4.7 Article

Short-interval intracortical inhibition and facilitation targeting upper and lower limb muscles

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SCIENTIFIC REPORTS
卷 11, 期 1, 页码 -

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NATURE PORTFOLIO
DOI: 10.1038/s41598-021-01348-6

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  1. German Ministry of Education and Research (BMBF)
  2. European Research Council (ERC)
  3. German Research Foundation (DFG)
  4. Janssen Pharmaceuticals NV
  5. Takeda Pharmaceutical Company Ltd
  6. Projekt DEAL

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Transcranial magnetic stimulation (TMS) was used to study the excitability of corticospinal neurons in the hand versus leg representation of the human motor cortex. The results showed that regulation of excitability through GABAAergic and glutamatergic interneuronal circuitry is highly similar in both representations, and that both representations are activated in largely identical ways by TMS.
Transcranial magnetic stimulation (TMS) can be used to study excitability of corticospinal neurons in human motor cortex. It is currently not fully elucidated if corticospinal neurons in the hand vs. leg representation show the same or different regulation of their excitability by GABAAergic and glutamatergic interneuronal circuitry. Using a paired-pulse TMS protocol we tested short-interval intracortical inhibition (SICI) and short-interval intracortical facilitation (SICF) in 18 healthy participants. Motor evoked potentials were evoked in one hand (abductor digiti minimi) and one leg muscle (tibialis anterior), with systematic variation of the intensities of the first (S1) and second (S2) pulse between 60 and 140% resting motor threshold (RMT) in 10% steps, at two interstimulus intervals of 1.5 and 2.1 ms. For the hand and leg motor representations and for both interstimulus intervals, SICI occurred if the intensities of S1 < RMT and S2 > RMT, while SICF predominated if S1 = S2 <= RMT, or S1 > RMT and S2 < RMT. Findings confirm and extend previous evidence that the regulation of excitability of corticospinal neurons of the hand versus leg representation in human primary cortex through GABAAergic and glutamatergic interneuronal circuits is highly similar, and that corticospinal neurons of both representations are activated by TMS transsynaptically in largely identical ways.

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