Platform

  • Search
  • Seminars
  • Conferences
  • Jobs

Resources

  • Submit Content
  • About Us

© 2025 World Wide

Open knowledge for all • Started with World Wide Neuro • A 501(c)(3) Non-Profit Organization

Analytics consent required

World Wide relies on analytics signals to operate securely and keep research services available. Accept to continue, or leave the site.

Review the Privacy Policy for details about analytics processing.

World Wide
SeminarsConferencesWorkshopsCoursesJobsMapsFeedLibrary
← Back

Population Coding Cerebellum Machine

Back to SeminarsBack
Seminar✓ Recording AvailableNeuroscience

Population coding in the cerebellum: a machine learning perspective

Reza Shadmehr

Prof

Johns Hopkins School of Medicine

Schedule
Wednesday, April 6, 2022

Showing your local timezone

Schedule

Wednesday, April 6, 2022

5:00 PM Europe/Berlin

Watch recording
Host: SNUFA

Seminar location

Seminar location

Not provided

No geocoded details are available for this content yet.

Watch the seminar

Recording provided by the organiser.

Event Information

Format

Recorded Seminar

Recording

Available

Host

SNUFA

Duration

70.00 minutes

Seminar location

Seminar location

Not provided

No geocoded details are available for this content yet.

World Wide map

Abstract

The cerebellum resembles a feedforward, three-layer network of neurons in which the “hidden layer” consists of Purkinje cells (P-cells) and the output layer consists of deep cerebellar nucleus (DCN) neurons. In this analogy, the output of each DCN neuron is a prediction that is compared with the actual observation, resulting in an error signal that originates in the inferior olive. Efficient learning requires that the error signal reach the DCN neurons, as well as the P-cells that project onto them. However, this basic rule of learning is violated in the cerebellum: the olivary projections to the DCN are weak, particularly in adulthood. Instead, an extraordinarily strong signal is sent from the olive to the P-cells, producing complex spikes. Curiously, P-cells are grouped into small populations that converge onto single DCN neurons. Why are the P-cells organized in this way, and what is the membership criterion of each population? Here, I apply elementary mathematics from machine learning and consider the fact that P-cells that form a population exhibit a special property: they can synchronize their complex spikes, which in turn suppress activity of DCN neuron they project to. Thus complex spikes cannot only act as a teaching signal for a P-cell, but through complex spike synchrony, a P-cell population may act as a surrogate teacher for the DCN neuron that produced the erroneous output. It appears that grouping of P-cells into small populations that share a preference for error satisfies a critical requirement of efficient learning: providing error information to the output layer neuron (DCN) that was responsible for the error, as well as the hidden layer neurons (P-cells) that contributed to it. This population coding may account for several remarkable features of behavior during learning, including multiple timescales, protection from erasure, and spontaneous recovery of memory.

Topics

cerebellumcomplex spikesdeep cerebellar nucleuserror signallearningmachine learningpopulation codingpurkinje cellssynchronization

About the Speaker

Reza Shadmehr

Prof

Johns Hopkins School of Medicine

Contact & Resources

Personal Website

www.shadmehrlab.org

@reziliusReza

Follow on Twitter/X

twitter.com/reziliusReza

Related Seminars

Seminar64% match - Relevant

Rethinking Attention: Dynamic Prioritization

neuro

Decades of research on understanding the mechanisms of attentional selection have focused on identifying the units (representations) on which attention operates in order to guide prioritized sensory p

Jan 6, 2025
George Washington University
Seminar64% match - Relevant

The Cognitive Roots of the Problem of Free Will

neuro

Jan 7, 2025
Bielefeld & Amsterdam
Seminar64% match - Relevant

Memory Colloquium Lecture

neuro

Jan 8, 2025
Keio University, Tokyo
World Wide calendar

World Wide highlights

December 2025 • Syncing the latest schedule.

View full calendar
Awaiting featured picks
Month at a glance

Upcoming highlights