang Research Award (UIUC\, 2017) and the Gold Medal from the International Society for Magnetic Resonance in Medicine (2022). Dr. Liang was selected as the Paul C. Lauterbur Lecturer for the 2016 ISMRM meeting and as the Savio L. Woo Distinguished Lecturer for the 2017 WACBE World Congress on Bioengeering.  He is a Fellow of the IEEE\, the International Society for Magnetic Resonance in Medicine and the American Institute for Medical and Biological Engineering. He was elected to the International Academy of Medical and Biological Engineering in 2012 and to the US National Academy of Inventors in 2021. Dr. Liang served as President of the IEEE Engineering in Medicine and Biology Society from 2011-2012 and received its Distinguished Service Award in 2015.  He was elected Chair-elect of the International Academy of Medical and Biological Engineering in 2021. \n\nHost\nHai-Ling Margaret Cheng
URL:https://bme.utoronto.ca/event/invited-academic-seminar-series-zhi-pei-liang/
LOCATION:Donnelly Centre for Cellular and Biomolecular Research\, Red Room\, 160 College Street\, Toronto\, Ontario\, M5S 3E1\, Canada
ATTACH;FMTTYPE=image/png:https://bme.utoronto.ca/wp-content/uploads/2022/05/zhi-pei-liang.png
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20221005T120000
DTEND;TZID=America/Toronto:20221005T123000
DTSTAMP:20221004T213735Z
CREATED:20220911T180731Z
LAST-MODIFIED:20221004T213735Z
UID:10000106-1664971200-1664973000@bme.utoronto.ca
SUMMARY:Graduate Seminar Series: Clinical Stream - Mahya Mirbagheri
DESCRIPTION:Graduate Seminar Series: Clinical Stream\nGraduate Seminar Series for the Institute of Biomedical Engineering (BME). This day is for clinical stream presenters.\nIf you would like to invite your Principal Investigator\, please add their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nPresentation Title: Enabling efficient information retrieval through a novel hybrid-architecture question-answer system and see-through\, gaze-optimized keyboard\nAbstract: This research aims to design and implement an alternative search engine to allow eye-gaze users to find answers to queries faster and more efficiently. A novel hybrid-architecture question and answer system will be programmed and deployed alongside an AR headset with embedded binocular eye-tracking. The overall system will comprise three components corresponding to the sequence of user-machine interaction. In the initial part\, the user specifies the query through eye gaze on a novel persistent\, see-through virtual keyboard. Next\, by applying advanced NLP techniques\, the system tries to understand the query and converses with the user to obtain the necessary information before generating an answer. Then\, in the last part\, the system retrieves data from the internet using search engine scraping techniques to generate the answer.\nSupervisor Name: Tom Chau\nYear of Study: 3\nProgram of Study: PhD\nZoom link: https://us02web.zoom.us/j/89610372821?pwd=azd4SCtYVWtreVovaGNPV1c2NGY2Zz09\nMeeting ID: 896 1037 2821\nPassword: 483329\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-seminar-series-clinical-stream-mahya-mirbagheri/
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20220930T123000
DTEND;TZID=America/Toronto:20220930T130000
DTSTAMP:20220929T213734Z
CREATED:20220829T170743Z
LAST-MODIFIED:20220929T213734Z
UID:10000073-1664541000-1664542800@bme.utoronto.ca
SUMMARY:Graduate Seminar Series: Molecular Stream - Chris Lee
DESCRIPTION:Graduate Seminar Series: Molecular Stream\nGraduate Seminar Series for the Institute of Biomedical Engineering (BME). This day is for molecular stream presenters.\nIf you would like to invite your Principal Investigator\, please add their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nPresentation Title: De Novo Design of Novel Peptide Structure\nAbstract: 164 College Street\nSupervisor Name: Michael Garton\nYear of Study: 2\nProgram of Study: MASc\nZoom link: https://us02web.zoom.us/j/89610372821?pwd=azd4SCtYVWtreVovaGNPV1c2NGY2Zz09\nMeeting ID: 896 1037 2821\nPassword: 483329\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-seminar-series-molecular-stream-chris-lee/
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20220930T120000
DTEND;TZID=America/Toronto:20220930T123000
DTSTAMP:20220929T213734Z
CREATED:20220824T165250Z
LAST-MODIFIED:20220929T213734Z
UID:10000032-1664539200-1664541000@bme.utoronto.ca
SUMMARY:Graduate Seminar Series: Molecular Stream - Julien Couture-Senécal
DESCRIPTION:Graduate Seminar Series: Molecular Stream\nGraduate Seminar Series for the Institute of Biomedical Engineering (BME). This day is for molecular stream presenters.\nIf you would like to invite your Principal Investigator\, please add their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nPresentation Title: Optimization of ionizable lipids for mRNA delivery\nAbstract: Lipid nanoparticles (LNPs) play a key role in the efficacy of mRNA vaccines. Efforts have focused on engineering the ionizable lipid component as it has dramatic effects on safety and efficacy. In this work\, we’ve designed a new ionizable lipid optimized for intramuscular administration of mRNA. We also provided insights on the effect of molecular design and nanoparticle physicochemical parameters on mRNA delivery efficiency.\nSupervisor Name: Omar F. Khan\nYear of Study: 3\nProgram of Study: PhD\nZoom link: https://us02web.zoom.us/j/89610372821?pwd=azd4SCtYVWtreVovaGNPV1c2NGY2Zz09\nMeeting ID: 896 1037 2821\nPassword: 483329\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-seminar-series-molecular-stream-julien-couture-senecal/
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20220929T120000
DTEND;TZID=America/Toronto:20220929T123000
DTSTAMP:20220927T161624Z
CREATED:20220912T210236Z
LAST-MODIFIED:20220927T161624Z
UID:10000109-1664452800-1664454600@bme.utoronto.ca
SUMMARY:Research: From academia to venture capital (In-person Guest Lecture)
DESCRIPTION:Graduate Seminar Series: Cell and Tissue Stream \n*Note this lecture can count towards your seminar series requirement  \nPresentation Title: Research: From academia to venture capital \nLocation:  WB116 \nAbstract: \nAs scientists\, we continuously strive to push our understanding of the world. As scientists in venture capital\, we try to apply the learnings from academic research to help identify\, evaluate\, and build novel companies. Join us for a discussion on the mission and philosophy of the Research team at Foresite Capital\, and the similarities and differences between research in academia and venture. \nLecturers: \nScott McIsaac\, PhD \nScott is a scientist and technologist\, having made numerous contributions in the fields of synthetic biology\, systems biology\, and the computational and experimental study of transcriptional regulation. Scott comes to Foresite from Calico (a Google/Alphabet-funded life sciences company)\, where he led an independent research laboratory as one of its earliest hires. Scott received his Ph.D. from Princeton University with David Botstein and his postdoctoral training at CalTech with Frances Arnold. \nJacob Barlow\, PhD \nJacob has a broad range of academic and industry research experience in sequencing technologies\, drug delivery\, diagnostics\, and the human microbiome. Previously\, Jacob was a fellow at Northpond Ventures handling life science tools and diagnostics investments and completed his Ph.D. in Bioengineering from CalTech in the lab of Rustem Ismagilov. He also worked on RNA delivery at Moderna Tx and oral peptide delivery at Entrega Tx. \n 
URL:https://bme.utoronto.ca/event/graduate-seminar-series-cell-and-tissue-stream-ivy-hon/
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20220929T120000
DTEND;TZID=America/Toronto:20220929T123000
DTSTAMP:20220928T213730Z
CREATED:20220912T210236Z
LAST-MODIFIED:20220928T213730Z
UID:10000111-1664452800-1664454600@bme.utoronto.ca
SUMMARY:Graduate Seminar Series: Cell and Tissue Stream - Ivy Hon
DESCRIPTION:Graduate Seminar Series: Cell and Tissue Stream\nGraduate Seminar Series for the Institute of Biomedical Engineering (BME). This day is for cell and tissue stream presenters.\nIf you would like to invite your Principal Investigator\, please add their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nPresentation Title: Guest Lecture: TBA\nAbstract: TBD\nSupervisor Name: N/A\nYear of Study: N/A\nProgram of Study: PhD\nZoom link: https://us02web.zoom.us/j/89610372821?pwd=azd4SCtYVWtreVovaGNPV1c2NGY2Zz09\nMeeting ID: 896 1037 2821\nPassword: 483329\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-seminar-series-cell-and-tissue-stream-ivy-hon-2/
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20220927T110000
DTEND;TZID=America/Toronto:20220927T120000
DTSTAMP:20220907T140311Z
CREATED:20220907T140311Z
LAST-MODIFIED:20220907T140311Z
UID:10000096-1664276400-1664280000@bme.utoronto.ca
SUMMARY:TBEP Research Seminar: Wnt in heart formation and regeneration
DESCRIPTION:Daniela Panáková\, Ph.D. \nGroup Leader \nMax Delbrück Center\, Berlin\, Germany \nDaniela Panáková received her PhD in 2005 at Max Planck Institute of Molecular Cell Biology and Genetics\, Dresden\, Germany under the supervision of Suzanne Eaton. She has worked with Drosophila model on the concept of how the hydrophobic morphogens such as Wnt can spread in tissues over long distances\, and identified a novel mechanism whereby lipoprotein particles act as vehicles for the lipid-linked proteins\, and are required for Wingless and Hedgehog signaling. In 2007\, as a Human Frontier Science Program Long-term Fellow she moved to Harvard Medical School/Brigham & Women’s Hospital\, Boston\, MA to work with Calum MacRae. Using zebrafish\, she has demonstrated non-canonical Wnt signaling modulates electrical coupling in the developing heart through negative regulation of L-type Ca2+ channel function\, which established a novel limb in non-canonical Wnt signaling. She was awarded highly esteemed Helmholtz Young Investigator Award to start her own research lab at Max Delbrück Center in Berlin\, Germany in 2011. Teaching\, training and mentoring form a great part of her endeavors as an independent investigator. She has served as a Confidential Advisor for both the PhD and Postdoc body at the MDC and was part of the Gender Equality and Equal Opportunity team at the MDC. \nDaniela Panáková’s long-standing research interest addresses how developmental signaling and physiology regulate cellular responses including cell fate and differentiation. Her main focus is to decipher how Wnt pathway interacts with mechanical and electrical cues in cell and zebrafish models. Her group made significant contributions to the understanding of heart formation and function\, and more recently also to heart regeneration. Her ultimate goal is to uncover cellular mechanisms underlying cardiovascular diseases including heart failure. Her research focuses on cardiac biology\, but on the broader scale has implication for cell\, tissue and organ biology.
