Related Experiment Video
Updated: Feb 8, 2026

Recordings of Neural Circuit Activation in Freely Behaving Animals
Published on: July 22, 2009
Inferring circuit mechanisms from sparse neural recording and global perturbation in grid cells
John Widloski1, Michael P Marder2, Ila R Fiete2,3
1Department of Psychology, The University of California, Berkeley, United States.
Abstract:
A goal of systems neuroscience is to discover the circuit mechanisms underlying brain function. Despite experimental advances that enable circuit-wide neural recording, the problem remains open in part because solving the 'inverse problem' of inferring circuity and mechanism by merely observing activity is hard. In the grid cell system, we show through modeling that a technique based on global circuit perturbation and examination of a novel theoretical object called the distribution of relative phase shifts (DRPS) could reveal the mechanisms of a cortical circuit at unprecedented detail using extremely sparse neural recordings. We establish feasibility, showing that the method can discriminate between recurrent versus feedforward mechanisms and amongst various recurrent mechanisms using recordings from a handful of cells. The proposed strategy demonstrates that sparse recording coupled with simple perturbation can reveal more about circuit mechanism than can full knowledge of network activity or the synaptic connectivity matrix.
Related Concept Videos
Neural Circuits
Neuronal pools are collections of nerve cells with similar functions and interact through chemical and electrical signals. These pools include both interneurons (the central neural circuit nodes that...
Global Climate Change
The Fossil Record
Theory of Attribution I: Correspondent Inference Theory
Second-Order Circuits
Input signals typically originate from voltage or current sources, with the output often representing voltage across the capacitor and/or current through the inductor. For example, in...
Introduction to Global Positioning System

