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Basal ganglia motor control. III. Pallidal ablation: normal reaction time, muscle cocontraction, and slow movement

J W Mink1, W T Thach

  • 1Department of Anatomy, Washington University School of Medicine, St. Louis, Missouri 63110.

Insights

Inactivating the globus pallidus pars interna (GPi) in monkeys caused slow, coactivated wrist movements, but normal reaction times, suggesting GPi

Area of Science:

  • Neuroscience
  • Motor Control
  • Primate Studies

Background:

  • The globus pallidus pars interna (GPi) plays a crucial role in motor control.
  • Understanding GPi function is essential for deciphering movement disorders.

Purpose of the Study:

  • To investigate the role of GPi neurons in wrist movement control.
  • To differentiate the effects of temporary versus permanent GPi inactivation.

Main Methods:

  • Microinjections of muscimol (temporary) and kainic acid (permanent) into the GPi of rhesus monkeys.
  • Observation of motor behaviors and reaction times before and after inactivation.
  • Comparison with inactivation of the cerebellar dentate nucleus.

Main Results:

  • GPi inactivation led to tonic and phasic coactivation of wrist flexors and extensors, a flexor bias, and prolonged movement time.
  • Despite slowed movements, reaction time for movement onset remained normal.
  • Permanent GPi inactivation replicated temporary effects, while cerebellar inactivation caused prolonged reaction time and trajectory variability.

Conclusions:

  • The GPi's tonic inhibition influences agonist-antagonist muscle cocontraction and movement speed.
  • GPi inactivation interferes with voluntary movement commands but not initiation.
  • The anterior cerebral cortex and lateral cerebellum are implicated in voluntary movement initiation.

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