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X-WR-CALNAME:Institute of Biomedical Engineering (BME)
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X-WR-CALDESC:Events for Institute of Biomedical Engineering (BME)
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TZID:America/Toronto
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DTSTART:20240310T070000
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DTSTART:20251102T060000
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DTSTART:20260308T070000
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BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20260911T162500
DTEND;TZID=America/Toronto:20260911T163000
DTSTAMP:20260911T165348Z
CREATED:20260909T143103Z
LAST-MODIFIED:20260911T165348Z
UID:10000737-1789143900-1789144200@bme.utoronto.ca
SUMMARY:Graduate Student Seminar Series - Niroja Balakumar
DESCRIPTION:Graduate Student Seminar Series\nPlease ensure you invite your Principal Investigator by adding their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nLocation: MS2158 – 1 King’s College Circle\nPresentation Title: Investigating In-Bed Repositioning for Pressure Injury Prevention\nAbstract:\nRegular repositioning is important for preventing pressure injuries (PIs). However\, there\nare indications that i) the current best practice for repositioning may not sufficiently\noffload high-risk areas of the body and ii) there is a need for better tools for measuring\nadherence to the 2-hour repositioning standard. The primary aims of this thesis were to 1)\nevaluate the quality of offloading when current repositioning best practices were used 2)\nevaluate the use of ankle-mounted IMUs to measure 2-hour repositioning schedules.\nTwenty-three participants adopted 39 in-bed positions while wearing ankle IMUs and\nforce sensing resistors on key body locations. Repositioning at ±45° side-lying positions\nwas found to offload high risk areas of the body better than the ±30° side-lying best\npractice. An XGBoost classifier trained using ankle IMU data achieved an F1 score of 95.2%\nfor posture-classification\, demonstrating good potential for the IMU-based system.\nSupervisor Name: Tilak Dutta\nYear of Study: 2\nProgram of Study: MASc\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-student-seminar-series-niroja-balakumar/
LOCATION:MS2158
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20260911T162000
DTEND;TZID=America/Toronto:20260911T162500
DTSTAMP:20260911T165348Z
CREATED:20260909T143103Z
LAST-MODIFIED:20260911T165348Z
UID:10000736-1789143600-1789143900@bme.utoronto.ca
SUMMARY:Graduate Student Seminar Series - Pedram Karimi
DESCRIPTION:Graduate Student Seminar Series\nPlease ensure you invite your Principal Investigator by adding their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nLocation: MS2158 – 1 King’s College Circle\nPresentation Title: Investigating Gait Adaptations from Repeated Exposure to Walking on Ice\nAbstract: Slips on ice are a major cause of falls\, yet practice-related gait adaptation on ice remains poorly understood. This study examined changes in slope-negotiation capacity and gait mechanics over seven consecutive sessions in 10 healthy adults. Maximum Reachable Slope Angle increased from 5.6 ± 2.0° to 8.4 ± 1.3° (p<0.001). Peak required coefficient of friction did not change significantly across level\, uphill\, or downhill walking. During level walking\, normalized peak anteroposterior shear force decreased from 0.060 ± 0.025 to 0.023 ± 0.011 (p<0.001)\, while mediolateral shear force increased from 0.015 ± 0.006 to 0.035 ± 0.026 (p<0.001)\, with similar directional changes on slopes. Estimated walking speed decreased across sessions during level (p<0.02) and uphill (p<0.002) walking. These findings suggest that repeated exposure improved performance through gait reorganization rather than a simple reduction in overall friction demand.\nSupervisor Name: Tilak Dutta\nYear of Study: 3\nProgram of Study: MASc\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-student-seminar-series-pedram-karimi/
LOCATION:MS2158
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20260911T161500
DTEND;TZID=America/Toronto:20260911T162000
DTSTAMP:20260911T165348Z
CREATED:20260909T143102Z
LAST-MODIFIED:20260911T165348Z
UID:10000734-1789143300-1789143600@bme.utoronto.ca
SUMMARY:Graduate Student Seminar Series - Vishal Pendse
DESCRIPTION:Graduate Student Seminar Series\nPlease ensure you invite your Principal Investigator by adding their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nLocation: MS2158 – 1 King’s College Circle\nPresentation Title: PACT: A Predictive Algorithm for Automated Upper-Limb Prosthetic Socket Design\nAbstract: Well-fitting sockets are crucial for successful upper-limb prosthesis use\, yet current digital socket design workflows are not standardized and demand considerable clinician effort. In this study\, we introduce the Predictive Algorithm for Customized Transradial Socket Design (PACT)\, which generates socket models from a 3D limb scan. It works by retrieving the most similar limb–socket pair from a reference library of prosthetist-designed prosthetic sockets and applying isotropic and anisotropic scaling adjustments to match the input limb. To validate the algorithm\, the PACT-predicted sockets for 19 participants were compared to their prosthetist-designed ones (the clinical “gold standard”) using the surface Euclidean (L2) distances\, volume differences\, and a 100-slice cross-sectional-area analysis. Localized discrepancies were mapped via signed-distance colorization and clustered