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Neural geometry from mixed sensorimotor selectivity for predictive sensorimotor control.

Yiheng Zhang | Yun Chen | Tianwei Wang | He Cui
eLife | 2025

Although recent studies suggest that activity in the motor cortex, in addition to generating motor outputs, receives substantial information regarding sensory inputs, it is still unclear how sensory context adjusts the motor commands. Here, we recorded population neural activity in the motor cortex via microelectrode arrays while monkeys performed flexible manual interceptions of moving targets. During this task, which requires predictive sensorimotor control, the activity of most neurons in the motor cortex encoding upcoming movements was influenced by ongoing target motion. Single-trial neural states at the movement onset formed staggered orbital geometries, suggesting that target motion modulates peri-movement activity in an orthogonal manner. This neural geometry was further evaluated with a representational model and recurrent neural networks (RNNs) with task-specific input-output mapping. We propose that the sensorimotor dynamics can be derived from neuronal mixed sensorimotor selectivity and dynamic interaction between modulations.

Pubmed ID: 40310450

Research resources used in this publication

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Associated grants

  • Agency: National Key Research and Development Program of China,
    Id: 2020YFB1313400
  • Agency: National Key Research and Development Program of China,
    Id: 2017YFA0701102
  • Agency: National Natural Science Foundation of China,
    Id: 31871047
  • Agency: National Natural Science Foundation of China,
    Id: 31671075
  • Agency: Chinese Academy of Sciences,
    Id: Strategic Priority Research Program of Chinese Academy of Sciences XDB32040103

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MATLAB (tool)

RRID:SCR_001622

Multi paradigm numerical computing environment and fourth generation programming language developed by MathWorks. Allows matrix manipulations, plotting of functions and data, implementation of algorithms, creation of user interfaces, and interfacing with programs written in other languages, including C, C++, Java, Fortran and Python. Used to explore and visualize ideas and collaborate across disciplines including signal and image processing, communications, control systems, and computational finance.

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SciPy (tool)

RRID:SCR_008058

A Python-based environment of open-source software for mathematics, science, and engineering. The core packages of SciPy include: NumPy, a base N-dimensional array package; SciPy Library, a fundamental library for scientific computing; and IPython, an enhanced interactive console.

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