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Long-term plasticity may be manifested as reduction or expansion of cortical representations of actively used muscles in motor skill specialists

机译:长期可塑性可能表现为运动技能专家中活跃使用的肌肉的皮层表现的减少或扩展

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Our aim was to study long-term plasticity in the organization of cortical muscle representations due to extensive motor training for different skills. We were especially interested in whether skill-specific demands on independent hand muscle movements and synchronous leg muscle movements are reflected differently in the reorganization of muscle representations. We used navigated transcranial magnetic stimulation to estimate the size of cortical representations of opponens pollicis, abductor digiti minimi, and tibialis anterior muscles in five string instrument players, five figure skaters, and five controls. The extent of the representation area was presented as an amplitude-area curve showing the spatial distribution of motor evoked potentials. The size of representation areas was compared between the dominant and nondominant hemispheres and between the groups. The representation area of the left abductor digiti minimi (critical for reaching right tones) in the right, nondominant hemisphere was smaller in string players and the representation area of the tibialis anterior in the dominant hemisphere (critical for jumps) was larger in figure skaters when compared with controls. Reorganization in the motor cortex may differ depending upon the skill and an individual muscle's role in the skill. A smaller representation area of the independently used hand muscle in masters of fine motor skills may reflect long-term plasticity toward more focused representation, which may be beneficial in accurate and discrete cortical control of the muscle. Larger cortical representations are related to skill demanding coactivation of proximal and distal lower limb muscles.
机译:我们的目的是研究由于各种技能的广泛运动训练而引起的皮层肌肉表征组织的长期可塑性。我们特别感兴趣的是,对独立手部肌肉运动和同步腿部肌肉运动的技能要求是否在肌肉表示的重组中得到了不同体现。我们使用导航经颅磁刺激来估计五名弦乐器演奏者,五名花样滑冰运动员和五个控件中对手骨的骨皮质,小指外展肌和胫骨前肌的皮层表征的大小。表示区域的范围以振幅-面积曲线表示,该曲线显示了电机诱发电位的空间分布。比较了优势半球和非优势半球之间以及各组之间代表性区域的大小。在花样滑冰运动员中,右弦,非优势半球中的左外展指肌的代表区域(对于伸直右音很关键)在弦乐演奏者中较小,而在优势半球中胫骨前肌的代表区域(对于跳跃至关重要)则更大。与控件相比。运动皮层的重组可能取决于技能和单个肌肉在技能中的作用。精通运动技能的人中,独立使用的手部肌肉较小的代表区域可能反映了长期的可塑性朝着更集中的代表方向发展,这可能对准确而离散的肌肉皮层控制有利。较大的皮层表现与要求近端和远端下肢肌肉共同激活的技能有关。

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