with DBSCAN. PACT’s outputs differed from prosthetist designs by 2.11 ± 0.51 mm on the surface and 2.74 ± 2.56% in volume on average; slice-wise area differences were within ±10% for most of the socket length\, with larger errors near the proximal trimline and distal tip. Recurrent localized discrepancies were found to be concentrated at the anterior-distal trimline (15/19 cases) and anterior–posterior compression (11/19 cases)\, indicating clear targets for rule-based or measurement-informed refinements. Subgroup patterns suggested an age-related bias (undersizing in pediatric\, oversizing in adults). Overall\, PACT quickly delivers (13.2 ± 0.7 s) a first-draft transradial socket within commonly cited clinical fit tolerances. Focus on specific regions\, along with metadata such as tissue stiffness\, age\, and clinician-led measurements\, can improve personalization and generalizability in future iterations of the PACT.\nSupervisor Name: Jan Andrysek\nYear of Study: 5\nProgram of Study: PhD\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-student-seminar-series-vishal-pendse-2/
LOCATION:MS2158
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20260911T161000
DTEND;TZID=America/Toronto:20260911T161500
DTSTAMP:20260911T165348Z
CREATED:20260909T143103Z
LAST-MODIFIED:20260911T165348Z
UID:10000735-1789143000-1789143300@bme.utoronto.ca
SUMMARY:Graduate Student Seminar Series - Aazad Abbas
DESCRIPTION:Graduate Student Seminar Series\nPlease ensure you invite your Principal Investigator by adding their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nLocation: MS2158 – 1 King’s College Circle\nPresentation Title: SMART Scheduling: Integrated Machine Learning & Optimization for Comprehensive Operating Room Management\nSupervisor Name: Cari Whyne\nYear of Study: 2\nProgram of Study: PhD\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-student-seminar-series-aazad-abbas/
LOCATION:MS2158
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20260213T165500
DTEND;TZID=America/Toronto:20260213T171000
DTSTAMP:20260213T172236Z
CREATED:20251218T180623Z
LAST-MODIFIED:20260213T172236Z
UID:10000663-1771001700-1771002600@bme.utoronto.ca
SUMMARY:Canceled: Graduate Student Seminar Series - Yongzhi Guo
DESCRIPTION:Graduate Student Seminar Series\nPlease ensure you invite your Principal Investigator by adding their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nLocation: MS2158 – 1 King’s College Circle\nPresentation Title: An Image-Based Quantitative Platform to Study Metformin-Driven Adipocyte Metabolic Remodeling\nSupervisor Name: Alison McGuigan\nYear of Study: 2\nProgram of Study: MASc\nCancellation Reason:\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-student-seminar-series-yongzhi-guo/
LOCATION:MS2158
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20251219T165500
DTEND;TZID=America/Toronto:20251219T171000
DTSTAMP:20251219T180756Z
CREATED:20251016T172233Z
LAST-MODIFIED:20251219T180756Z
UID:10000645-1766163300-1766164200@bme.utoronto.ca
SUMMARY:Graduate Student Seminar Series - Amy Huang
DESCRIPTION:Graduate Student Seminar Series\nPlease ensure you invite your Principal Investigator by adding their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nLocation: MS2158 – 1 King’s College Circle\nPresentation Title: Evaluating the hemodynamic fidelity of idealized versus intraoperative boundary conditions in acute type B aortic dissection simulations\nSupervisor Name: Cristina Amon\nYear of Study: 2\nProgram of Study: MASc\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-student-seminar-series-amy-huang/
LOCATION:MS2158
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20251219T164000
DTEND;TZID=America/Toronto:20251219T165500
DTSTAMP:20251219T180755Z
CREATED:20251016T172233Z
LAST-MODIFIED:20251219T180755Z
UID:10000644-1766162400-1766163300@bme.utoronto.ca
SUMMARY:Graduate Student Seminar Series - Sima Buchnak
DESCRIPTION:Graduate Student Seminar Series\nPlease ensure you invite your Principal Investigator by adding their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nLocation: MS2158 – 1 King’s College Circle\nPresentation Title: Functional and Structural Connectivity in Paediatric Post-Stroke Dystonia\nAbstract:\nIntroduction: Dystonia is a motor impairment that affects 20% of children post basal ganglia arterial ischemic stroke (CAIS). Disrupted inhibitory processing in the sensorimotor cortex is implicated and reflected by alterations in beta event-related desynchronization (ERD). In a prior magnetoencephalography (MEG) study during a cognitive-motor task\, beta ERD response amplitude was larger in both hemispheres of CAIS with no dystonia (D-)\, and the non-lesioned hemisphere of CAIS with dystonia (D+)\, compared to healthy controls (HC). This finding was suggestive of compensatory sensorimotor plasticity.\nObjective: To determine whether beta ERD shows similar trends during a passive movement task and explore associations with corticospinal tract (CST) microstructure.\nMethods: Diffusion magnetic resonance imaging (MRI) and MEG data were collected in CAIS (D+/D-) and HC participants from a prior study. A passive movement task assessed beta reactivity without the confounding effects of impaired motor execution. CST microstructure was evaluated using tractography and diffusion metrics.\nResults: Twenty-six participants (16CAIS: 8D+/8D- ;10HC) were included (Table 1). Compared to HC\, beta ERD amplitude during passive movement was greater in the lesioned hemisphere of D+ (p = 0.036) and the non-lesioned hemisphere of D- (p = 0.030) patients\, with similar trends in the other hands (Fig 1). In the lesioned hemisphere\, mean diffusivity (MD) was highest in D+\, intermediate in the D-\, and lowest in the HC group. Fractional anisotropy (FA) showed an inverse trend. Non-lesioned hemispheres showed comparable MD and FA across groups (Fig 2).