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Updated: Aug 14, 2025

Visualization of Cortical Modules in Flattened Mammalian Cortices
Published on: January 22, 2018
The geometry of cortical representations of touch in rodents
Ramon Nogueira1,2,3, Chris C Rodgers4,5,6,7, Randy M Bruno4,5,6,8
1Center for Theoretical Neuroscience, Columbia University, New York, NY, USA. rn2446@columbia.edu.
Abstract:
Neurons often encode highly heterogeneous non-linear functions of multiple task variables, a signature of a high-dimensional geometry. We studied the representational geometry in the somatosensory cortex of mice trained to report the curvature of objects touched by their whiskers. High-speed videos of the whiskers revealed that the task can be solved by linearly integrating multiple whisker contacts over time. However, the neural activity in somatosensory cortex reflects non-linear integration of spatio-temporal features of the sensory inputs. Although the responses at first appeared disorganized, we identified an interesting structure in the representational geometry: different whisker contacts are disentangled variables represented in approximately, but not fully, orthogonal subspaces of the neural activity space. This geometry allows linear readouts to perform a broad class of tasks of different complexities without compromising the ability to generalize to novel situations.
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