URL:https://bme.utoronto.ca/event/tbep-research-seminar-wnt-in-heart-formation-and-regeneration/
CATEGORIES:External Speaker Series
ORGANIZER;CN="Translational Biology and Engineering Program (TBEP)":MAILTO:reception.tbep@utoronto.ca
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20220923T120000
DTEND;TZID=America/Toronto:20220923T123000
DTSTAMP:20220922T213737Z
CREATED:20220903T173742Z
LAST-MODIFIED:20220922T213737Z
UID:10000093-1663934400-1663936200@bme.utoronto.ca
SUMMARY:Graduate Seminar Series: Molecular Stream - Thaisa Luup Kannen
DESCRIPTION:Graduate Seminar Series: Molecular Stream\nGraduate Seminar Series for the Institute of Biomedical Engineering (BME). This day is for molecular stream presenters.\nIf you would like to invite your Principal Investigator\, please add their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nPresentation Title: Multi-axes electromagnetic sample handler for live imaging of organoids structure and dynamics\nAbstract:\nOrganoids are a flexible experimental model to explore countless human conditions. They can emulate essential specific functions of an in vivo system in physiological and pathological conditions. Acquiring three-dimensional (3D) volumetric images is critical while challenging in many live organoid-based studies due to these sample structures. Non-idealities worsen as more profound images are acquired. Furthermore\, there are unavoidable distortions from the imaging system. Current methods to decrease these issues are often expensive\, highly complex\, limited to specific usage\, or unsuitable for live organoid experiments.\nBy increasing the samples’ freedom of movement within the microscope field of view for imaging samples at different angles\, these non-idealities can be minimized. We are developing a spherical-shaped electromagnetic sample handler to provide a multi-axis rotational imaging system. The sample handler has evenly distributed electromagnets individually controlled by an open-loop micro-stepping control system. It controls the electromagnetic sample handler over samples’ x-y-z-theta space. Methods were developed to measure the sample handler quality\, rotation precision\, handling\, and imaging stability.\nAn image reconstruction methodology is coded to minimize light penetration limitations\, and the same will be made for the point spread function distortion in the z axis. An optimization algorithm will select the optimum angle\, which better shows the organoid structure and dynamics. The algorithm will use images from different angles to build the reconstructed image\, reducing non-idealities for thicker live organoids. The algorithm’s validation will be made with a nano printed sample.\nImage acquisition through this device will better represent biological specimens and promote more precise quantitative microscopy analyses. It can improve the quality of live 3D organoid images by optimizing angular positioning during imaging acquisition\, reducing non-idealities and working distance limitations. It is a cost-effective\, robust\, and user-friendly tool\, and it will open new possibilities for organoid research.\nSupervisor Name: Christopher Yip\nYear of Study: 3\nProgram of Study: PhD\nZoom link: https://us02web.zoom.us/j/89610372821?pwd=azd4SCtYVWtreVovaGNPV1c2NGY2Zz09\nMeeting ID: 896 1037 2821\nPassword: 483329\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-seminar-series-molecular-stream-thaisa-luup-kannen/
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20220921T123000
DTEND;TZID=America/Toronto:20220921T130000
DTSTAMP:20220907T175245Z
CREATED:20220907T175245Z
LAST-MODIFIED:20220907T175245Z
UID:10000097-1663763400-1663765200@bme.utoronto.ca
SUMMARY:Graduate Seminar Series: Clinical Stream - Azadeh Assadi
DESCRIPTION:Graduate Seminar Series: Clinical Stream\nGraduate Seminar Series for the Institute of Biomedical Engineering (BME). This day is for clinical stream presenters.\nIf you would like to invite your Principal Investigator\, please add their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nPresentation Title: Applying clinician macrocognition in designing decision support\nAbstract:\nIntroduction: Compared to children without congenital heart disease (CHD)\, those with CHD\nexperience a significantly higher hospital admission\, morbidity\, and mortality associated with\ntheir acute presentation to the emergency department (ED). The burden of residual lesions and\nthe natural history of many CHDs predisposes these children to hemodynamic fragility with\ncommon childhood illnesses and altered response to traditional resuscitative measures. Their\noptimal outcome requires CHD-expertise which is limited in local EDs. Hence\, there is an urgent\nneed for a sociotechnological solution to support the management of these patients in the ED. In\nthis study\, a CHD-specific clinical decision support system (CDSS) is developed and evaluated\nbased on CHD-experts and ED physicians’ macrocognition.\nMethods: Using the critical decision method\, a cognitive task analysis (CTA) of CHD-experts\nand ED physicians was conducted to understand their macrocognitive differences when\nmanaging acutely ill pediatric CHD patients. Framework analysis was then used to identify key\ndecision requirements and design concepts to design the prototype CDSS using decision centered\ndesign. Heuristic and usability testing was completed on versions of the proposed CDSS while the effect of the CDSS on ED physicians’ decision making was tested using a scenario-based\nsimulation study.\nResults: The most pertinent differences in decision making between CHD-experts and ED\nphysicians were in sensemaking\, anticipation\, and managing complexity. Accordingly\, the key\ndecision requirements and design concepts incorporated into the prototype CDSS involved\nappreciating the CHD physiology\, identifying CHD-specific diagnoses\, and selecting\nappropriate CHD interventions. Use of the CDSS significantly improved ED physicians’ CHDspecific decision-making (M= 5.43\, 95%CI 3.7-7.2).\nConclusion: This study reveals differences in CHD-expert and ED physicians’ macrocognition\nand decision making while also proposing a design approach to develop and evaluate a CHDspecific CDSS. These findings can be used to design other sociotechnological solutions to\nsupport the care of pediatric CHD patients.\nSupervisor Name: Patricia Trbovich\nYear of Study: 5\nProgram of Study: PhD\nZoom link: https://us02web.zoom.us/j/89610372821?pwd=azd4SCtYVWtreVovaGNPV1c2NGY2Zz09\nMeeting ID: 896 1037 2821\nPassword: 483329\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-seminar-series-clinical-stream-azadeh-assadi-2/
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20220921T123000
DTEND;TZID=America/Toronto:20220921T130000
DTSTAMP:20220920T213744Z
CREATED:20220907T175245Z
LAST-MODIFIED:20220920T213744Z
UID:10000098-1663763400-1663765200@bme.utoronto.ca
SUMMARY:Graduate Seminar Series: Clinical Stream - Azadeh Assadi
DESCRIPTION:Graduate Seminar Series: Clinical Stream\nGraduate Seminar Series for the Institute of Biomedical Engineering (BME). This day is for clinical stream presenters.\nIf you would like to invite your Principal Investigator\, please add their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nPresentation Title: Applying clinician macrocognition in designing decision support\nAbstract:\nIntroduction: Compared to children without congenital heart disease (CHD)\, those with CHD\nexperience a significantly higher hospital admission\, morbidity\, and mortality associated with\ntheir acute presentation to the emergency department (ED). The burden of residual lesions and\nthe natural history of many CHDs predisposes these children to hemodynamic fragility with\ncommon childhood illnesses and altered response to traditional resuscitative measures. Their\noptimal outcome requires CHD-expertise which is limited in local EDs. Hence\, there is an urgent\nneed for a sociotechnological solution to support the management of these patients in the ED. In\nthis study\, a CHD-specific clinical decision support system (CDSS) is developed and evaluated\nbased on CHD-experts and ED physicians’ macrocognition.\nMethods: Using the critical decision method\, a cognitive task analysis (CTA) of CHD-experts\nand ED physicians was conducted to understand their macrocognitive differences when\nmanaging acutely ill pediatric CHD patients. Framework analysis was then used to identify key\ndecision requirements and design concepts to design the prototype CDSS using decision centered\ndesign. Heuristic and usability testing was completed on versions of the proposed CDSS while the effect of the CDSS on ED physicians’ decision making was tested using a scenario-based\nsimulation study.\nResults: The most pertinent differences in decision making between CHD-experts and ED\nphysicians were in sensemaking\, anticipation\, and managing complexity. Accordingly\, the key\ndecision requirements and design concepts incorporated into the prototype CDSS involved\nappreciating the CHD physiology\, identifying CHD-specific diagnoses\, and selecting\nappropriate CHD interventions. Use of the CDSS significantly improved ED physicians’ CHDspecific decision-making (M= 5.43\, 95%CI 3.7-7.2).\nConclusion: This study reveals differences in CHD-expert and ED physicians’ macrocognition\nand decision making while also proposing a design approach to develop and evaluate a CHDspecific CDSS. These findings can be used to design other sociotechnological solutions to\nsupport the care of pediatric CHD patients.\nSupervisor Name: Patricia Trbovich\nYear of Study: 5\nProgram of Study: PhD\nZoom link: https://us02web.zoom.us/j/89610372821?pwd=azd4SCtYVWtreVovaGNPV1c2NGY2Zz09\nMeeting ID: 896 1037 2821\nPassword: 483329\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-seminar-series-clinical-stream-azadeh-assadi/
