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Evidence for training-induced crossmodal reorganization of cortical functions in trumpet players.

机译:训练引起的小号皮质功能交叉模式重组的证据。

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The aim of this study was to compare multimodal information processing in the somatosensory and auditory cortices and related multimodal areas in musicians (trumpet players) and non-musicians. Magnetoencephalographic activity (MEG) was recorded in response to five stimulus conditions from 10 professional trumpet players and nine musically untrained control subjects. Somatosensory and auditory stimuli were presented alone or in combination. Our data suggest that musicians, in general, process multisensory stimuli differently to the control group. When stimulating the lip in professional trumpet players, a multimodal interaction (expressed as difference between the multimodal response and the sum of unimodal responses) in the corresponding somatosensory cortex showed a positive peak at 33 ms, which was not found in the control group. Conversely, the control group shows a significant interaction of opposite polarity around 60-80 ms. We suggest that training-induced reorganization in musicians leads to a qualitatively different way to process multisensory information. It favors an early stage of cortical processing, which is modified by the connections between multimodal and auditory neurons from thalamus to primary somatosensory area.
机译:本研究的目的是比较音乐家(小号手)和非音乐家在体感和听觉皮层以及相关多峰区域中的多峰信息处理。记录了对10位专业小号演奏者和9位未经音乐训练的对照对象的五种刺激条件的反应的磁脑电图活动(MEG)。体感和听觉刺激可以单独或组合使用。我们的数据表明,一般而言,音乐家对多感觉刺激的处理与对照组不同。当刺激专业小号演奏者的嘴唇时,相应的体感皮质中的多峰相互作用(表示为多峰反应与单峰反应之和之间的差异)在33 ms处显示正峰,而在对照组中未发现。相反,对照组在60-80毫秒左右显示出相反极性的显着相互作用。我们建议,在音乐家中由培训引起的重组会导致在质量上不同的方式来处理多感官信息。它有利于皮层处理的早期阶段,该阶段可以通过从丘脑到主要体感区的多峰和听觉神经元之间的连接来进行修改。

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