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SeminarRecording availableComputational Neuroscience

Properties of memory networks with excitatory-inhibitory assemblies

Claire Meissner-Bernard

Friedrich Miescher Institute for biomedical research,Basel

Hosted by van Vreeswijk Theoretical Neuroscience Seminar

Recording

Abstract

Classical views suggest that memories are stored in assemblies of excitatory neurons that become strongly interconnected during learning. However, recent experimental and theoretical results have challenged this view, leading to the hypothesis that memories are encoded in assemblies containing both excitatory (E) and inhibitory (I) neurons. Understanding the effects of these E-I assemblies on memory function is therefore essential. Using a biologically constrained model of an olfactory memory network, I will first describe how introducing E-I assemblies reorganizes odor-evoked activity patterns in neural state space. Indeed, the “geometry” of neural activity provides valuable insights about the computational properties of neural networks. I will then describe the behavior of networks with E-I assemblies upon partial manipulation of inhibitory neurons. Finally, I will discuss recent experimental data supporting predictions of the model.

Topics

memory networksexcitatory-inhibitory assembliesexcitatory neuronsinhibitory neuronsolfactory memoryodor-evoked activityneural state spaceneural activity geometry
More topics
inhibitory neuron manipulationcomputational neuroscience

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