\nConclusion: Group differences in CST.microstructure were consistent with motor outcomes but did not mirror the functional measures of inhibitory processing. Our finding of higher beta ERD during passive movement of both hands\, in all CAIS groups (D+/D-) compared to controls\, was unexpected.\nThese studies suggest that the basic function of the CST is relatively preserved in dystonia. Future studies should investigate the potential role of cognition in the maladaptive response of dystonia.\nHsu P.\, et al.\, (2025) Hum Brain Mapp. 46 e7020\nSupervisor Name: Douglas Cheyne\nYear of Study: 2\nProgram of Study: MASc\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-student-seminar-series-sima-buchnak/
LOCATION:MS2158
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20251219T162500
DTEND;TZID=America/Toronto:20251219T164000
DTSTAMP:20251219T180755Z
CREATED:20251015T172231Z
LAST-MODIFIED:20251219T180755Z
UID:10000640-1766161500-1766162400@bme.utoronto.ca
SUMMARY:Graduate Student Seminar Series - Fanglin Gong
DESCRIPTION:Graduate Student Seminar Series\nPlease ensure you invite your Principal Investigator by adding their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nLocation: MS2158 – 1 King’s College Circle\nPresentation Title: Engineering of Amino Acid-Derived Ionizable Lipids Enables Inhaled Base Editing for Therapeutic Gene Correction in the Lung\nAbstract: CRISPR-based gene editing holds promise for treating genetic diseases\, yet its application to lung disorders has been hindered by the challenges of pulmonary delivery. Inspired by the modularity and biocompatibility of amino acid-derived chemistries\, we report the combinatorial synthesis of 960 ionizable lipids incorporating chemically diverse backbones from both proteinogenic and non-proteinogenic α-amino acids. Through high-throughput screening and structure-function analysis\, we identify CHCha-10\, a cyclohexyl amino acid-derived lipid that forms biodegradable nanoparticles capable of efficiently delivering mRNA-based gene editors to lung epithelial cells. Following intratracheal administration\, CHCha-10 nanoparticles exhibit enhanced mucus penetration\, and epithelial-specific transfection in both mice and ferrets. As a functional application\, we demonstrate the first instance of in vivo base editing in the lung via inhalation. Delivery of adenine base editor mRNA and guide RNA targeting the CFTR G542X mutation restores CFTR expression and chloride channel function in G542X human airway epithelial cells\, mouse-derived intestinal organoids\, and the lungs of cystic fibrosis mice. This work establishes a chemically modular design framework for ionizable lipids and a translatable platform for RNA-based pulmonary gene correction.\nSupervisor Name: Dr. Bowen Li\nYear of Study: 3\nProgram of Study: PhD\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-student-seminar-series-fanglin-gong-2/
LOCATION:MS2158
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20251219T161000
DTEND;TZID=America/Toronto:20251219T162500
DTSTAMP:20251219T180755Z
CREATED:20251016T172233Z
LAST-MODIFIED:20251219T180755Z
UID:10000643-1766160600-1766161500@bme.utoronto.ca
SUMMARY:Graduate Student Seminar Series - Mahmoud Abdelkarim
DESCRIPTION:Graduate Student Seminar Series\nPlease ensure you invite your Principal Investigator by adding their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nLocation: MS2158 – 1 King’s College Circle\nPresentation Title: Hydrodynamic focusing to synthesize lipid-based nanoparticles: Computational and experimental analysis of chip design and formulation parameters\nSupervisor Name: Hagar Labouta\nYear of Study: 3\nProgram of Study: PhD\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-student-seminar-series-mahmoud-abdelkarim/
LOCATION:MS2158
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20251212T165500
DTEND;TZID=America/Toronto:20251212T171000
DTSTAMP:20251211T213854Z
CREATED:20251016T172233Z
LAST-MODIFIED:20251211T213854Z
UID:10000642-1765558500-1765559400@bme.utoronto.ca
SUMMARY:Graduate Student Seminar Series - Michael Lam
DESCRIPTION:Graduate Student Seminar Series\nPlease ensure you invite your Principal Investigator by adding their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nLocation: MS2158 – 1 King’s College Circle\nPresentation Title: Design and Feasibility of a Dynamic Difficulty Adjustment Algorithm for Rehabilitation Video Games\nSupervisor Name: Elaine Biddiss\nYear of Study: 2\nProgram of Study: MASc\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-student-seminar-series-michael-lam/
LOCATION:MS2158
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20251212T164000
DTEND;TZID=America/Toronto:20251212T165500
DTSTAMP:20251211T213854Z
CREATED:20251015T172231Z
LAST-MODIFIED:20251211T213854Z
UID:10000639-1765557600-1765558500@bme.utoronto.ca
SUMMARY:Graduate Student Seminar Series - Reut Shor