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20220921T120000
DTEND;TZID=America/Toronto:20220921T123000
DTSTAMP:20220920T213744Z
CREATED:20220906T175315Z
LAST-MODIFIED:20220920T213744Z
UID:10000094-1663761600-1663763400@bme.utoronto.ca
SUMMARY:Graduate Seminar Series: Clinical Stream - Runjie (Bill) Shi
DESCRIPTION:Graduate Seminar Series: Clinical Stream\nGraduate Seminar Series for the Institute of Biomedical Engineering (BME). This day is for clinical stream presenters.\nIf you would like to invite your Principal Investigator\, please add their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nPresentation Title: Next Generation Visual Field Testing\nAbstract: The visual field test (also known as perimetry) is a psychophysical test to test the light sensitivity across a grid of locations in a patient’s visual field. It is an indispensable tool for ophthalmologists to diagnose and monitor eye diseases\, such as glaucoma. Current perimetry machines (“perimeters”) are big\, expensive\, and require trained technicians to operate. Current algorithms take a long time (3-5 minutes) to perform each eye’s test. In this talk I will briefly describe our efforts on modernizing the visual field test. On the hardware front\, we are making the test portable and inexpensive by adapting the test to a portable VR platform. On the software front\, we are incorporating data-driven algorithms to reconstruct the visual field at test time using fewer trials. Lastly I will describe how these advances allow for unprecedented novel applications of the visual field test\, such as in mobile clinics in low-resource settings.\nSupervisor Name: Willy Wong\nYear of Study: 3\nProgram of Study: PhD\nZoom link: https://us02web.zoom.us/j/89610372821?pwd=azd4SCtYVWtreVovaGNPV1c2NGY2Zz09\nMeeting ID: 896 1037 2821\nPassword: 483329\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-seminar-series-clinical-stream-runjie-bill-shi/
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20220920T120000
DTEND;TZID=America/Toronto:20220920T130000
DTSTAMP:20220919T195231Z
CREATED:20220704T182645Z
LAST-MODIFIED:20220919T195231Z
UID:10000042-1663675200-1663678800@bme.utoronto.ca
SUMMARY:Global Speaker Series: Gordon Fishell\, PhD – Harvard University
DESCRIPTION:The Medicine by Design Global Speaker Series invites established and emerging international leaders in regenerative medicine to engage with our extraordinary community of researchers and clinicians. Medicine by Design\, in partnership with the McEwen Stem Cell Institute\, is pleased to welcome Gordon Fishell\, PhD\, Professor of Neurobiology\, Harvard Medical School and the Stanley Center at the Broad. The title of this talk will be\, “The intimate dependence and remarkable precision of cortical interneurons.” In Person – Register Here\nVirtual – Register Here\nHybrid event\, with in-person and virtual options\nIn-person will be held at the Terrence Donnelly Centre for Cellular & Biomolecular Research\, Red Room.\nVirtual event links will be sent after registration.\nMore About gordon fishell:\nProfessor Fishell teaches in the department of Neurobiology at Harvard Medical center and is an institute member of the Broad institute. He was previously the associate director of the New York University (NYU) Neuroscience Institute\, Julius Raines Professor of Neuroscience and Physiology at NYU\, and director of the graduate program in neuroscience and physiology at the NYU School of Medicine. Professor Fishell completed his Ph.D. in neurobiology from the University of Toronto and conducted postdoctoral research at Columbia University and the Rockefeller University. His laboratory is interested in how the architecture of brain circuits are assembled\, with a special focus on the diverse populations of inhibitory interneurons that are found in both pallial and subpallial telencephalon. Professor Fishell’s laboratory has spent the past 20 years working to understand the inhibitory cells that regulate excitatory signaling in the brain.\n Learn more about Gordon Fishell
URL:https://bme.utoronto.ca/event/global-speaker-series-gordon-fishell-phd-harvard-university/
LOCATION:Donnelly Centre for Cellular and Biomolecular Research\, Red Room\, 160 College Street\, Toronto\, Ontario\, M5S 3E1\, Canada
CATEGORIES:External Speaker Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20220916T123000
DTEND;TZID=America/Toronto:20220916T130000
DTSTAMP:20220915T212307Z
CREATED:20220824T165250Z
LAST-MODIFIED:20220915T212307Z
UID:10000033-1663331400-1663333200@bme.utoronto.ca
SUMMARY:Graduate Seminar Series: Molecular Stream - Mohamed Elsayed
DESCRIPTION:Graduate Seminar Series: Molecular Stream\nGraduate Seminar Series for the Institute of Biomedical Engineering (BME). This day is for molecular stream presenters.\nIf you would like to invite your Principal Investigator\, please add their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nPresentation Title: Towards automated cell isolation using Optoelectronic Tweezers and Digital Microfluidics\nAbstract:\nOptoelectronic tweezers uses patterned illumination to generate electric field gradients\, inducing dielectrophoretic forces that can move objects.\nI will introduce light-driven micromotors and micromachines based on optoelectronic tweezers. Using a circular micro-gear as a unit component\, we demonstrate a range of new functionalities\, including a touchless micro- feed-roller that allows the programming of precise three-dimensional particle trajectories\, multi-component micro-gear trains that serve as torque- or velocity-amplifiers\, and micro- rack-and-pinion systems that serve as microfluidic valves.\nI will present the utility of this technique in a biological application through a project “Autonomous control of optoelectronic microrobots for brain stem cell isolation”. There are various exciting research questions in the field of neuroscience that require harvesting stem cells from mouse brains. Current methods for harvesting stem cells have poor yield and often require pooling cells from various mice\, placing serious limitations on the type of research. We explored using the optoelectronic micro-robot to harvest stem cells from primary dissection cell suspensions. These are sensitive cells so they benefit strongly from the gentle approach offered by the optoelectronic micro-robot.\nI will then switch gears to present work done to date in another project using digital microfluidics “Automated processing of sexual assault samples to enable rapid DNA analysis”. Sexual assault samples contain DNA from multiple sources\, making them one of the most challenging types of forensic samples to analyze\, often beyond the reach of rapid DNA analyzers. The goal of this project is to develop a workflow that facilitates the use of rapid DNA typing instruments for sexual assault samples.\nSupervisor Name: Aaron Wheeler\nYear of Study: 5\nProgram of Study: PhD\nZoom link: https://us02web.zoom.us/j/89610372821?pwd=azd4SCtYVWtreVovaGNPV1c2NGY2Zz09\nMeeting ID: 896 1037 2821\nPassword: 483329\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-seminar-series-molecular-stream-mohamed-elsayed/
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20220915T120000
DTEND;TZID=America/Toronto:20220915T123000
DTSTAMP:20220914T210730Z
CREATED:20220824T165250Z
LAST-MODIFIED:20220914T210730Z
UID:10000034-1663243200-1663245000@bme.utoronto.ca
SUMMARY:Graduate Seminar Series: Cell and Tissue Stream - Aaron Rosenstein
DESCRIPTION:Graduate Seminar Series: Cell and Tissue Stream\nGraduate Seminar Series for the Institute of Biomedical Engineering (BME). This day is for cell and tissue stream presenters.\nIf you would like to invite your Principal Investigator\, please add their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nPresentation Title: Recording cellular histories in DNA with prime editing\nAbstract: Recording cellular stimuli into DNA has been a common aspiration of synthetic biologists for the purposes as both a research tool and eventual clinical diagnostic application. Whether as a means of understanding interactions on the single-cell level\, or reconstructing histories of cellular events\, a cellular DNA recording device has widespread utility. Previous attempts at building a robust recorder\, however\, have fallen short on this goal. Here I present steps taken towards developing a recording device which can incorporate sequential analog signals of events into genomic DNA. This device will leverage prime editing as a means of integrating signals encoded on prime editing guide RNAs (pegRNAs) into a specific region of the genome termed recording loci\, while pegRNA expression will be induced by the magnitude of signals respectively. I envisage a mechanism whereby repeated prime editing can construct an organized cellular record of event histories. Development of this device requires empirical identification of the sequence-determinants of effective prime editing\, as well as constructs for translation of diverse cellular signals into pegRNA messages of commensurate magnitude. Preliminary results indicate a baseline for recording synthetic signals in this manner. Ultimately this project will yield a robust recording device which can meet investigator’s needs\, and can hopefully be adopted as both a research tool and clinical diagnostic device.\nSupervisor Name: Dr. Michael Garton\nYear of Study: 2\nProgram of Study: PhD\nZoom link: https://us02web.zoom.us/j/89610372821?pwd=azd4SCtYVWtreVovaGNPV1c2NGY2Zz09\nMeeting ID: 896 1037 2821\nPassword: 483329\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-seminar-series-cell-and-tissue-stream-aaron-rosenstein/
