Signals from the ventrolateral thalamus to the motor cortex during locomotion

Author:

Marlinski Vladimir1,Nilaweera Wijitha U.12,Zelenin Pavel V.3,Sirota Mikhail G.1,Beloozerova Irina N.1

Affiliation:

1. Barrow Neurological Institute, St. Joseph's Hospital and Medical Center and

2. Arizona State University-Barrow Neurological Institute Interdisciplinary Graduate Program in Neuroscience, Phoenix, Arizona; and

3. Department of Neuroscience, Karolinska Institute, Stockholm, Sweden

Abstract

The activity of the motor cortex during locomotion is profoundly modulated in the rhythm of strides. The source of modulation is not known. In this study we examined the activity of one of the major sources of afferent input to the motor cortex, the ventrolateral thalamus (VL). Experiments were conducted in chronically implanted cats with an extracellular single-neuron recording technique. VL neurons projecting to the motor cortex were identified by antidromic responses. During locomotion, the activity of 92% of neurons was modulated in the rhythm of strides; 67% of cells discharged one activity burst per stride, a pattern typical for the motor cortex. The characteristics of these discharges in most VL neurons appeared to be well suited to contribute to the locomotion-related activity of the motor cortex. In addition to simple locomotion, we examined VL activity during walking on a horizontal ladder, a task that requires vision for correct foot placement. Upon transition from simple to ladder locomotion, the activity of most VL neurons exhibited the same changes that have been reported for the motor cortex, i.e., an increase in the strength of stride-related modulation and shortening of the discharge duration. Five modes of integration of simple and ladder locomotion-related information were recognized in the VL. We suggest that, in addition to contributing to the locomotion-related activity in the motor cortex during simple locomotion, the VL integrates and transmits signals needed for correct foot placement on a complex terrain to the motor cortex.

Publisher

American Physiological Society

Subject

Physiology,General Neuroscience

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