Skip to main navigation Skip to search Skip to main content

Disentangling acute motor deficits and adaptive responses evoked by the loss of cerebellar output

  • Nirvik Sinha
  • , Sharon Israely
  • , Ora Ben Harosh
  • , Ran Harel
  • , Julius P. A. Dewald
  • , Yifat Prut

Research output: Contribution to journalArticlepeer-review

Abstract

Patients with cerebellar damage experience various motor impairments, but the specific sequence of primary and compensatory processes that contribute to these deficits remains unclear. To clarify this, we reversibly blocked cerebellar outflow in monkeys engaged in planar reaching tasks. This intervention led to a spatially selective reduction in hand velocity, primarily due to decreased muscle torque, especially in movements requiring high inter-joint torque coupling. When examining repeated reaches to the same target, we found that the reduced velocity resulted from both an immediate deficit and a gradually developing compensatory slowing to reduce passive inter-joint interactions. However, the slowed hand velocity did not account for the fragmented and variable movement trajectories observed during the cerebellar block. Our findings indicate that cerebellar impairment results in motor deficits due to both inadequate muscle torque and an altered motor control strategy for managing impaired limb dynamics. Additionally, impaired motor control elevates noise, which cannot be entirely mitigated through compensatory strategies.
Original languageEnglish
Article numberRP105152
Number of pages21
JournaleLife
Volume14
DOIs
StatePublished - 25 Jun 2025

Keywords

  • Cerebellum
  • Interaction torques
  • Macaque fascicularis
  • Motor noise
  • Muscle torques
  • Weakness

Fingerprint

Dive into the research topics of 'Disentangling acute motor deficits and adaptive responses evoked by the loss of cerebellar output'. Together they form a unique fingerprint.

Cite this