DESCRIPTION:Graduate Student Seminar Series\nPlease ensure you invite your Principal Investigator by adding their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nLocation: MS2158 – 1 King’s College Circle\nPresentation Title: Reversing Outer Retinal Corrugations: Toward Optimized RRD Management\nAbstract:\nObjective: To develop and validate a quantitative biomechanical framework that models outer retinal corrugations (ORC) formation and progression in rhegmatogenous retinal detachment (RRD) patients\, to predict the development of post-op outer retinal fold (ORF).\nMethods: In a prospective\, multicenter cohort at St. Michael’s Hospital (Toronto\, Canada) and the Department of Medicine and Health Sciences “V. Tiberio” (Campobasso\, Italy) from January 1\, 2023\, to January 1\, 2025\, sequential OCT scans of detached retinas in RRD patients were obtained at presentation\, within 24h before treatment\, and at 1-\, 3-\, and 6-months post-treatment. Regions of interest (ROIs) were aligned across scans using shared anatomic landmarks\, manually segmented\, and automatically analyzed in MATLAB to compute strain mismatch and elasticity-modulus mismatch. Measured values were compared with theoretical predictions for surface-instability patterns in a bilayer system with differential expansion rates. Temporal changes in strain and modulus mismatch were evaluated against kinetic models of gel swelling. Correlation between strain values\, post-op ORF development and visual acuity (VA) were tested.\nResults: 42 patients (60 ROIs) met inclusion criteria. Post-op ORF occurred in 13/60 ROIs (21.7%). Elasticity-modulus mismatch versus strain was mapped to a bilayer phase diagram within a high-adhesion regime\, with non-corrugated ROIs in the “flat” region and corrugated ROIs in the “wrinkle/fold” domains. The minimum strain for the flat-to-corrugated transition was 0.13. No ORFs were observed for strain 5. The strain threshold associated with ~50% ORF risk differed by treatment: ≥0.25 for Pars Plana Vitrectomy (PPV) or Scleral Buckle (SB) and ≥0.43 for Pneumatic Retinopexy (PnR). A kinetic model of ORC progression based on gel-swelling theory showed good agreement with the data. Across cohorts\, higher pre-op strain trended toward worse post-op VA.\nConclusions: ORC behavior in RRD can be quantitatively characterized by strain and elasticity-modulus mismatch. Treatment-dependent strain thresholds predict post-op ORF and align with observed visual acuity trends. This mechanics-based framework elucidates ORC pathophysiology and may support risk stratification in choosing timing and selection of reattachment strategies.\nSupervisor Name: Prof Frank Gu\, Dr Rajeev Muni\nYear of Study: 2\nProgram of Study: MASc\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-student-seminar-series-reut-shor/
LOCATION:MS2158
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20251212T162500
DTEND;TZID=America/Toronto:20251212T164000
DTSTAMP:20251211T213854Z
CREATED:20251015T172231Z
LAST-MODIFIED:20251211T213854Z
UID:10000638-1765556700-1765557600@bme.utoronto.ca
SUMMARY:Graduate Student Seminar Series - Rena Far
DESCRIPTION:Graduate Student Seminar Series\nPlease ensure you invite your Principal Investigator by adding their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nLocation: MS2158 – 1 King’s College Circle\nPresentation Title: The effect of musical rhythms on human brain cell and circuit dynamics\nSupervisor Name: Dr. Taufik Valiante\nYear of Study: 2\nProgram of Study: PhD\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-student-seminar-series-rena-far/
LOCATION:MS2158
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20251212T161000
DTEND;TZID=America/Toronto:20251212T162500
DTSTAMP:20251211T213854Z
CREATED:20251015T172231Z
LAST-MODIFIED:20251211T213854Z
UID:10000637-1765555800-1765556700@bme.utoronto.ca
SUMMARY:Graduate Student Seminar Series - Osama Khan
DESCRIPTION:Graduate Student Seminar Series\nPlease ensure you invite your Principal Investigator by adding their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nLocation: MS2158 – 1 King’s College Circle\nPresentation Title: Drug delivery to lung cancer using prodrug-loaded microbubbles and endobronchial ultrasound\nSupervisor Name: Naomi Matsuura\nYear of Study: 2\nProgram of Study: PhD\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-student-seminar-series-osama-khan/
LOCATION:MS2158
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20251205T165500
DTEND;TZID=America/Toronto:20251205T171000
DTSTAMP:20251120T192238Z
CREATED:20251120T192238Z
LAST-MODIFIED:20251120T192238Z
UID:10000654-1764953700-1764954600@bme.utoronto.ca
SUMMARY:Graduate Student Seminar Series - Yinghe Sun
DESCRIPTION:Graduate Student Seminar Series\nPlease ensure you invite your Principal Investigator by adding their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nLocation: MS2158 – 1 King’s College Circle\nPresentation Title: Identifying generalizable features in peripheral nerve recordings for improved neuroprosthetic control\nAbstract:\nPeripheral nerve interfaces can be used to create advanced assistive technologies. Neural networks associated with multicontact nerve cuff electrodes can selectively record and discriminate neural recordings and facilitate neuroprosthetic control. Due to variations in device positioning and anatomy\, neural networks trained on one subject currently cannot generalize to others. To take advantage of available data from other subjects\, the objective was to train a neural network whose encoder portion can extract representations that generalize effectively when using transfer learning to adapt the classification to new subjects.\nThe study applied neural networks to classify naturally evoked compound action potentials corresponding to three different sensory stimuli. The datasets were obtained from the sciatic nerves of 9 Long-Evans Rats through 7×8-channel cuff electrodes. To leverage data from multiple subjects\, we pre-trained the network on either one subject or merged data from multiple subjects\, then used cross-validation to retrain and evaluate it on a separate target subject. Layer freezing was applied to identify which part of the encoder would best generalize.