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TINS Neurotwin

Seminars and recordings

March 2024

Stability of visual processing in passive and active vision

Tobias Rose· Institute of Experimental Epileptology and Cognition Research University of Bonn Medical Center

Ended

Thu, Mar 28 · 15:00 UTC

The visual system faces a dual challenge. On the one hand, features of the natural visual environment should be stably processed - irrespective of ongoing wiring changes, representational drift, and behavior. On the other hand, eye, head, and body motion require a robust integration of pose and gaze shifts in visual computations for a stable perception of the world. We address these dimensions of stable visual processing by studying the circuit mechanism of long-term representational stability, focusing on the role of plasticity, network structure, experience, and behavioral state while recording large-scale neuronal activity with miniature two-photon microscopy.

Vision ScienceNeuroscience+1 more

Predictive processing: a circuit approach to psychosis

Georg Keller· Friedrich Miescher Institute for Biomedical Research, Basel

Ended

Thu, Mar 14 · 15:00 UTC

Predictive processing is a computational framework that aims to explain how the brain processes sensory information by making predictions about the environment and minimizing prediction errors. It can also be used to explain some of the key symptoms of psychotic disorders such as schizophrenia. In my talk, I will provide an overview of our progress in this endeavor.

Computational NeuroscienceNeuroscience+1 moreVideo

May 2023

Coordination between excitatory and inhibitory synapses (providing positive and negative signals respectively) is required to ensure proper information processing in the brain. Many brain disorders, especially neurodevelopental disorders, are rooted in a specific disturbance of this coordination. In my research group we use a combination of two-photon microscopy and electrophisiology to examine how inhibitory synapses are fromed and how this formation is coordinated with nearby excitatroy synapses.

NeuroscienceCell Biology+3 more

March 2023

Hallucinations are a core symptom of psychotic disorders and have traditionally been difficult to study biologically. We developed a new behavioral computational approach to measure hallucinations-like perception in humans and mice alike. Using targeted neural circuit manipulations, we identified a causal role for striatal dopamine in mediating hallucination-like perception. Building on this, we currently investigate the neural and immunological upstream regulators of these dopaminergic circuits with the goal to identify new biological treatment targets for psychosis

PsychiatryNeuroscience+3 more

May 2022

Zebrafish models help untangle genetic interactions in motor neuron degeneration

Sorana Ciura· Imagine Institute, Université de Paris

Ended

Tue, May 31 · 15:00 UTC

Due to high homology to the human genome and rapid development, zebrafish have been successfully used to model diseases of the neuromuscular system. In this seminar, I will present current advances in modeling genetic causes of Amyotrophic Lateral Sclerosis (ALS), the most common motor neuron degeneration and show how epistatic interaction studies in zebrafish have helped elucidate synergistic effects of major ALS genes and their cellular targets.

GeneticsNeuroscience+1 more

Faking emotions and a therapeutic role for robots and chatbots: Ethics of using AI in psychotherapy

Bipin Indurkhya· Cognitive Science Department, Jagiellonian University, Kraków

Ended

Thu, May 19 · 15:00 UTC

In recent years, there has been a proliferation of social robots and chatbots that are designed so that users make an emotional attachment with them. This talk will start by presenting the first such chatbot, a program called Eliza designed by Joseph Weizenbaum in the mid 1960s. Then we will look at some recent robots and chatbots with Eliza-like interfaces and examine their benefits as well as various ethical issues raised by deploying such systems.

Artificial IntelligencePsychiatry+4 more

February 2022

How does the brain analyse sensory information and learns from it?

Sonja Hofer· Sainsbury Wellcome Centre for Neural Circuits and Behaviour

Ended

Thu, Feb 24 · 15:00 UTC · Online

Introducing exciting methods that enable neuroscientists to look deep into the living brain, allowing us to study how the brain's neural networks learn and process sensory information.

NeuroscienceCognition+2 more

June 2021

The quest for the cortical algorithm

Helmut Linde· Merck KGaA, Darmstadt, Germany

Ended

Thu, Jun 17 · 15:00 UTC

The cortical algorithm hypothesis states that there is one common computational framework to solve diverse cognitive problems such as vision, voice recognition and motion control. In my talk, I propose a strategy to guide the search for this algorithm and I present a few ideas on how some of its components might look like. I'll explain why a highly interdisciplinary approach is needed from neuroscience, computer science, mathematics and physics to make further progress in this important question.

Computational NeuroscienceNeuroscience+3 more

May 2021

Lessons from the cockpit of a fly

Michael Dickinson· California Institute of Technology

Ended

Thu, May 20 · 15:00 UTC

Flies represent nearly 10% of all species described by science and are arguably unmatched among flying organisms in their aerial agility. The flight trajectory of flies often consists of crisp straight flight segments interspersed with rapid changes in course called body saccades. Recent advances in genetic tools have made it possible to explore the neurobiological circuitry underlying these two distinct modes of fly flight behavior.

NeuroscienceEthology+2 more

Connectivity and computation in the cerebral cortex

Thomas Mrsic-Flogel· Sainsbury Wellcome Centre, UK

Ended

Thu, May 6 · 15:00 UTC

Neuroscientists believe that perception, action and cognition arise from brain’s activity. A major challenge in neuroscience is to understand how brain’s complex circuits give rise to activity patterns that support these different functions. I will discuss different ways of mapping neural circuits in the brain, and how we can relate the structure of neural circuits to the computations that take place within them, with an emphasis on the visual system.

Computational NeuroscienceNeuroscience+1 more

April 2021

One may think that Deep Learning technology works in ways that are similar to the human brain. This is not really true. Our best AI technology still does not mimic the brain sufficiently well to be a match in intelligence. I will describe seven differences on how our minds work in ways diametrically opposite to those of Deep Learning technology.

Deep LearningNeuroscience+1 moreVideo

Fish Feelings: Emotional states in larval zebrafish

Florian Engert· Harvard University

Ended

Thu, Apr 8 · 15:00 UTC

I’ll give an overview of internal - or motivational - states in larval zebrafish. Specifically we will focus on the role of the Oxytocin system in regulating the detection of, and behavioral responses to, conspecifics. The appeal here is that Oxytocin has likely conserved roles across all vertebrates, including humans, and that the larval zebrafish allows us to study some of the general principles across the brain but nonetheless at cellular resolution. This allows us to propose mechanistic models of emotional states.

NeuroscienceEthology+2 moreVideo
End of results.

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