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Motor Cortical Plasticity to Training Started in Childhood: The Example of Piano Players

机译:运动皮质可塑性从童年开始就开始训练:以钢琴演奏者为例

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摘要

Converging evidence suggest that motor training is associated with early and late changes of the cortical motor system. Transcranial magnetic stimulation (TMS) offers the possibility to study plastic rearrangements of the motor system in physiological and pathological conditions. We used TMS to characterize long-term changes in upper limb motor cortical representation and interhemispheric inhibition associated with bimanual skill training in pianists who started playing in an early age. Ipsilateral silent period (iSP) and cortical TMS mapping of hand muscles were obtained from 30 strictly right-handed subjects (16 pianists, 14 naïve controls), together with electromyographic recording of mirror movements (MMs) to voluntary hand movements. In controls, motor cortical representation of hand muscles was larger on the dominant (DH) than on the non-dominant hemisphere (NDH). On the contrary, pianists showed symmetric cortical output maps, being their DH less represented than in controls. In naïve subjects, the iSP was smaller on the right vs left abductor pollicis brevis (APB) indicating a weaker inhibition from the NDH to the DH. In pianists, interhemispheric inhibition was more symmetric as their DH was better inhibited than in controls. Electromyographic MMs were observed only in naïve subjects (7/14) and only to voluntary movement of the non-dominant hand. Subjects with MM had a lower iSP area on the right APB compared with all the others. Our findings suggest a more symmetrical motor cortex organization in pianists, both in terms of muscle cortical representation and interhemispheric inhibition. Although we cannot disentangle training-related from preexisting conditions, it is possible that long-term bimanual practice may reshape motor cortical representation and rebalance interhemispheric interactions, which in naïve right-handed subjects would both tend to favour the dominant hemisphere.
机译:越来越多的证据表明运动训练与皮层运动系统的早期和晚期变化有关。经颅磁刺激(TMS)为研究生理和病理条件下运动系统的塑性重排提供了可能性。我们使用TMS来表征早年开始演奏的钢琴家的上肢运动皮层表现和半球抑制与双手技能训练相关的长期变化。从30名严格的右撇子受试者(16名钢琴家,14名幼稚的对照组)获得手部肌肉的同侧静默期(iSP)和皮质TMS映射,以及肌电图记录镜面运动(MM)到自愿手部运动。在对照组中,优势肌(DH)的手部肌肉运动皮层代表大于非优势半球(NDH)。相反,钢琴演奏者显示了对称的皮质输出图,因为他们的DH代表比对照组少。在未接受治疗的受试者中,右侧的iSP相对于左侧的外展短缩短肌(APB)较小,表明从NDH到DH的抑制作用较弱。在钢琴演奏家中,半球之间的抑制更加对称,因为他们的DH比对照组受到更好的抑制。肌电图MM仅在未受治疗的受试者中观察到(7/14),并且仅在非优势手的自愿运动中观察到。与其他所有受试者相比,MM受试者在右侧APB处的iSP区域较小。我们的发现表明,无论是在肌肉皮层的表现还是在半球之间的抑制方面,钢琴演奏家的运动皮层组织都更加对称。尽管我们无法摆脱与训练有关的条件与长期存在的状况的纠缠,但长期的双向练习可能会改变运动皮层的表现并重新平衡半球​​之间的相互作用,这在幼稚的惯用右手受试者中都倾向于偏向优势半球。

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