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20220914T120000
DTEND;TZID=America/Toronto:20220914T130000
DTSTAMP:20220913T193731Z
CREATED:20220909T192346Z
LAST-MODIFIED:20220913T193731Z
UID:10000049-1663156800-1663160400@bme.utoronto.ca
SUMMARY:Careers Beyond Academia - Laura Smith\, PhD Principal Scientist\, AmacaThera and Stephanie Fisher\, PhD Senior Scientist\, BlueRock Therapeutics
DESCRIPTION:About the series\nTo what extent can we plan and design our careers? How much depends on our environment\, the choices we make\, the opportunities that present themselves\, the networks we build\, and the achievements and failures we experience along the way? Medicine by Design and Stem Cell Network have partnered to host Careers Beyond Academia\, a virtual career seminar series that will profile a wide variety of different careers available to trainees who hold a degree in the life sciences. The goal of the series is to help trainees understand the different careers available outside of academia\, the skills required for certain positions\, and some of the daily functions of those positions.\nVirtual Event – Register Here\nSpeakers:\nLaura Smith\, PhDPrincipal Scientist\, AmacaThera\nStephanie Fisher\, PhDSenior Scientist\, BlueRock Therapeutics\nEach session will feature two speaker presentations that will be recorded and available on both Medicine by Design and Stem Cell Network’s website and YouTube channel. Trainees will be able to participate in a joint Q&A and panel discussion during the session.\n 
URL:https://bme.utoronto.ca/event/careers-beyond-academia-laura-smith-phd-principal-scientist-amacathera-and-stephanie-fisher-phd-senior-scientist-bluerock-therapeutics/
LOCATION:Virtual
CATEGORIES:External Speaker Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20220913T120000
DTEND;TZID=America/Toronto:20220913T130000
DTSTAMP:20220901T132242Z
CREATED:20220606T143441Z
LAST-MODIFIED:20220901T132242Z
UID:10000030-1663070400-1663074000@bme.utoronto.ca
SUMMARY:Invited Academic Seminar Series – Ehsan Hoque- Embedding human values in digital medicine (Hybrid Delivery)
DESCRIPTION:Speaker\nEhsan Hoque\nAssociate Professor\nComputer Science\nUniversity of Rochester \n\nAbstract\nMany argue that making interoperability\, federal incentives\, barcoding\, and deep learning is the core of revolutionizing healthcare information technology. It is. But it is also about developing technologies that align with our values and integrate effortlessly with our lifestyles and healthcare workflow while improving access and equity. \nIn this talk\, I will highlight the following projects and their design principles\, technical contributions\, and a roadmap to integrating them within the existing healthcare workflow. \n1)      How to develop an automated screening and tracking of Parkinson’s disease—the fastest-growing neurological disability —through a series of tasks on a webcam anytime\, anywhere? \n2)      How can AI assist doctors in improving empathy and listening skills as they help terminally ill patients make critical decisions? \n3)      How can virtual avatars with standardized\, repeatable\, and objective feedback improve the social skills of individuals who struggle with socio-emotional communication\, such as those with Autism? \nAlong with technical contributions\, I will reflect on the journey of how a trained computer scientist like myself could get into healthcare research driven by personal circumstances and enabled by excellent collaborators. \nBio: Ehsan Hoque is an associate professor of computer science at the University of Rochester\, where he co-leads the Rochester Human-Computer Interaction (ROC HCI) Group. From 2018-2019\, he was also the Interim Director of the Goergen Institute for Data Science. Ehsan earned his Ph.D. from MIT in 2013\, where the MIT Museum highlighted his dissertation—the development of an intelligent agent to improve human ability — as one of MIT’s most unconventional inventions. Building on the work/patent\, Microsoft released “Speaker Coach” available in PowerPoint. Ehsan is best known for introducing and extensively validating the idea of using AI to train and enhance elements of basic human ability. \nEhsan and his students’ work has been recognized by NSF CAREER Award\, MIT TR35\, Young Investigator Award by the US Army Research Office (ARO). In 2017\, Science News named him one of the 10 scientists to watch\, and in 2020\, the National Academy of Medicine recognized him as one of the emerging leaders in health and medicine. Ehsan is blessed to be the primary caregiver of his younger brother\, 22\, who is nonverbal and diagnosed with Autism and down syndrome. \n\nHost\nLueder Kahrs
URL:https://bme.utoronto.ca/event/invited-academic-seminar-series-ehsan-hoque/
LOCATION:MS3153
ATTACH;FMTTYPE=image/jpeg:https://bme.utoronto.ca/wp-content/uploads/2022/06/Hoque-Ehsan-Nov-2021-LR.jpg
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20220825T113000
DTEND;TZID=America/Toronto:20220825T123000
DTSTAMP:20220816T175930Z
CREATED:20220816T175846Z
LAST-MODIFIED:20220816T175930Z
UID:10000002-1661427000-1661430600@bme.utoronto.ca
SUMMARY:User-Programmable Hydrogel Biomaterials to Probe and Direct 4D Stem Cell Fate
DESCRIPTION:Special Seminar \nDate: Thursday August 25\, 2022 Time: 11:30am – 12:30pm Location: Donnelly Centre \n160 College Street\, 2nd Floor\, Red Seminar Room \nDr. Cole A. DeForest\, PhD University of Washington \n\nAbstract \nThe extracellular matrix directs stem cell function through a complex choreography of biomacromolecular interactions in a tissue-dependent manner. Far from static\, this hierarchical milieu of biochemical and biophysical cues presented within the native cellular niche is both spatially complex and ever changing. As these pericellular reconfigurations are vital for tissue morphogenesis\, disease regulation\, and healing\, in vitro culture platforms that recapitulate such dynamic environmental phenomena would be invaluable for fundamental studies in stem cell biology\, as well as in the eventual engineering of functional human tissue. In this talk\, I will discuss some of our group’s recent successes in reversibly modifying both the chemical and physical aspects of synthetic cell culture platforms with user-defined spatiotemporal control\, regulating cell-biomaterial interactions through user- programmable Boolean logic\, and engineering microvascular networks that span nearly all size scales of native human vasculature (including capillaries). Results will highlight our ability to modulate intricate cellular behavior including stem cell differentiation\, protein secretion\, and cell-cell interactions in 4D. \nBiography \nDr. Cole A. DeForest is the Weyerhaeuser Endowed Associate Professor in the Departments of Chemical Engineering and Bioengineering\, the Associate Chair of Chemical Engineering\, as well as a core faculty member of the Institute for Stem Cell & Regenerative Medicine at the University of Washington (UW) where he began in 2014. He received his B.S.E. degree from Princeton University in 2006\, majoring in Chemical Engineering and minoring in Material Science Engineering and Bioengineering. He earned his Ph.D. degree under the guidance of Dr. Kristi Anseth from the University of Colorado in Chemical and Biological \nEngineering with an additional certificate in Molecular Biophysics. His postdoctoral research was performed with Dr. David Tirrell in the Divisions of Chemistry and Chemical Engineering at the California Institute of Technology. He has published >60 peer-reviewed articles\, including as the corresponding author for those appearing in Nature Materials\, Nature Chemistry\, Advanced Materials\, JACS\, PNAS\, Science Advances\, and Nature Reviews Materials. Dr. DeForest has received numerous research awards and honors including the Society for Biomaterials Young Investigator Award (2020)\, NIH Maximizing Investigators’ Research Award (MIRA R35\, 2020)\, Safeway Early Career Award (2018)\, NSF CAREER Award (2017)\, AIChE 35-Under-35 Award (2017)\, ACS PMSE Young Investigator Award (2017)\, Jaconette L. Tietze Young Scientist Award (2015)\, Biomedical Engineering Society Student Fellow Award (2013)\, DSM Polymer Technology Award (2011)\, ACS Excellence in Graduate Polymer Research Award (2010)\, MRS Graduate Student Research Gold Award (2009)\, Society for Biomaterials Outstanding Achievement Award (2009)\, Princeton University Material Science Student of the Year (2006)\, Princeton University Most Approachable Resident Adviser (2005)\, and Boulder High School Valedictorian (2002). Notably\, he has also been recognized for excellence in teaching and was awarded the UW Presidential Distinguished Teaching Award (2016)\, given annually to a single Assistant Professor across all of the UW. His research has been supported through fellowships and grants from the National Science Foundation\, the National Institutes of Health\, and the US Department of Education.
