Adaptive bottleneck to pallium for sequence memory, path integration and mixed selectivity representation

Wednesday, November 10, 2021
17:00 Europe/Berlin
André Longtin

PhD

University of Ottawa

Hosted by BCCN Berlin lectures series70 minutes

Abstract

Spike-driven adaptation involves intracellular mechanisms that are initiated by neural firing and lead to the subsequent reduction of spiking rate followed by a recovery back to baseline. We report on long (>0.5 second) recovery times from adaptation in a thalamic-like structure in weakly electric fish. This adaptation process is shown via modeling and experiment to encode in a spatially invariant manner the time intervals between event encounters, e.g. with landmarks as the animal learns the location of food. These cells also come in two varieties, ones that care only about the time since the last encounter, and others that care about the history of encounters. We discuss how the two populations can share in the task of representing sequences of events, supporting path integration and converting from ego-to-allocentric representations. The heterogeneity of the population parameters enables the representation and Bayesian decoding of time sequences of events which may be put to good use in path integration and hilus neuron function in hippocampus. Finally we discuss how all the cells of this gateway to the pallium exhibit mixed selectivity of social features of their environment. The data and computational modeling further reveal that, in contrast to a long-held belief, these gymnotiform fish are endowed with a corollary discharge, albeit only for social signalling.

Keep track of Computational Neuroscience

Remember this field on this device and see what changed when you return. Your saved items stay in your library.

Subscribe to field calendar

The calendar subscription updates upcoming seminars automatically. Add the feed by URL in your calendar; a one-off import will not update. Attendance conditions remain those of the organiser.

We use essential cookies to run the site. Analytics cookies are optional and help us improve World Wide. Learn more.