Seminars
March 2025
Oligodendrocyte dyfunction drives human cognitive decline
Georgina Craig· Unity Health Toronto
Thu, Mar 6 · 06:30 UTC · Online
Regulation of cortical circuit maturation and plasticity by oligodendrocytes and myelin
Wendy Xin· UCSF
Thu, Mar 6 · 06:00 UTC
Developmental NeuroscienceNeuroscienceSeries: Canadian Neuroscience Seminars - Postdoctoral Series+2 more
On Idiosyncratic Biases in Decision-Making
Yonatan Loewenstein· ELSC, The Hebrew University
Wed, Mar 5 · 16:00 UTC
Why do individuals, both humans and animals, exhibit personal biases in two-alternative decision-making tasks, even when no clear reason exists to favor one alternative over another? In this talk, I will explore two competing hypotheses to explain these idiosyncratic biases. The first suggests that such tendencies arise from unique personal experiences, where past associations between actions and feedback influence future choices. The second hypothesis proposes that the bias reflects irreducible microscopic heterogeneities in the dynamics of decision-making networks. I will present experimental data and theoretical findings that support the latter hypothesis, shedding new light on the neural mechanisms behind seemingly irrational preferences. Presented in the van Vreeswijk Theoretical Neuroscience Seminar series (formerly WWTNS) on 2025-03-05. Recording duration: 00:50:36.
Computational NeuroscienceNeuroscienceSeries: van Vreeswijk Theoretical Neuroscience SeminarVideo+2 more
A Novel Neurophysiological Approach to Assessing Distractibility within the General Population
Shadee Thiam· University of Geneva
Wed, Mar 5 · 14:00 UTC
Vulnerability to distraction varies across the general population and significantly affects one’s capacity to stay focused on and successfully complete the task at hand, whether at school, on the road, or at work. In this talk, I will begin by discussing how distractibility is typically assessed in the literature and introduce our innovative ERP approach to measuring it. Since distractibility is a cardinal symptom of ADHD, I will introduce its most widely used paper-and-pencil screening tool for the general population as external validation. Following that, I will present the Load Theory of Attention and explain how we used perceptual load to test the reliability of our neural marker of distractibility. Finally, I will highlight potential future applications of this marker in clinical and educational settings.
Spatio-temporal Regulation of Gene Expression in Neurons: Insights from Imaging mRNAs Live in Action
Sulagna Das· Assistant Professor, Emory University School of Medicine
Mon, Mar 3 · 19:00 UTC
Molecular BiologyNeuroscience+2 more
February 2025
Honorary Lectures 2025
Bertil Fredholm, Suzanne Haber· Karolinska Institute & University of Rochester Medical Centre
Fri, Feb 28 · 16:00 UTC · Online
Timescale localization and signal propagation in the large-scale cortical network
Songting Li· Shanghai Jiao Tong University
Wed, Feb 26 · 16:00 UTC
In the brain, while early sensory areas encode and process external inputs rapidly, higher-association areas are endowed with slow dynamics to benefit information accumulation over time. This property raises the question of why diverse timescales are well localized rather than being mixed up across the cortex, despite high connection density and an abundance of feedback loops that support reliable signal propagation. In this talk, we will address this question by analyzing a large-scale network model of the primate cortex, and we identify a novel dynamical regime termed "interference-free propagation". In this regime, the mean components of the synaptic currents to each downstream area are imbalanced to ensure signals to propagate reliably, while the temporally fluctuating components of the synaptic inputs governed by upstream areas' timescales are largely canceled out, leading to the localization of its own timescale in each downstream area. Our result provides new insights into the operational regime of the cortex, leading to the coexistence of hierarchical timescale localization and reliable signal propagation. Presented in the van Vreeswijk Theoretical Neuroscience Seminar series (formerly WWTNS) on 2025-02-26. Recording duration: 00:48:02.
Computational NeuroscienceNeuroscienceSeries: van Vreeswijk Theoretical Neuroscience SeminarVideo+2 more
Do You Know Your Blood Glucose Level? You Probably Should! A single measurement is not enough to truly understand your metabolic health. Blood glucose levels fluctuate dynamically, and meaningful insights require continuous monitoring over time. But glucose is just one example. Many other molecular concentrations in the body are not static. Their variations are influenced by individual physiology and overall health. PhenoSign, a Swiss MedTech startup, is on a mission to become the leader in real-time molecular analysis of complex fluids, supporting clinical decision-making and life sciences applications. By providing real-time, in-situ molecular insights, we aim to advance medicine and transform life sciences research. This talk will provide an overview of PhenoSign’s journey since its inception in 2022—our achievements, challenges, and the strategic roadmap we are executing to shape the future of real-time molecular diagnostics.
Learning Representations of Complex Meaning in the Human Brain
Leila Wehbe· Associate Professor, Machine Learning Department, Carnegie Mellon University
Mon, Feb 24 · 19:00 UTC
NeuroscienceCognition
Brain Emulation Challenge Workshop
Razvan Marinescu· Assistant Professor, UC Santa Cruz, Department of Computer Science and Engineering
Fri, Feb 21 · 23:00 UTC · Online
Brain Emulation Challenge workshop will tackle cutting-edge topics such as ground-truthing for validation, leveraging artificial datasets generated from virtual brain tissue, and the transformative potential of virtual brain platforms, such as applied to the forthcoming Brain Emulation Challenge.
Computational NeuroscienceNeuroscienceSeries: Carboncopies Foundation - Brain Emulation ChallengeVideo+2 more
Brain Emulation Challenge Workshop
Randal A. Koene· Co-Founder and Chief Science Officer, Carboncopies
Fri, Feb 21 · 23:00 UTC
Brain Emulation Challenge workshop will tackle cutting-edge topics such as ground-truthing for validation, leveraging artificial datasets generated from virtual brain tissue, and the transformative potential of virtual brain platforms, such as applied to the forthcoming Brain Emulation Challenge.