URL:https://bme.utoronto.ca/event/user-programmable-hydrogel-biomaterials-to-probe-and-direct-4d-stem-cell-fate/
LOCATION:Donnelly Centre for Cellular and Biomolecular Research\, Red Room\, 160 College Street\, Toronto\, Ontario\, M5S 3E1\, Canada
CATEGORIES:External Speaker Series
ORGANIZER;CN="Molly Shoichet":MAILTO:adminshoichet@utoronto.ca
END:VEVENT
BEGIN:VEVENT
DTSTART;VALUE=DATE:20220808
DTEND;VALUE=DATE:20220809
DTSTAMP:20220623T133551Z
CREATED:20220623T133551Z
LAST-MODIFIED:20220623T133551Z
UID:10000045-1659916800-1660003199@bme.utoronto.ca
SUMMARY:Entrepreneurship for Cardiovascular Health Opportunities (ECHO): CALL FOR APPLICATIONS
DESCRIPTION:Entrepreneurship for Cardiovascular Health Opportunities (ECHO): CALL FOR APPLICATIONS \n  \nTo reach teams across Canada\, ECHO is a fully virtual program. \n  \nWe are pleased to announce a call for applications for the 2022-2023 ECHO program! \n\nFounded in 2018\, ECHO is a 12-month online training program led by veteran entrepreneurs and high-calibre consultants across a variety of sectors. Comprised of a unique combination of five complementary modules\, ECHO provides innovators of cardiovascular technologies with entrepreneurship training\, mentorship\, and networking opportunities\, and the chance to pitch for start-up funding from a $250\,000 pool. \n\nPlease see the attached brochure. You can also visit our webpage at https://tedrogersresearch.ca/ECHO/ for program details\, instructions and application forms. Applications are due Monday\, August 8\, 2022. \n\nIf you have any questions regarding ECHO\, please contact Soror Sharifpoor (soror.sharifpoor@utoronto.ca). \n\nECHO is organized and funded by the Translational Biology and Engineering Program (TBEP) – the University of Toronto component of the Ted Rogers Centre for Heart Research – in partnership with the Health Innovation Hub (H2i)\, a University of Toronto campus-linked accelerator.
URL:https://bme.utoronto.ca/event/entrepreneurship-for-cardiovascular-health-opportunities-echo-call-for-applications/
CATEGORIES:Events & Workshops
ORGANIZER;CN="Translational Biology and Engineering Program (TBEP)":MAILTO:reception.tbep@utoronto.ca
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20220721T100000
DTEND;TZID=America/Toronto:20220721T110000
DTSTAMP:20220719T155334Z
CREATED:20220719T155334Z
LAST-MODIFIED:20220719T155334Z
UID:10000039-1658397600-1658401200@bme.utoronto.ca
SUMMARY:Nanomedicines for the Research\, Detection\, and Treatment of Cancer and Allied Diseases
DESCRIPTION:Date: Thursday July 21\, 2022 \nTime: 10:00am – 11:00am \nLocation: Donnelly Centre \n160 College Street\, 2nd Floor\, Red Seminar Room \n  \nDr. Daniel A. Heller\, PhD Cornell University \n  \nAbstract \nWe develop nanotechnologies to accelerate the research\, diagnosis\, and treatment of cancer and allied diseases. We focus on nanoparticle drug delivery systems and nanosensor-based diagnostics and drug discovery tools. \nTo build better cancer therapeutics\, we investigate the potential to improve the therapeutic index of precision medicines via nanomedicine-based strategies to localize drugs to tumors using vascular targets. We developed machine learning processes to facilitate the encapsulation of diverse drug classes into these nanoparticles\, based on drug molecular structure\, resulting in the rapid synthesis of many\, diverse\, targeted nanotherapeutics. We found that P-selectin\, expressed endogenously on activated endothelium in tumors\, can be used as a nanotherapeutic target improve the efficacy of kinase inhibitors and abrogate dose-limiting toxicities\, to improve therapeutic index. P-selectin can also be induced via ionizing radiation\, enabling the enhancement of the target. We also found that endothelial targeting can improve delivery across intact blood-brain barrier for the treatment of intracranial tumors and metastases\, via activating transendothelial transport. \nWe also develop optical nanosensor technologies using carbon nanotubes to facilitate longitudinal detection of cancer biomarkers\, and to build new assays for cancer drug development. These technologies employ the bandgap fluorescence of single-walled carbon nanotubes (SWCNTs) which emit in the near-infrared “tissue transparent” window and can respond to analytes down to the single-molecule level. We have developed new sensors for the detection of metabolic changes in live cells and tissues\, disease biomarkers in situ via implants\, and overall disease states\, aided by machine learning processes. \nBiography \nDr. Daniel A. Heller\, PhD\, is Head of the Cancer Nanomedicine Laboratory\, Bristol-Myers Squibb/James D. Robinson III Junior Faculty Chair\, an Associate Member in the Molecular Pharmacology Program at Memorial Sloan-Kettering Cancer Center\, an Associate Professor in the Department of Pharmacology at Weill Cornell Medicine\, and a member of the Graduate Field Faculty in the Meinig School of Biomedical Engineering at Cornell University. His \nwork focuses on the development of nanoscale technologies for the treatment\, diagnosis\, and research of cancer. Dr. Heller obtained his PhD in chemistry from the University of Illinois at Urbana-Champaign in 2010\, working in the laboratory of Michael Strano. He completed a Damon Runyon Cancer Research Foundation Postdoctoral Fellowship in the laboratory of Robert Langer at the David H. Koch Institute for Integrative Cancer Research at MIT in 2012. He is a 2012 recipient of the National Institutes of Health Director’s New Innovator Award\, a 2015 Kavli Fellow\, a 2017 recipient of the Pershing Square Sohn Prize for Young Investigators in Cancer Research\, a 2018 American Cancer Society Research Scholar\, a 2018 recipient of the CRS Nanomedicine and Nanoscale Drug Delivery Focus Group Junior Faculty Award\, a 2018 NSF CAREER Awardee\, a 2020 awardee of the Weill Cornell Graduate School Pharmacology Teaching and Mentoring Award\, and a 2021 American Institute for Medical and Biological Engineering (AIMBE) Fellow. \n\nHosted by Dr. Molly Shoichet \nSnacks and refreshments will be served
URL:https://bme.utoronto.ca/event/nanomedicines-for-the-research-detection-and-treatment-of-cancer-and-allied-diseases/
LOCATION:Donnelly Centre for Cellular and Biomolecular Research\, Red Room\, 160 College Street\, Toronto\, Ontario\, M5S 3E1\, Canada
CATEGORIES:External Speaker Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20220710T130000
DTEND;TZID=America/Toronto:20220710T160000
DTSTAMP:20220628T150838Z
CREATED:20220628T150838Z
LAST-MODIFIED:20220628T150838Z
UID:10000043-1657458000-1657468800@bme.utoronto.ca
SUMMARY:TERMIS-AM/ NSERC CREATE Training Program in Organ-on-a-Chip Engineering and Entrepreneurship Per-conference Workshop
DESCRIPTION:https://toep.utoronto.ca/ \nNSERC CREATE Training Program in Organ-on-a-Chip & Entrepreneurship (TOeP) is organizing a pre-conference workshop geared towards inspiring trainees to engage into a process of taking their discovery out of the lab and into the real world. \n  \nUniquely\, our workshop speakers were all (or still are) trainees who haven commercialized the discoveries from their PhD or Post-doctoral training through a start-up company. They were instrumental in growing these companies and have valuable lessons to share to facilitate the journey. \n  \nAt the end of this workshop\, you will be able to: understand how to identify the novel components of your work\, improve problem-based design in tissue engineering and regenerative medicine\, understand the steps toward commercialization of devices and cell based therapeutics and what elements to include in a successful pitch. \n  \nNSERC CREATE TOeP Training program will reimburse the workshop registration fee for the first 30 trainees who register. Reimbursement forms will be available at the workshop.  \n  \nProgram: \nSunday July 10th\, 2022 \n1:00PM-1:20PM      Milica Radisic\, Professor and Canada Research Chair (Tier 1) in Organ-on-a-Chip Engineering\, University of Toronto; Senior Scientist\, Toronto General Research Institute; Director\, NSERC CREATE Training Program in Organ-on-a-Chip Engineering and entrepreneurship. www.radisiclab.com \n“Introduction to the goals of the workshop”  \n  \n1:20PM-1:40PM      Anis Hadjenni- CEO and Co-founder\, Rheolution Inc\, https://rheolution.com/ \n“From an idea to a successful company- the story of Rheolution”                                                                \n1:40PM-2:00PM      Wendy Neimark\, Co-founder and Chief Technology Officer\, Ripple Therapeutics\, www.rippletherapeutics.com \n“Assessing the novelty of your idea\, the story of Ripple”                                                                \n2:00PM-2:20PM      Milica Vukmirovic\, Director of External Programs & Partnerships\, Precision Medicine Initiative\, PRiME\, University of Toronto\, https://www.prime.utoronto.ca/ \n“Developing a pitch and setting your idea for successful fundraising”                                                               \n2:20PM-3:00PM      Networking break \n  \n3:00PM-3:20PM      Sepand Bafti\, Director of Biological Science at Nortis \n “Working to grow your organ-on-a-chip startup”          https://nortisbio.com/                                                              \n3:20PM-3:40PM      Dawn Lin\, PhD Candidate at McMaster University & Co-founder Organo-Biotech\, https://www.organo-biotech.com/ \n“Trainee perspective- starting a company during your PhD”                                                                         \n3:40PM-4:00PM      Mohsen Akbari\, Associate Professor\, University of Victoria\, https://www.uvic.ca/ecs/mechanical/faculty-and-staff/faculty/makbari.php \n“PI perspective on starting a company from the lab”                                                  \n  \nAbout NSERC CREATE TOeP: \nThe long-term objective of TOeP is to educate skilled individuals with expertise in both bioengineering and entrepreneurship\, and enable personal development of our students so that they can ultimately fuel the creation of a high-tech economy. \nTOeP provides specific workshops for Professional Skill Training in the following categories: Pitching and public speaking; IP Law; Entrepreneurship; Networking and business etiquette; Teamwork\, critical thinking\, leadership & project management; Business and Finance.  TOeP provides technical training through an Organ-on-a-Chip Course\, TOeP specific guest speaker seminars and Ontario-on-a-Chip/TOeP Annual Symposium which features a TOeP student pitch competition. \nTOeP provides coaching to the students for pitch development and practice sessions to perfect those. To reach a broader scientific community TOeP also organizes the Entrepreneurship Workshop at the meetings such as this one. \nTOeP trainees are required to complete exchanges with other academic labs\, in order to satisfy the mobility required for the program\,  shadow entrepreneurs\, develop their device prototypes and fundraise for commercialization of their prototypes either via VCs\, angels and private investors or through grants.
