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音乐家大脑皮质内抑制作用减弱及皮质脊髓神经元易化

Reduced intracortical inhibition and facilitation of corticospinal neurons in musicians.

作者信息

Nordstrom Michael A, Butler Sophie L

机构信息

Department of Physiology, University of Adelaide, Adelaide, SA 5005, Australia.

出版信息

Exp Brain Res. 2002 Jun;144(3):336-42. doi: 10.1007/s00221-002-1051-7. Epub 2002 Apr 13.

Abstract

Interhemispheric inhibition between motor cortices is reduced in musicians. In the present study we have assessed intracortical inhibition (ICI) and facilitation (ICF) within ipsilateral motor cortex in 15 musicians and 15 non-musician controls. Transcranial magnetic stimulation (TMS) was used to elicit muscle evoked potentials (MEPs) from left first dorsal interosseous (FDI) muscle at rest, and during voluntary index finger abduction (0.5 N). Paired TMS with subthreshold conditioning was used to test early ICI with interstimulus intervals (ISIs) 1-5 ms, and ICF with ISIs 8-15 ms. Suprathreshold conditioning was used to test late ICI with ISIs 100-200 ms. TMS thresholds were similar in musicians and controls both at rest and with weak voluntary activation of FDI, indicating that postsynaptic excitability of corticospinal neurons was similar in both groups. ICI was less effective in musicians with FDI at rest and active, but only with an ISI of 3 ms. ICF was less effective in musicians under both rest and active conditions, and this was independent of ISI. There were no differences in late ICI between musicians and controls. We conclude that ICI and ICF circuits which are activated by weak TMS have less influence on corticospinal neuron excitability in musicians. Because of the dependence on ISI, the most likely explanation for the reduced ICI in musicians is an alteration of the interaction between the ICI circuit and neural elements responsible for the later I-waves evoked in corticospinal neurons by TMS. Excitability of the neural elements producing early and late ICI is not altered in musicians. Reduced ICF in musicians could be due to reduced excitability of neurons responsible for ICF, or an altered balance of excitatory inputs to corticospinal neurons which favours neurons that are not acted upon by the ICF circuit. The reduced influence of ICI and ICF circuits on corticospinal neuron excitability in musicians is likely to reflect a training-induced adaptation. It is not clear at present whether these differences represent an adaptive change related to their extraordinary control of finger movements, or alternatively a maladaptive change induced by "overuse" of the hands from extensive training.

摘要

音乐家运动皮层之间的半球间抑制作用减弱。在本研究中,我们评估了15名音乐家和15名非音乐家对照者同侧运动皮层内的皮质内抑制(ICI)和易化作用(ICF)。采用经颅磁刺激(TMS)在静息状态以及在自愿进行示指外展(0.5 N)时,引出左侧第一背侧骨间肌(FDI)的肌肉诱发电位(MEP)。使用阈下条件配对TMS来测试早期ICI,刺激间隔(ISI)为1 - 5毫秒,以及测试ICF,ISI为8 - 15毫秒。使用阈上条件来测试晚期ICI,ISI为100 - 200毫秒。在静息状态以及FDI进行微弱自愿激活时,音乐家和对照者的TMS阈值相似,这表明两组中皮质脊髓神经元的突触后兴奋性相似。在静息和激活状态下,音乐家的FDI的ICI效果较差,但仅在ISI为3毫秒时如此。在静息和激活条件下,音乐家的ICF效果均较差,且这与ISI无关。音乐家和对照者在晚期ICI方面没有差异。我们得出结论,由微弱TMS激活的ICI和ICF回路对音乐家皮质脊髓神经元兴奋性的影响较小。由于对ISI的依赖性,音乐家ICI降低的最可能解释是ICI回路与负责TMS在皮质脊髓神经元中诱发的晚期I波的神经元件之间相互作用的改变。在音乐家体内,产生早期和晚期ICI的神经元件的兴奋性并未改变。音乐家ICF降低可能是由于负责ICF的神经元兴奋性降低,或者是皮质脊髓神经元兴奋性输入的平衡改变,有利于不受ICF回路作用的神经元。ICI和ICF回路对音乐家皮质脊髓神经元兴奋性影响的降低可能反映了训练诱导的适应性变化。目前尚不清楚这些差异是代表与他们对手指运动的非凡控制相关的适应性变化,还是由广泛训练导致的手部“过度使用”引起的适应不良变化。

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