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Topic: Short term plasticity

Seminar
4 seminars
Seminar · Computational Neuroscience

Neural circuits of visuospatial working memory

Albert Compte · IDIPAPS, Barcelona

Wed, May 11, 2022 · 05:00 UTC

One elementary brain function that underlies many of our cognitive behaviors is the ability to maintain parametric information briefly in mind, in the time scale of seconds, to span delays between sensory information and actions. This component of working memory is fragile and quickly degrades with delay length. Under the assumption that behavioral delay-dependencies mark core functions of the working memory system, our goal is to find a neural circuit model that represents their neural mechanisms and apply it to research on working memory deficits in neuropsychiatric disorders. We have constr

Seminar · Computational Neuroscience

Optimising spiking interneuron circuits for compartment-specific feedback

Henning Sprekeler · Technische Universität Berlin

Tue, Nov 2, 2021 · 16:05 UTC

Cortical circuits process information by rich recurrent interactions between excitatory neurons and inhibitory interneurons. One of the prime functions of interneurons is to stabilize the circuit by feedback inhibition, but the level of specificity on which inhibitory feedback operates is not fully resolved. We hypothesized that inhibitory circuits could enable separate feedback control loops for different synaptic input streams, by means of specific feedback inhibition to different neuronal compartments. To investigate this hypothesis, we adopted an optimization approach. Leveraging recent ad

Seminar · Computational Neuroscience

Acetylcholine modulation of short-term plasticity is critical to reliable long-term plasticity in hippocampal synapses

Rohan Sharma · Suhita lab, Indian Institute of Science Education and Research Pune

Wed, Jul 28, 2021 · 17:00 UTC

CA3-CA1 synapses in the hippocampus are the initial locus of episodic memory. The action of acetylcholine alters cellular excitability, modifies neuronal networks, and triggers secondary signaling that directly affects long-term plasticity (LTP) (the cellular underpinning of memory). It is therefore considered a critical regulator of learning and memory in the brain. Its action via M4 metabotropic receptors in the presynaptic terminal of the CA3 neurons and M1 metabotropic receptors in the postsynaptic spines of CA1 neurons produce rich dynamics across multiple timescales. We developed a model

Seminar · Brain Imaging

Neural control of motor actions: from whole-brain landscape to millisecond dynamics

Takashi Kawashima · Weizmann Institute

Thu, Apr 8, 2021 · 15:00 UTC

Animals control motor actions at multiple timescales. We use larval zebrafish and advanced optical microscopy to understand the underlying neural mechanisms. First, we examined the mechanisms of short-term motor learning by using whole-brain neural activity imaging. We found that the 5-HT system integrates the sensory outcome of actions and determines future motor patterns. Second, we established a method for recording spiking activity and membrane potential from a population of neurons during behavior. We identified putative motor command signals and internal copy signals that encode millisec

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