\nPre-training with merged datasets led to a significant increase in mean macro-F1 score compared to subject-specific models trained from scratch (0.810±0.130 vs 0.733±0.121\, p < 0.05)\, regardless of the number of frozen layers. Pre-training on a single subject did not lead to a significant improvement.\nA pre-training approach combining data from multiple subjects shows significant improvement in classification performance. The study developed an encoder that benefits classification performance on unseen subjects despite anatomical variability and device positioning differences.\nSupervisor Name: José Zariffa\nYear of Study: 3\nProgram of Study: PhD\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-student-seminar-series-yinghe-sun-2/
LOCATION:MS2158
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20251205T165500
DTEND;TZID=America/Toronto:20251205T171000
DTSTAMP:20251205T200737Z
CREATED:20251120T192237Z
LAST-MODIFIED:20251205T200737Z
UID:10000653-1764953700-1764954600@bme.utoronto.ca
SUMMARY:Graduate Student Seminar Series - Yinghe Sun
DESCRIPTION:Graduate Student Seminar Series\nPlease ensure you invite your Principal Investigator by adding their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nLocation: MS2158 – 1 King’s College Circle\nPresentation Title: Identifying generalizable features in peripheral nerve recordings for improved neuroprosthetic control\nAbstract:\nPeripheral nerve interfaces can be used to create advanced assistive technologies. Neural networks associated with multicontact nerve cuff electrodes can selectively record and discriminate neural recordings and facilitate neuroprosthetic control. Due to variations in device positioning and anatomy\, neural networks trained on one subject currently cannot generalize to others. To take advantage of available data from other subjects\, the objective was to train a neural network whose encoder portion can extract representations that generalize effectively when using transfer learning to adapt the classification to new subjects.\nThe study applied neural networks to classify naturally evoked compound action potentials corresponding to three different sensory stimuli. The datasets were obtained from the sciatic nerves of 9 Long-Evans Rats through 7×8-channel cuff electrodes. To leverage data from multiple subjects\, we pre-trained the network on either one subject or merged data from multiple subjects\, then used cross-validation to retrain and evaluate it on a separate target subject. Layer freezing was applied to identify which part of the encoder would best generalize.\nPre-training with merged datasets led to a significant increase in mean macro-F1 score compared to subject-specific models trained from scratch (0.810±0.130 vs 0.733±0.121\, p < 0.05)\, regardless of the number of frozen layers. Pre-training on a single subject did not lead to a significant improvement.\nA pre-training approach combining data from multiple subjects shows significant improvement in classification performance. The study developed an encoder that benefits classification performance on unseen subjects despite anatomical variability and device positioning differences.\nSupervisor Name: José Zariffa\nYear of Study: 3\nProgram of Study: PhD\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-student-seminar-series-yinghe-sun/
LOCATION:MS2158
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20251205T164000
DTEND;TZID=America/Toronto:20251205T165500
DTSTAMP:20251205T200738Z
CREATED:20251015T172231Z
LAST-MODIFIED:20251205T200738Z
UID:10000636-1764952800-1764953700@bme.utoronto.ca
SUMMARY:Graduate Student Seminar Series - Jathushan Kaetheeswaran
DESCRIPTION:Graduate Student Seminar Series\nPlease ensure you invite your Principal Investigator by adding their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nLocation: MS2158 – 1 King’s College Circle\nPresentation Title: Consumer-grade Smartwatches for Cardiovascular Monitoring\nAbstract: Consumer-grade smartwatches offer a new personalized health monitoring option for general consumers globally as cardiovascular diseases continue to prevail as the leading cause of global mortality. The development and validation of reliable cardiovascular monitoring algorithms for these consumer-grade devices requires realistic biosignal data from diverse sets of participants. However\, the availability of public consumer-grade smartwatch datasets with synchronized cardiovascular biosignals is limited\, and existing datasets do not offer rich demographic diversity in their participant cohorts\, leading to potentially biased algorithm development. This paper presents HEART-Watch\, a multimodal physiological dataset collected from temporally synchronized wrist-worn Google Pixel Watch 2 electrocardiogram (ECG)\, photoplethysmography\, and accelerometer signals from a diverse cohort of 40 healthy adults across three physical states – sitting\, standing and walking with reference chest ECG. Intermittent upper arm blood pressure measurements and concurrent biosignals were collected as an additional biomarker for future research.\nSupervisor Name: Milad Lankarany\nYear of Study: 2\nProgram of Study: MASc\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-student-seminar-series-jathushan-kaetheeswaran/
LOCATION:MS2158
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20251205T162500
DTEND;TZID=America/Toronto:20251205T164000
DTSTAMP:20251205T200737Z
CREATED:20251015T172231Z
