4.4 Article

Planning face, hand, and leg movements: anatomical constraints on preparatory inhibition

Journal

JOURNAL OF NEUROPHYSIOLOGY
Volume 121, Issue 5, Pages 1609-1620

Publisher

AMER PHYSIOLOGICAL SOC
DOI: 10.1152/jn.00711.2018

Keywords

motor cortex; movement; preparatory inhibition; somatotopy; TMS

Funding

  1. Belgian National Funds for Scientific Research Grant [MIS F.4512.14]
  2. National Institute of Neurological Disorders and Stroke [NS092079, NS097480]
  3. France-Berkeley fund
  4. Fondation Medicale Reine Elisabeth

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Motor-evoked potentials (MEPs), elicited by transcranial magnetic stimulation (TMS) over the motor cortex, are reduced during the preparatory period in delayed response tasks. In this study we examined how MEP suppression varies as a function of the anatomical organization of the motor cortex. MEPs were recorded from a left index muscle while participants prepared a hand or leg movement in experiment 1 or prepared an eye or mouth movement in experiment 2. In this manner, we assessed if the level of MEP suppression in a hand muscle varied as a function of the anatomical distance between the agonist for the forthcoming movement and the muscle targeted by TMS. MEP suppression was attenuated when the cued effector was anatomically distant from the hand (e.g., leg or facial movement compared with finger movement). A similar effect was observed in experiment 3 in which MEPs were recorded from a muscle in the leg and the forthcoming movement involved the upper limb or face. These results demonstrate an important constraint on preparatory inhibition: it is sufficiently broad to be manifest in a muscle that is not involved in the task, but it is not global, showing a marked attenuation when the agonist muscle belongs to a different segment of the body. NEW & NOTEWORTHY Using transcranial magnetic stimulation, we examined changes in corticospinal excitability as people prepared to move. Consistent with previous work, we observed a reduction in excitability during the preparatory period, an effect observed in both task-relevant and task-irrelevant muscles. However, this preparatory inhibition is anatomically constrained, attenuated in muscles belonging to a different body segment than the agonist of the forthcoming movement.

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