URL:https://bme.utoronto.ca/event/termis-am-nserc-create-training-program-in-organ-on-a-chip-engineering-and-entrepreneurship-per-conference-workshop/
CATEGORIES:Events & Workshops
END:VEVENT
BEGIN:VEVENT
DTSTART;VALUE=DATE:20220710
DTEND;VALUE=DATE:20220714
DTSTAMP:20220510T202455Z
CREATED:20220510T202455Z
LAST-MODIFIED:20220510T202455Z
UID:10000010-1657411200-1657756799@bme.utoronto.ca
SUMMARY:2022 TERMIS-AM Conference
DESCRIPTION:SUBMIT YOUR ABSTRACT HERE\n\n\n\nThe TERMIS-AM 2022 Conference will feature an outstanding scientific program bringing together national and international communities of scientists\, clinicians\, industry leaders\, post-doctoral fellows\, graduate students\, entrepreneurs\, and representatives of government funding agencies engaged in the fields of tissue engineering and regenerative medicine. \nPlease note\, there is no fee or charge to submit an abstract. \nIf you’ve submitted an abstract with TERMIS-AM before\, please use the same login information. You will need to make an account if you are new to the abstract system. \nClick HERE for COVID-19 Information \nAbstract Consideration\nExperts from academia\, industry and government are invited to present timely research to successful implementation of technologies in all areas of tissue engineering/regenerative medicine. \nNote: All abstract submitters including presenting authors are expected to pay their own travel expenses and conference registration fee(s). \nSUBMISSION INSTRUCTIONS \nAbstract Preparation\nAuthors must submit their abstract electronically. This is the ONLY option for abstract submission. \nTitle: Title should be brief\, clearly indicating the nature of the presentation. Title should be in bold font and mixed case font followed by a single return. Do not put a period at the end of the title.\nExample: This is a Properly Formatted Abstract Title \nCategory: Please select the TWIG category that your abstract falls under. You can select your primary\, secondary\, and tertiary preference for categories\, but only one is required. \nCategories: Please note sessions are slotted based on the number of abstracts submitted. \nBiofabrication & Bioreactors – TWIG\n+ Biofabrication and Software Tools in TERM\n+ Bioreactors and Organs-on-chips in TERM\n+ 3D Bioprinting Methods and Applications\nCardiovascular/Angiogenesis/Blood – TWIG\n+ Biomaterials for Endogenous Cardiovascular Repair\n+ Engineering Microvasculature for Tissue Regeneration\n+ Cell-based Approaches to Cardiac Regeneration & Repair\nCommercialization & Regulation – TWIG\n+ Regenerative Medicine Applications to Organ Transplantation Medicine\nDental & Craniofacial – TWIG\n+ Tissue Engineering Solutions for Craniofacial Regeneration\nImaging and Assessment – TWIG\n+ Non-invasive Imaging and Analysis of Engineered Tissues\nMusculoskeletal – TWIG\n+ ECM Technologies in Musculoskeletal Repair\n+ Regenerative Rehabilitation: Integrating Mechanical Stimulation with TERM\n+ Articular Cartilage Bioengineering & Regeneration\n+ Strategies for Regeneration of Complex Muscle Defects\nNeural & Spine – TWIG\n+ Frontiers in Spatiotemporal Control for Neural Tissue Engineering\nOphthalmologic – TWIG\n+ Cell Therapeutic Approaches for Retinal Degenerative Diseases\nRespiratory\, Urologic & Gastrointestinal – TWIG\n+ Respiratory\, Urologic\, & Gastrointestinal Tissue Engineering\n+ Tissue Repair for Voiding Dysfunction and Pelvic Floor Disorders\nScaffolds\, Matrices\, and Biomaterials – TWIG\n+ Biomaterials to Direct Stem Cell Fate\n+ Biomaterials for Women’s Health in Tissue Engineering\n+ Biomaterials and Immunomodulation\n+ Bio-metals Mediated Tissue Regeneration\n+ Nature as a Source of TERM Biomaterials and Strategies\n+ Bioactive Biomaterials for Soft Tissue Engineering\nStem Cells & Cell Therapies & Developmental Biology and Cell Signaling – TWIG\n+ Stem Cells & Cell Therapies\, Dev Bio\, and Cell Signaling\n+ Regeneration in the Context of Aging\nSkin\, Wound Healing\, and Inflammation – TWIG\n+ Skin\, Wound Healing\, and Inflammation\nOther\n+ 3D Tissue -Engineered Cancer/Disease Modeling and Organoids Part 1 & 2 \nAuthors: This is where you will enter your authors and it will be separate from your abstract body. Please enter information in the fields provided and the system with format it for you automatically. Complete contact information (name\, mailing address\, and e-mail) for each author listed on the abstract must be entered before submitting the abstract file. \nDisclosure Information: Submitting disclosures is a step when entering abstract authors. It will be the same step under each individual speaker. In order for your colleagues to properly evaluate the information\, analysis and opinions presented in your abstract\, it is important that they be informed of potential conflicts of interest pertinent to the research submitted. Therefore\, conference management requires that all authors provide any relevant information concerning personal or professional circumstances and relationships that might reasonably be expected to affect the author’s view on the subject. Examples include\, but are not limited to: \n+Stock options or bond holdings in a for-profit corporation or self-directed pension plan\n+Employment (full or part-time)\n+Ownership or partnership\n+Consulting fees or other remuneration (payment)\n+Non-remunerative positions of influence such as officer\, board member\, trustee\, or public spokesperson\n+Receipt of royalties\n+Speakers bureau \nAppropriate disclosure will be stated in the scientific program and the abstract volume. If you do not have anything to disclose\, you must indicate this on the online abstract submission form. The disclosure information you provide will not influence the review of your abstract. Abstracts will not be reviewed without proper completion of the disclosure section on the abstract submission form. Disclosure information for all authors is required upon abstract completion. \nAbstract: The abstract should clearly describe the nature of the research and the problem it addresses and be presented in such language as to be understood by scientists representing the multi-disciplinary nature of tissue engineering. The abstract should summarize the purpose/objective of the research\, the methodology employed\, the results\, and the conclusion/significance and will be split into these four categories. \n\nThe abstract length is limited to 500 words total across all four sections. These areas should not include authors\, disclosures\, or references.\nPlease no figures or tables in the abstract.\nReferences and acknowledgements are not needed in this abstract process.\n\nPresentation Preference: Please choose your preferred method of presentation (Oral\, Poster\, or Oral or Poster) where indicated. Your preference will be noted by the reviewers. Final determination will be made by the Program Planning Committee. \nPublication: Abstracts this year will be published on the TERMIS-AM website or in the journal. Here you can choose to opt-out of publication. \nDemographics: You can select if you are a Student or Young Investigator here. Please fill out the other demographic information if you feel comfortable. These questions help us promote diversity within our abstract presenters. \nReview My Work: Here you will see a green check mark if all steps have been completed or not and you will have to go back and make edits. Your submission is not complete unless you see a green check mark. You are able to make edits to your abstract until the deadline of January 12\, 2021\, 11:59 PM Pacific Time. Once the abstract deadline has passed\, no further edits can or will be made to an abstract. \nAbstract Withdrawals \nIf the abstract must be withdrawn\, the TERMIS-AM office must be notified in writing at least ONE month prior to the meeting via e-mail to Tatiana Veres at am2022@termis.org \nNOTE: ALL PRESENTERS ARE EXPECTED TO COVER THEIR OWN TRAVEL AND LODGING EXPENSES AND PAY THE CONFERENCE REGISTRATION FEES. \nRegistration Requirements \nAccepted authors are expected to pay their own travel expenses and conference registration fee(s). Dates of presentation cannot be guaranteed. \n\nSUBMIT YOUR ABSTRACT HERE\n\nFor More Information \nFor more information on abstract content\, format and submission procedure\, contact: \nTatiana Veres\nAssociate Meeting Manager\nam2022@termis.org
URL:https://bme.utoronto.ca/event/2022-termis-am-conference/
CATEGORIES:Events & Workshops
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20220707T140000
DTEND;TZID=America/Toronto:20220707T150000
DTSTAMP:20220624T151521Z
CREATED:20220624T143324Z
LAST-MODIFIED:20220624T151521Z
UID:10000006-1657202400-1657206000@bme.utoronto.ca
SUMMARY:Faculty Search Candidate Talk - Unconventional Nanobiophotonics: Upconversion/Persistent Luminescence Nanoparticles for Anti-cancer Therapy
DESCRIPTION:Kai Huang\, PhD \nDepartment of Biochemistry and Molecular Biotechnology\nUniversity of Massachusetts Chan Medical School \nAbstract: Biophotonics has been widely applied as versatile and powerful approaches for biomedical applications\, such as for bioimaging\, biodetection\, photodynamic therapy\, and optogenetics. However\, conventional biophotonics suffers from several constraints. For example\, the short-wavelength excitation light cannot penetrate deep into the tissue\, thus requiring an invasive light delivery system for deep-tissue photodynamic therapy or optogenetics. In addition\, luminescence signal is interfered with autofluorescence noise\, bringing difficulties for high-quality bioimaging and biodetection. Here\, we address these issues by developing unconventional nanobiophotonics\, where we apply upconversion or persistent luminescence nanoparticles for anti-cancer therapy. Upconversion nanoparticles (UCNPs) convert near-infrared (NIR) excitation into short-wavelength visible light emission and thus serve as the light-transducer to bring deep tissue penetration NIR excitation for wireless photoactivations. We applied versatile nanoengineering approaches to produce UCNPs with controllable size/morphology\, tunable and enhanced luminescence\, and desirable biofunctionalizations. These UCNPs were applied for NIR-optogenetic control of CAR-T cell immunotherapy. We demonstrated that by wirelessly and spatiotemporally controlling the CAR-T cell activity\, we can achieve effective and safer immunotherapy of cancer\, overcoming the safety issue of conventional CAR-T immunotherapy. Persistent luminescence nanoparticles (PLNPs) are unique nanomaterials that emit long-lasting afterglow after excitation stops. PLNPs are significant for bioimaging by avoiding the autofluorescence induced by real-time excitation. We have developed the bottom-up syntheses of PLNPs with fine control of their energy traps\, heterostructures\, and energy accepting from dye-sensitizations\, contributing to enhanced persistent luminescence. We have demonstrated that PLNPs with enhanced luminescence are excellent for ultrasensitive imaging-guided tumor surgery. In addition\, we also demonstrated that by developing X-ray-excitable PLNPs\, we can achieve X-ray-photodynamic therapy with limitless tissue penetration and enhanced tumor eradication.
