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Effects of postural and voluntary muscle contraction on modulation of the soleus H reflex by transcranial magnetic stimulation

机译:姿势和自愿性肌肉收缩对经颅磁刺激对比目鱼H反射的调节作用

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摘要

Modulation of spinal reflexes depends largely on the integrity of the corticospinal tract. A useful method to document the influence of descending tracts on reflexes is to examine the effects of transcranial magnetic stimulation (TMS) on the soleus H reflex elicited by posterior tibial nerve electrical stimuli (PTS). In 12 healthy volunteers, we investigated how postural or voluntary muscle contraction modified such descending modulation. We first characterized the effects of TMS at 95 % of motor threshold for leg responses on the H reflex elicited by a preceding PTS at inter-stimuli intervals (ISIs) between 0 and 120 ms at rest and, then, during voluntary plantar flexion (pf), dorsal flexion (df), and standing still (ss). During pf, there was an increase in the facilitation of the H reflex at ISIs 0-20 ms. During df, there were no effects of TMS on the H reflex. During ss, there was inhibition at ISIs 40-60 ms. Our observations suggest that muscle contraction prevails over the baseline effects of TMS on the soleus H reflex. While contraction of the antagonist (df) suppressed most of the effects, contraction of the agonist had different effects depending on the type of activity (pf or ss). The characterization of the interaction between descending corticospinal volleys and segmental peripheral inputs provides useful information on motor control for physiological research and further understanding of the effects of spinal cord lesions.
机译:脊柱反射的调节在很大程度上取决于皮质脊髓束的完整性。记录下呼吸道对反射的影响的一种有用方法是检查经颅磁刺激(TMS)对胫骨后神经电刺激(PTS)引起的比目鱼H反射的影响。在12名健康志愿者中,我们调查了姿势或自愿性肌肉收缩如何改变这种递减调节。我们首先表征了TMS在腿部运动阈值的95%时对先前PTS在静止间隔0至120 ms之间的刺激间隔(ISI)以及随后的自愿voluntary屈(pf)引起的H反射的影响。 ),背屈(df)和静止不动(ss)。在pf期间,ISI 0-20 ms时H反射的促进作用增加。在df期间,TMS对H反射没有影响。在ss期间,ISI在40-60毫秒处受到抑制。我们的观察结果表明,在比目鱼H反射中,肌肉收缩优于TMS的基线作用。虽然拮抗剂(df)的收缩抑制了大多数作用,但根据活性类型(pf或ss),激动剂的收缩具有不同的作用。下降的皮质脊髓凌空和节段性外周输入之间的相互作用的表征为生理研究和进一步了解脊髓损伤的影响提供了运动控制方面的有用信息。

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