LAST-MODIFIED:20251205T200737Z
UID:10000635-1764951900-1764952800@bme.utoronto.ca
SUMMARY:Graduate Student Seminar Series - Richard jiang
DESCRIPTION:Graduate Student Seminar Series\nPlease ensure you invite your Principal Investigator by adding their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nLocation: MS2158 – 1 King’s College Circle\nPresentation Title: Development of Customizable Biomaterials that Promote Cardiac Tissue Growth Through Mechanical and Physical Cues\nSupervisor Name: Milica Radisic\nYear of Study: 3\nProgram of Study: PhD\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-student-seminar-series-richard-jiang/
LOCATION:MS2158
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20251205T161000
DTEND;TZID=America/Toronto:20251205T162500
DTSTAMP:20251205T200737Z
CREATED:20251015T172231Z
LAST-MODIFIED:20251205T200737Z
UID:10000634-1764951000-1764951900@bme.utoronto.ca
SUMMARY:Graduate Student Seminar Series - Jennifer Kieda
DESCRIPTION:Graduate Student Seminar Series\nPlease ensure you invite your Principal Investigator by adding their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nLocation: MS2158 – 1 King’s College Circle\nPresentation Title: POMaC particles for use in tissue engineering\nSupervisor Name: Milica Radisic\nYear of Study: 5\nProgram of Study: PhD\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-student-seminar-series-jennifer-kieda/
LOCATION:MS2158
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20251121T165500
DTEND;TZID=America/Toronto:20251121T171000
DTSTAMP:20251121T192229Z
CREATED:20251016T172232Z
LAST-MODIFIED:20251121T192229Z
UID:10000641-1763744100-1763745000@bme.utoronto.ca
SUMMARY:Graduate Student Seminar Series - Rachel Leung
DESCRIPTION:Graduate Student Seminar Series\nPlease ensure you invite your Principal Investigator by adding their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nLocation: MS2158 – 1 King’s College Circle\nPresentation Title: Fracture Prediction using Deep Learning: Pre-Clinical application in Spinal µCT Imaging\nSupervisor Name: Michael Hardisty\nYear of Study: 2\nProgram of Study: MASc\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-student-seminar-series-rachel-leung-2/
LOCATION:MS2158
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20251121T164000
DTEND;TZID=America/Toronto:20251121T165500
DTSTAMP:20251121T192229Z
CREATED:20251031T182228Z
LAST-MODIFIED:20251121T192229Z
UID:10000649-1763743200-1763744100@bme.utoronto.ca
SUMMARY:Graduate Student Seminar Series - Carolina Chavez Madero
DESCRIPTION:Graduate Student Seminar Series\nPlease ensure you invite your Principal Investigator by adding their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nLocation: MS2158 – 1 King’s College Circle\nPresentation Title: Using extracellular signal-regulated kinase (ERK) 1/2 signalling to predict muscle cells fate outcomes\nSupervisor Name: Penney Gilbert\nYear of Study: 6\nProgram of Study: PhD\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-student-seminar-series-carolina-chavez-madero-3/
LOCATION:MS2158
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20251121T162500
DTEND;TZID=America/Toronto:20251121T164000
DTSTAMP:20251121T192229Z
CREATED:20251015T172231Z
LAST-MODIFIED:20251121T192229Z
UID:10000633-1763742300-1763743200@bme.utoronto.ca
SUMMARY:Graduate Student Seminar Series - Nayana Menon
DESCRIPTION:Graduate Student Seminar Series\nPlease ensure you invite your Principal Investigator by adding their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nLocation: MS2158 – 1 King’s College Circle\nPresentation Title: Functional MRI in the White Matter: The Roles of Fibre Orientation and Hemodynamics\nSupervisor Name: Dr. Jean Chen\nYear of Study: 3\nProgram of Study: PhD\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-student-seminar-series-nayana-menon/
LOCATION:MS2158
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20251121T161000
DTEND;TZID=America/Toronto:20251121T162500
DTSTAMP:20251121T192229Z
CREATED:20251015T172230Z
LAST-MODIFIED:20251121T192229Z
UID:10000632-1763741400-1763742300@bme.utoronto.ca
SUMMARY:Graduate Student Seminar Series - Atoosa Ziyaeyan
DESCRIPTION:Graduate Student Seminar Series\nPlease ensure you invite your Principal Investigator by adding their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nLocation: MS2158 – 1 King’s College Circle\nPresentation Title: Investigating the interplay between gut microbiome\, monocytes/macrophages\, and osteoarthritis\nSupervisor Name: Sowmya Viswanathan\nYear of Study: 4\nProgram of Study: PhD\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-student-seminar-series-atoosa-ziyaeyan-2/
LOCATION:MS2158
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20251114T160000
DTEND;TZID=America/Toronto:20251114T173000
DTSTAMP:20251111T210534Z
CREATED:20251111T210441Z
LAST-MODIFIED:20251111T210534Z
UID:10000650-1763136000-1763141400@bme.utoronto.ca
SUMMARY:BME 3-Minute Thesis Semifinals
DESCRIPTION:The 3MT competition takes place during the Graduate Student Seminar Time slot. All attendees will be given a credit for attendance counted towards their seminar attendance requirements.  \n\n\n\nHosted by BESA
URL:https://bme.utoronto.ca/event/3-minute-thesis-semifinals/
LOCATION:MS2158
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20251107T161000
DTEND;TZID=America/Toronto:20251107T162500
DTSTAMP:20251107T190741Z
CREATED:20250905T180504Z
LAST-MODIFIED:20251107T190741Z
UID:10000604-1762531800-1762532700@bme.utoronto.ca
SUMMARY:Graduate Student Seminar Series - David Koivisto