URL:https://bme.utoronto.ca/event/faculty-search-candidate-talk-2/
LOCATION:Medical Sciences Building 3154\, 1 King's College Cir\, Toronto\, Ontario\, M5S 1A8\, Canada
CATEGORIES:BME Faculty Search
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20220706T100000
DTEND;TZID=America/Toronto:20220706T110000
DTSTAMP:20220624T145508Z
CREATED:20220624T145430Z
LAST-MODIFIED:20220624T145508Z
UID:10000044-1657101600-1657105200@bme.utoronto.ca
SUMMARY:Conversations in Convergence: Jesse Gillis\, PhD\, and Alaura Androschuk
DESCRIPTION:Note: We are excited to transition Conversations in Convergence from a virtual to an in-person event\, providing more opportunity for networking and potential collaboration. \nJoin us for our Conversations in Convergence series\, which features interactive discussions between Medicine by Design researchers who study similar questions using different approaches. \nThe theme of this conversation will be\, “Immune modulation by extrinsic and environmental factors.”\nRegister now \nSpeakers\nAlaura Androschuk \, PhD candidate in Michael Sefton’s lab\, Institute of Biomedical Engineering and the Department of Chemical Engineering & Applied Chemistry. \nIdentifying signalling pathways underlying biomaterial-driven terminal axon growth using single nucleus RNA-sequencing\nAlaura Androschuk is a PhD candidate focusing on the use of biomaterials for endogenous repair of tissues\, specifically subcutaneous nerve regeneration. Under the supervision of  Michael Sefton\, she has focused in part on identifying the signalling pathways and cells underlying the biomaterial-driven repair of complex tissues using proteomics and single nucleus transcriptomics. \nJesse Gillis\, Associate Professor and Bassingthwaighte Chair in Integrative Physiology\, Department of Physiology\, University of Toronto. \nBuffered and unbuffered cell lineage variability\nJesse Gillis completed his undergraduate in Biophysics at the University of Toronto\, where he also received his PhD in Neuroscience in 2007. His post-doctoral training was done at the Centre for High-throughput Biology at UBC. There\, he focused on meta-analysis of expression data\, and particularly co-expression analysis\, which infers functionality between genes based on shared expression profiles\, a form of network analysis. Jesse joined the faculty of CSHL in 2012 with a central focus on improving network analysis. In 2017\, he was promoted to Associate Professor at CSHL with his work focusing on single cell analysis\, particularly in collaboration with researchers in the BRAIN Initiative Cell Census Network. In 2022\, Jesse returned to U of T as the inaugural Bassingthwaighte Chair in Integrative Physiology and a Medicine by Design investigator. \nAbout Conversations in Convergence\nThe goal is to foster cross-disciplinary discussions in support of convergence\, which is the integration of approaches from engineering\, science\, medicine and other fields to expand knowledge and spark innovation. The researchers will discuss how their unique perspectives\, knowledge and ideas inform their work\, and how their diverse approaches intersect and complement one another to advance regenerative medicine.
URL:https://bme.utoronto.ca/event/conversations-in-convergence-jesse-gillis-phd-and-alaura-androschuk/
LOCATION:Donnelly Centre for Cellular and Biomolecular Research\, Red Room\, 160 College Street\, Toronto\, Ontario\, M5S 3E1\, Canada
CATEGORIES:External Speaker Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20220623T130000
DTEND;TZID=America/Toronto:20220623T140000
DTSTAMP:20220609T150225Z
CREATED:20220609T144131Z
LAST-MODIFIED:20220609T150225Z
UID:10000001-1655989200-1655992800@bme.utoronto.ca
SUMMARY:Faculty Search Candidate: Designer polymer excipients to enable next-generation insulin formulations
DESCRIPTION:Caitlin Maikawa\, PhD\nAbstract: Insulin was first isolated a century ago\, yet commercial formulations of insulin for hormone replacement therapy fall short of mimicking the endogenous glycemic control that occurs in non-diabetic individuals. Moreover\, diabetes management is increasingly relying on automated insulin delivery using closed-loop systems to improve glucose management and reduce patient burden. However\, improvements in insulin formulations\, sensors\, and algorithms are required to shift from hybrid systems to fully autonomous delivery. Insulin formulations that better mimic secretion from the beta-cells\, by enabling more rapid insulin absorption kinetics and/or co-delivering complementary hormones (i.e. amylin)\, would improve diabetes management. However\, formulation innovation is complicated by the poor stability of insulin monomers and amylin. Here\, I will discuss two polymeric excipient platforms (non-covalent PEGylation and amphiphilic copolymer excipients) that can be used to increase the stability of insulin in formulation and modulate insulin pharmacokinetics. Using these designer excipients\, I have developed three insulin formulations: (i) an ultrafast monomeric insulin lispro\, (ii) an insulin-amylin co-formulation and (iii) an ultrafast co-formulation. These enhanced insulin formulations are promising candidates to address formulation challenges related to achieving fully autonomous insulin delivery\, improve glucose control\, and reduce the burden of treatment management for patients with diabetes.