Computational NeuroscienceNeuroscienceSeries: Carboncopies Foundation - Brain Emulation ChallengeVideo+1 more
Brain Emulation Challenge Workshop
Konrad Kording· Professor,University of Pennsylvania, Department of Neuroscience and Department of Bioengineering
Fri, Feb 21 · 23:00 UTC
Brain Emulation Challenge workshop will tackle cutting-edge topics such as ground-truthing for validation, leveraging artificial datasets generated from virtual brain tissue, and the transformative potential of virtual brain platforms, such as applied to the forthcoming Brain Emulation Challenge.
Computational NeuroscienceNeuroscienceSeries: Carboncopies Foundation - Brain Emulation ChallengeVideo+3 more
Brain Emulation Challenge Workshop
Philip Shiu· Neuroscientist at A.I., Cognitive Science and Neurobiology Company, EON Systems
Fri, Feb 21 · 23:00 UTC · Online
Brain Emulation Challenge workshop will tackle cutting-edge topics such as ground-truthing for validation, leveraging artificial datasets generated from virtual brain tissue, and the transformative potential of virtual brain platforms, such as applied to the forthcoming Brain Emulation Challenge.
Computational NeuroscienceNeuroscienceSeries: Carboncopies Foundation - Brain Emulation ChallengeVideo+2 more
Brain Emulation Challenge Workshop
Janne K. Lappalainen· University of Tübingen and Max Planck Research School for Intelligent Systems
Fri, Feb 21 · 23:00 UTC
Brain Emulation Challenge workshop will tackle cutting-edge topics such as ground-truthing for validation, leveraging artificial datasets generated from virtual brain tissue, and the transformative potential of virtual brain platforms, such as applied to the forthcoming Brain Emulation Challenge.
Computational NeuroscienceNeuroscienceSeries: Carboncopies Foundation - Brain Emulation ChallengeVideo+3 more
LRRK2 – a master regulator of neurodegeneration: acting on multiple systems including neuroinflammatory signaling, vesicular trafficking, and cell death pathways
Hardy Rideout· Biomedical Research Foundation, Academy of Athens
Fri, Feb 21 · 14:30 UTC
Structural & Functional Neuroplasticity in Children with Hemiplegia
Christos Papadelis· University of Texas at Arlington
Fri, Feb 21 · 06:00 UTC
About 30% of children with cerebral palsy have congenital hemiplegia, resulting from periventricular white matter injury, which impairs the use of one hand and disrupts bimanual co-ordination. Congenital hemiplegia has a profound effect on each child's life and, thus, is of great importance to the public health. Changes in brain organization (neuroplasticity) often occur following periventricular white matter injury. These changes vary widely depending on the timing, location, and extent of the injury, as well as the functional system involved. Currently, we have limited knowledge of neuroplasticity in children with congenital hemiplegia. As a result, we provide rehabilitation treatment to these children almost blindly based exclusively on behavioral data. In this talk, I will present recent research evidence of my team on understanding neuroplasticity in children with congenital hemiplegia by using a multimodal neuroimaging approach that combines data from structural and functional neuroimaging methods. I will further present preliminary data regarding functional improvements of upper extremities motor and sensory functions as a result of rehabilitation with a robotic system that involves active participation of the child in a video-game setup. Our research is essential for the development of novel or improved neurological rehabilitation strategies for children with congenital hemiplegia.
Brain ImagingMedicine+4 more
Representational drift reflects ongoing balancing of stochastic changes by Hebbian learning
Jens-Bastian Eppler· Centre de Recerca Matemàtica Barcelona
Wed, Feb 19 · 16:00 UTC
Even in stable environments, sensory responses undergo continuous reformatting, a phenomenon known as representational drift. Using chronic calcium imaging in mouse auditory cortex, we show that during this representational drift signal correlations predict future noise correlations, suggesting that stimulus-driven co-activation strengthens effective connectivity via Hebbian-like plasticity. Linear network models reveal that these temporal dependencies between signal and noise correlations emerge only when Hebbian learning balances stochastic synaptic changes, preventing functional degradation. Our findings highlight how ongoing input-driven plasticity stabilizes neural representations amidst inherent synaptic variability. Presented in the van Vreeswijk Theoretical Neuroscience Seminar series (formerly WWTNS) on 2025-02-19. Recording duration: 00:46:23.
The Promise of MitoQuinone Therapeutics in Experimental TBI
Firas H. Kobeissy· Morehouse School of Medicine (CNMB)
Tue, Feb 18 · 19:00 UTC
PharmacologyNeuroscience+2 more
The synaptic functions of Alpha Synuclein and Lrrk2
Subhojit Roy, MD, PhD· University of Wisconsin-Madison
Tue, Feb 18 · 04:30 UTC
Alpha synuclein and Lrrk2 are key players in Parkinson's disease and related disorders, but their normal role has been confusing and controversial. Data from acute gene-editing based knockdown, followed by functional assays, will be presented.
Molecular BiologyNeuroscience+2 more
Digital Minds: Brain Development in the Age of Technology
Eva Telzer· Winston National Center on Technology Use, Brain and Psychological Development
Mon, Feb 17 · 20:00 UTC · Online
Digital Minds: Brain Development in the Age of Technology examines how our increasingly connected world shapes mental and cognitive health. From screen time and social media to virtual interactions, this seminar delves into the latest research on how technology influences brain development, relationships, and emotional well-being. Join us to explore strategies for harnessing technology's benefits while mitigating its potential challenges, empowering you to thrive in a digital age.
PsychologyCognition+1 more