DESCRIPTION:Graduate Student Seminar Series\nPlease ensure you invite your Principal Investigator by adding their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nLocation: MS2158 – 1 King’s College Circle\nPresentation Title: Investigating the Extent of Spinal Cord Involvement from Induced Central Sensitization at a Single Cervical Level\nAbstract:\nRepeated exposure to painful stimuli leads to neuroplastic changes in the central nervous system\, increasing pain sensitivity and separating pain from the original stimulus. Across chronic pain conditions\, these changes are referred to as central sensitization (CS). Current identification of CS is heavily influenced by patient bias and an objective biomarker for CS is needed to refine treatment strategies and improve patient outcomes. The purpose of this study is to investigate the effect of induced CS on motor units (MUs) across spinal levels through electromyography (EMG) and the sensory changes experienced by participants across dermatomes. This study aimed to recruit 24 (N=24) healthy male participants between 18-35 years of age. EMG and clinical sensory assessment measurements are taken at baseline and after the application of the heat/capsaicin model\, used to induce CS. The intervention is applied to the C3/C4 spinal level\, with subsequent testing at myotome and dermatome locations down to the C7 spinal level. Participants performed isometric ramp contractions of 10%\, 35%\, and 55% of their maximum voluntary contraction (MVC) for each muscle. An additional EMG measurement is taken from the level of intervention at 35% MVC following a brief painful stimulus. All EMG data is decomposed to evaluate firing characteristics from the same population of individual MU spike trains\, identified through MU tracking. Sensory testing showed a significant difference to the control group at the C3/C4 level. Early spike train feature results display a decrease in discharge rate across most muscles groups at each MVC level. The sensory results support the use of the modality used to induce CS. EMG may have the potential to be used as a biomarker for CS but\, further analysis is needed to identify\nEMG differences between healthy\, induced pain and CS conditions.\nSupervisor Name: Dr. Dinesh Kumbhare\nYear of Study: 2\nProgram of Study: MASc\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-student-seminar-series-david-koivisto/
LOCATION:MS2158
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20251024T165500
DTEND;TZID=America/Toronto:20251024T171000
DTSTAMP:20251024T180735Z
CREATED:20250905T180506Z
LAST-MODIFIED:20251024T180735Z
UID:10000624-1761324900-1761325800@bme.utoronto.ca
SUMMARY:Graduate Student Seminar Series - Dianoosh Kalhory
DESCRIPTION:Graduate Student Seminar Series\nPlease ensure you invite your Principal Investigator by adding their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nLocation: MS2158 – 1 King’s College Circle\nPresentation Title: In Vitro Model for Screening RNA/Drug Delivery by Lipid Nanoparticles for Treatment of Lung Diseases\nAbstract:\nThe goal of my research is to create a medium- or high-throughput LOC model for screening RNA-based drugs encapsulated in LNPs by using a bioprinting-on-chip technique. To reach this goal\, my thesis will be structured around three specific aims that will develop into a MF platform for in vitro lung disease modeling and screening RNA-based drugs for the treatment of lung diseases.\nAim 1: Formation of a gel-embedded bi-layer lung epithelial cells and microvascular endothelial cells at the air-liquid interface\nAim 2: Design\, fabrication\, and development of a lung-on-chip platform\nAim 3: Encapsulation of micro-ribonucleic acids in lipid nanoparticles and their delivery to lung cells\nSupervisor Name: Eugenia Kumacheva & Gilbert Walker\nYear of Study: 2\nProgram of Study: PhD\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-student-seminar-series-dianoosh-kalhory/
LOCATION:MS2158
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20251024T164000
DTEND;TZID=America/Toronto:20251024T165500
DTSTAMP:20251024T180735Z
CREATED:20251007T165244Z
LAST-MODIFIED:20251024T180735Z
UID:10000631-1761324000-1761324900@bme.utoronto.ca
SUMMARY:Graduate Student Seminar Series - Barry Bytensky
DESCRIPTION:Graduate Student Seminar Series\nPlease ensure you invite your Principal Investigator by adding their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nLocation: MS2158 – 1 King’s College Circle\nPresentation Title: Simulating Focused Ultrasound Therapies for Paediatric Retinoblastoma\nAbstract: Retinoblastoma is the most common eye cancer in children and has a high survival rate due to the removal of eyes with large tumours. In most cases\, chemotherapy is used to reduce the size of tumours\, which may fail to prevent the cancer from coming back and can damage surrounding tissues in the eye. New treatments seek to precisely target tumours without harming healthy tissues. Focused ultrasound is a non-invasive therapeutic tool that concentrates sound waves within a volume the size of a grain of rice. This may be used for burning eye tumours directly\, or to improve the delivery of chemotherapy drugs. This\, in turn\, may enable improved eye tumour treatment. To investigate potential ultrasound therapies\, a computer program was developed that can simulate the ultrasound and thermal properties of the eye in 3D. Using paediatric eye models from patient MRI scans\, simulations have suggested focused ultrasound can be used to heat retinoblastoma tumours without damaging surrounding structures such as the lens. In this research project\, tissue-mimicking eye models will be developed\, and their ultrasound and thermal properties will be measured. Simulated and experimentally measured temperatures in these models will be compared to ensure the computer program can accurately predict treatment results. Furthermore\, this computer program will be developed into a comprehensive treatment planning tool to determine ideal treatment configurations and design new ultrasound systems. Finally\, this tool will be used in animal studies investigating the use of ultrasound to treat eye cancers. This will result in a simulation platform which can be used to predict the outcomes of a wide range of ultrasound treatments.\nSupervisor Name: George Ibrahim\nYear of Study: 2\nProgram of Study: PhD\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-student-seminar-series-barry-bytensky/
