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Deficient influence of peripheral stimuli on precentral neurones in monkeys with dorsal column lesions

Insights

The dorsal column pathway, specifically the cuneate fasciculi, is crucial for fine touch discrimination in the forelimb. However, movement control remains largely intact even after its complete section.

Area of Science:

  • Neuroscience
  • Motor Control
  • Somatosensation

Background:

  • The dorsal column-medial lemniscus pathway transmits crucial sensory information from the body to the brain.
  • The cuneate fasciculi, a component of this pathway, is known to carry information from the forelimbs.
  • Understanding the role of the cuneate fasciculi in motor control and sensory processing is essential.

Purpose of the Study:

  • To investigate the necessity of the cuneate fasciculi for skilled forelimb movement performance in monkeys.
  • To determine the impact of cuneate fasciculi lesions on tactile discrimination abilities.
  • To examine the influence of peripheral afferent input on precentral neuron activity after dorsal column section.

Main Methods:

  • Monkeys (Macaca fascicularis) were trained on a lever-pulling task and passive manipulation.
  • Bilateral section of the cuneate fasciculi at different spinal levels (C1-C2, C5) was performed.
  • Electrophysiological recordings of precentral and postcentral neurons were conducted.
  • Tactile discrimination tasks were assessed with and without visual input.

Main Results:

  • Monkeys with complete cuneate fasciculi section performed movement tasks normally.
  • Tactile discrimination was impaired when vision was occluded and only a small cutaneous area was used.
  • Complete cuneate fasciculi lesions drastically reduced the influence of peripheral forelimb stimulation on precentral neurons.
  • A proportion of postcentral neurons remained responsive to peripheral stimulation even after complete cuneate fasciculi section.

Conclusions:

  • The dorsal columns, particularly the cuneate fasciculi, are the primary pathway for forelimb tactile afferent input to influence precentral neurons.
  • Skilled forelimb movements are largely independent of the cuneate fasciculi pathway.
  • The 'sensory' cortex continues to receive afferent projections from the forelimb even after complete interruption of the cuneate fibers.

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