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Related Experiment Video

Updated: Jun 17, 2025

WheelCon: A Wheel Control-Based Gaming Platform for Studying Human Sensorimotor Control
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Context-dependence of deterministic and nondeterministic contributions to closed-loop steering control.

Seth W Egger1, Sander W Keemink2, Mark S Goldman1,2,3

  • 1Center for Neuroscience, University of California, Davis.

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|August 12, 2024
PubMed
Summary

This study reveals how steering behavior in monkeys changes based on context. Using a novel analysis, researchers found that both the control system and the noise in the system adapt to different tasks.

Keywords:
Closed-loopmotor controlnavigationsensorimotor integrationsystems identification

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Area of Science:

  • Neuroscience
  • Motor Control
  • Computational Biology

Background:

  • Sensory systems and motor output normally function in a closed loop, where actions influence sensory feedback.
  • Steering, aligning heading with a goal, exemplifies sensorimotor processing where motor commands correct heading errors.

Purpose of the Study:

  • To disentangle deterministic and nondeterministic processes in closed-loop sensorimotor behavior, specifically steering.
  • To analyze behavioral data from monkeys steering in a virtual environment using a nonparametric, linear kernel-based approach.

Main Methods:

  • Applied a nonparametric, linear kernel-based analysis to monkey steering data in two distinct experimental contexts.
  • Modeled the steering transformation as a second-order linear system and analyzed the parameters of the fitted kernels.
  • Fitted residuals to a noise model to characterize nondeterministic components of the behavior.

Main Results:

  • The fitted kernels showed significant differences across tasks, indicating context-dependent changes in neural and biomechanical parameters like stiffness and viscosity.
  • The form of the noise (nondeterministic component) was highly conserved across contexts and animals.
  • The observed noise pattern closely matched that previously found in human steering tasks.

Conclusions:

  • Steering behavior involves context-dependent deterministic processes, challenging the assumption of constant limb properties.
  • Nondeterministic processes (noise) in steering are remarkably consistent across different tasks, individuals, and even species.
  • This kernel-based analysis effectively characterizes the context-dependent nature of both deterministic and nondeterministic elements in closed-loop sensorimotor tasks.