LOCATION:MS2158
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20251024T164000
DTEND;TZID=America/Toronto:20251024T165500
DTSTAMP:20251024T180735Z
CREATED:20250905T180506Z
LAST-MODIFIED:20251024T180735Z
UID:10000625-1761324000-1761324900@bme.utoronto.ca
SUMMARY:Canceled: Graduate Student Seminar Series - Fanglin Gong
DESCRIPTION:Graduate Student Seminar Series\nPlease ensure you invite your Principal Investigator by adding their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nLocation: MS2158 – 1 King’s College Circle\nPresentation Title: Engineering of Amino Acid-Derived Ionizable Lipids Enables Inhaled Base Editing for Therapeutic Gene Correction in the Lung\nAbstract: CRISPR-based gene editing holds promise for treating genetic diseases\, yet its application to lung disorders has been hindered by the challenges of pulmonary delivery. Inspired by the modularity and biocompatibility of amino acid-derived chemistries\, we report the combinatorial synthesis of 960 ionizable lipids incorporating chemically diverse backbones from both proteinogenic and non-proteinogenic α-amino acids. Through high-throughput screening and structure-function analysis\, we identify CHCha-10\, a cyclohexyl amino acid-derived lipid that forms biodegradable nanoparticles capable of efficiently delivering mRNA-based gene editors to lung epithelial cells. Following intratracheal administration\, CHCha-10 nanoparticles exhibit enhanced mucus penetration\, and epithelial-specific transfection in both mice and ferrets. As a functional application\, we demonstrate the first instance of in vivo base editing in the lung via inhalation. Delivery of adenine base editor mRNA and guide RNA targeting the CFTR G542X mutation restores CFTR expression and chloride channel function in G542X human airway epithelial cells\, mouse-derived intestinal organoids\, and the lungs of cystic fibrosis mice. This work establishes a chemically modular design framework for ionizable lipids and a translatable platform for RNA-based pulmonary gene correction.\nSupervisor Name: Dr. Bowen Li\nYear of Study: 3\nProgram of Study: PhD\nCancellation Reason:\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-student-seminar-series-fanglin-gong/
LOCATION:MS2158
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20251024T162500
DTEND;TZID=America/Toronto:20251024T164000
DTSTAMP:20251024T180735Z
CREATED:20250905T180506Z
LAST-MODIFIED:20251024T180735Z
UID:10000623-1761323100-1761324000@bme.utoronto.ca
SUMMARY:Graduate Student Seminar Series - Matthew Jenkins
DESCRIPTION:Graduate Student Seminar Series\nPlease ensure you invite your Principal Investigator by adding their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nLocation: MS2158 – 1 King’s College Circle\nPresentation Title: Ultrasound Guided Histotripsy for IVH Clot Lysis\nSupervisor Name: Adam Waspe and George Ibrahim\nYear of Study: 3\nProgram of Study: MASc\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-student-seminar-series-matthew-jenkins/
LOCATION:MS2158
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20251024T161000
DTEND;TZID=America/Toronto:20251024T162500
DTSTAMP:20251024T180735Z
CREATED:20250905T180506Z
LAST-MODIFIED:20251024T180735Z
UID:10000622-1761322200-1761323100@bme.utoronto.ca
SUMMARY:Canceled: Graduate Student Seminar Series - Madhumitha Ramamurthy
DESCRIPTION:Graduate Student Seminar Series\nPlease ensure you invite your Principal Investigator by adding their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nLocation: MS2158 – 1 King’s College Circle\nPresentation Title: Understanding the roles of resident macrophages in osteoarthritis progression\nSupervisor Name: Sowmya Viswanathan\nYear of Study: 2\nProgram of Study: PhD\nCancellation Reason:\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-student-seminar-series-madhumitha-ramamurthy/
LOCATION:MS2158
CATEGORIES:Graduate Seminar Series
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Toronto:20251017T165500
DTEND;TZID=America/Toronto:20251017T171000
DTSTAMP:20251017T173749Z
CREATED:20250905T180506Z
LAST-MODIFIED:20251017T173749Z
UID:10000620-1760720100-1760721000@bme.utoronto.ca
SUMMARY:Graduate Student Seminar Series - Shaurya Gupta
DESCRIPTION:Graduate Student Seminar Series\nPlease ensure you invite your Principal Investigator by adding their email via the ‘Add Guest’ button and they will also be notified of your presentation.\nLocation: MS2158 – 1 King’s College Circle\nPresentation Title: Robot-assisted Hydrogel Injection for Spinal Cord Injury Repair\nSupervisor Name: Dr. Albert Yee\nYear of Study: 5\nProgram of Study: PhD\nPowered by Calendly.com
URL:https://bme.utoronto.ca/event/graduate-student-seminar-series-shaurya-gupta/
LOCATION:MS2158
CATEGORIES:Graduate Seminar Series
END:VEVENT
END:VCALENDAR