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Postural support requirements preferentially modulate late components of the gastrocnemius response to transcranial magnetic stimulation

Cassandra Russell; Nathan Difford; Alexander Stamenkovic; Paul Stapley; Darryl McAndrew; Caitlin Arpel; Colum MacKinnon; Jonathan Shemmell
Experimental Brain Research · Vol. 240, Issue 10 · pp. 2647-2657 · 2022

Abstract

Mounting evidence suggests that motor evoked potentials (MEPs) recorded in upper limb muscles with postural support roles following transcranial magnetic stimulation receive contributions from both corticospinal and non-corticospinal descending pathways. We tested the hypothesis that neural structures responsible for regulating upright balance are involved in transmitting late portions of TMS-induced MEPs in a lower limb muscle. MEPs were recorded in the medial gastrocnemius muscles of each leg, while participants supported their upright posture in five postural conditions that required different levels of support from the target muscles. We observed that early and late portions of the MEP were modulated independently, with early MEP amplitude being reduced when high levels of postural support were required from a target muscle. Independent modulation of early and late MEPs by altered postural demand suggests largely separable transmission of each part of the MEP. The early component of the MEP is likely generated by fast-conducting corticospinal pathways, whereas the later component may be primarily transmitted along a polysynaptic cortico-reticulospinal pathway.

Bibliographic Information

JournalExperimental Brain Research
PublisherSpringer
Publication Date2022-10-01
Publication Year2022
Volume240
Issue10
Pages2647-2657
Document TypeJournal Article
Print ISSN0014-4819
eISSN1432-1106
DOI10.1007/s00221-022-06440-5

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NARA Access Coverage1966-01-01~Current
Journal Homepagehttps://www.springer.com/journal/221
Publisher PageOpen Publisher Page
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