URL:https://bme.utoronto.ca/event/designer-polymer-excipients-to-enable-next-generation-insulin-formulations/
LOCATION:MS2172
CATEGORIES:BME Faculty Search
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20220621T120000
DTEND;TZID=America/Toronto:20220621T130000
DTSTAMP:20220621T153842Z
CREATED:20220520T150058Z
LAST-MODIFIED:20220621T153842Z
UID:10000024-1655812800-1655816400@bme.utoronto.ca
SUMMARY:Global Speaker Series: Gilbert Bernier\, PhD - Université de Montréal
DESCRIPTION:The Medicine by Design Global Speaker Series invites established and emerging international leaders in regenerative medicine to engage with our extraordinary community of researchers and clinicians.\nMedicine by Design\, in partnership with the McEwen Stem Cell Institute\, is pleased to welcome Gilbert Bernier\, PhD\, Associate Professor in the Department of Neuroscience at Université de Montréal.\nThe title of this talk will be\, “Cone photoreceptor sheet transplantation for the treatment of macular degenerations”\nRegister now\nHybrid event\, with in-person and virtual options\nIn-person will be held at the Terrence Donnelly Centre for Cellular & Biomolecular Research\, Red Room.\nVirtual event links will be sent after registration. \nMore About Gilbert bernier:\nProfessor Gilbert Bernier performed is graduated studies in Molecular Biology at Montreal University where he characterized the gene mutated in the mouse neurological disorder dystonia musculorum. In 1997\, he moved to the Max-Planck Institute of Biophysical Chemistry in Germany to study developmental biology of the retina. Since 2001\, he is heading the laboratory of stem cell and developmental biology at Maisonneuve-Rosemont Hospital to exploit the potential of human pluripotent stem cells for the study and treatment of neurodegenerative diseases such as retinal degenerative diseases and Alzheimer’s disease. Professor Bernier has also contributed to the characterization of Polycomb group proteins function in brain cancer\, DNA repair\, and premature ageing. He is Professor at the Neuroscience Department of Montreal University since 2012. He is co-founder and CEO of StemAxonTM\, a Canadian corporation involved in the development of new treatments for neurodegenerative diseases.\n Learn more about Gilbert Bernier
URL:https://bme.utoronto.ca/event/global-speaker-series-gilbert-bernier-phd-universite-de-montreal/
LOCATION:Donnelly Centre for Cellular and Biomolecular Research\, Red Room\, 160 College Street\, Toronto\, Ontario\, M5S 3E1\, Canada
CATEGORIES:External Speaker Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20220621T110000
DTEND;TZID=America/Toronto:20220621T120000
DTSTAMP:20220603T151630Z
CREATED:20220603T151630Z
LAST-MODIFIED:20220603T151630Z
UID:10000028-1655809200-1655812800@bme.utoronto.ca
SUMMARY:Insights from the Endotronix Journey: A PMA Medtech “Startup" Story
DESCRIPTION:Please join us for an ECHO webinar on Tuesday June 21\, 2022 (11 am – 12 pm EST) featuring Dr. Harry Rowland (CEO and Co-founder\, Endotronix). Dr. Rowland’s presentation entitled\, “Insights from the Endotronix Journey: A PMA Medtech “Startup” Story”\, will feature an overview of Endotronix\, its technologies and the story behind its success. Endotronix is a medical technology company\, delivering an integrated platform that provides comprehensive\, reimbursable health management innovations for patients suffering from advanced heart failure. Please see attachment for more details. \n\nRegister in advance for this webinar: https://us02web.zoom.us/meeting/register/tZwkc-GrqD0sGtcnluN7KLI2wNtAxZ1kYIx9 \nAfter registering\, you will receive a confirmation email containing information about joining the webinar. \n  \nECHO is an entrepreneurship training program\, funded and organized in a partnership between (i) the Translational Biology and Engineering Program (TBEP)\, the University of Toronto component of the Ted Rogers Centre for Heart Research\, and (ii) the Health Innovation Hub (H2i).
URL:https://bme.utoronto.ca/event/insights-from-the-endotronix-journey-a-pma-medtech-startup-story/
CATEGORIES:External Speaker Series
ORGANIZER;CN="Translational Biology and Engineering Program (TBEP)":MAILTO:reception.tbep@utoronto.ca
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20220615T183000
DTEND;TZID=America/Toronto:20220615T223000
DTSTAMP:20220511T144914Z
CREATED:20220510T201717Z
LAST-MODIFIED:20220511T144914Z
UID:10000009-1655317800-1655332200@bme.utoronto.ca
SUMMARY:BME Dinner Reception
DESCRIPTION:The 2022 BME Dinner Reception will be hosted at the Royal Ontario Museum to celebrate the achievements of graduate students.\n\n\nBME would like to invite you to the dinner reception at the Royal Ontario Museum (ROM). It has been a crazy last two years and it is a great time for us to get together\, celebrate our achievements\, and meet each other. Students\, faculty\, post-doc\, and administrators will be attending the event. \nThis dinner is free of charge to BME students\, staff\, core faculty members\, and primary cross-appointment faculty members. This will also be extended to non-BME students in core faculty member labs\, research associates in core faculty member labs\, and post-doctoral fellows in core faculty member labs.
URL:https://bme.utoronto.ca/event/bme-dinner-reception/
LOCATION:Royal Ontario Museum\, 100 Queens Park\, Toronto\, ON\, M5S 2C6\, Canada
CATEGORIES:Events & Workshops
ATTACH;FMTTYPE=image/jpeg:https://bme.utoronto.ca/wp-content/uploads/2022/05/e425f089dea4fd7f064a4978a6ca7003-1.jpg
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20220615T083000
DTEND;TZID=America/Toronto:20220615T170000
DTSTAMP:20220511T144921Z
CREATED:20220510T210137Z
LAST-MODIFIED:20220511T144921Z
UID:10000011-1655281800-1655312400@bme.utoronto.ca
SUMMARY:Toronto Biomedical Engineering Conference 2022
DESCRIPTION:Speakers\n \n  \n\nDr. Michael Snyder\n\nStanford University\n\nMichael Snyder is a Professor and Chair of the Department of Genetics and Director of the Center for Genomics and Personalized Medicine at Stanford University. He is a leader in the field of functional genomics and proteomics and a major participant of the ENCODE project. He is a co-founder of many companies including Personalis\, SensOmics\, Qbio\, January AI\, Filtricine\, Mirvine\, Protos\, Protometrix and Affomix and he is the author of the book “Genomics and Personalized Medicine: What Everyone Needs to Know”. \n\n\n\n\n\n\n\n\n\n\n\n\nDr. Nancy Allbritton\n\n\nUniversity of Washington\n\nDr. Nancy L. Allbritton joined the University of Washington as the Frank & Julie Jungers Dean of Engineering in November 2019. In that capacity\, she serves as the chief academic officer of the college and provides leadership to over 279 faculty and more than 8\,000 students. The College of Engineering is a top-15 nationally ranked public university program with annual research expenditures exceeding $159 million. \nAllbritton is an international expert on multiplexed single-cell assays\, microfabricated platforms for high-content cytometry combined with cell sorting\, and microengineered stem-cell-based systems for recapitulating human organ-level function. Four companies have been formed based on her research discoveries: Protein Simple (acquired by Bio-Techne in 2014)\, Intellego\, Cell Microsystems\, and Altis Biosystems. Allbritton holds an appointment in the UW’s Department of Bioengineering.  She has been nationally recognized for her research and is a Fellow of the American Association for the Advancement of Science\, the American Institute for Medical & Biological Engineering and the National Academy of Inventors. \nPrior to joining the UW\, Allbritton led the Joint Department of Biomedical Engineering at the University of North Carolina at Chapel Hill and North Carolina State University which spans two universities and three colleges. \n\n\n\n\n\n\n\n\nDr. Andrew Tsourkas\n\nUniversity of Pennsylvania\n\n\nAndrew Tsourkas\, Ph.D. is a Professor and Undergraduate Chair of Bioengineering at the University of Pennsylvania.  He received his Bachelor’s degree in Mechanical Engineering in 1997 from Cornell University and his Ph.D. in Biomedical Engineering from the Georgia Tech/Emory University joint Ph.D. program in 2002.  He conducted a post-doctoral fellowship in the Department of Radiology at Harvard University\, before joining Penn in 2004. Dr. Tsourkas is currently the Co-Director for the Center for Targeted Therapeutics and Translational Nanomedicine as well as the Chemical and Nanoparticle Synthesis Core. He was a recipient of the Coulter Foundation Early Career Award\, the National Science Foundation CAREER Award\, and was elected fellow of the American Institute for Medical and Biological Engineering. \n\n\n\n\n\n\n\n\n  \n\n\nSchedule\n\n\n\n\nTime\n\n\nActivity\n\n\n\n\n\n\n8:30 – 9:00 AM\n\n\nBreakfast\n\n\n\n\n9:00 – 9:15 AM\n\n\nWelcome from BME Director and ToBE Co-Chairs\n\n\n\n\n9:15 – 10:15 AM\n\n\nFirst Keynote Speaker\n\n\n\n\n10:30 – 11:15 AM\n\n\nWorkshop\n\n\n\n\n\n(1) Mindfulness Moment – Managing Anxiety in Graduate School\n\n\n\n\n\n(2) Building Resilience and Navigating Uncertainty in Graduate School\n\n\n\n\n11:30 – 12:30 PM\n\n\nPoster Session\n\n\n\n\n12:00 – 1:00 PM\n\n\nLunch\n\n\n\n\n1:00 – 2:00 PM\n\n\nOral Presentations\n\n\n\n\n\n(1) Clinical Engineering\n\n\n\n\n\n(2) Cell and Tissue Engineering\n\n\n\n\n\n(3) Molecular Engineering\n\n\n\n\n2:15 – 3:15 PM\n\n\nSecond Keynote Speaker\n\n\n\n\n3:30 – 4:30 PM\n\n\nThird Keynote Speaker\n\n\n\n\n4:30 – 4:45 PM\n\n\nClosing Remarks\n\n\n\n\n6:30 – 10:30 PM\n\n\nPost-Conference Celebration Dinner and Award Ceremony\n\nThe Royal Ontario Museum
URL:https://bme.utoronto.ca/event/toronto-biomedical-engineering-conference-2022/
CATEGORIES:Events & Workshops
ORGANIZER;CN="Toronto Biomedical Engineering Conference (ToBE)":MAILTO:tobeconferenceteam@gmail.com
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20220614T130000
DTEND;TZID=America/Toronto:20220614T140000
DTSTAMP:20220609T150017Z
CREATED:20220609T144415Z
LAST-MODIFIED:20220609T150017Z
UID:10000046-1655211600-1655215200@bme.utoronto.ca
SUMMARY:Faculty Search Candidate Talk
DESCRIPTION:This event will be in person only.
URL:https://bme.utoronto.ca/event/faculty-search-talk-2-2022/
LOCATION:MS3153
CATEGORIES:BME Faculty Search
END:VEVENT
END:VCALENDAR