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首页> 外文期刊>Developmental Medicine and Child Neurology >Development of the corticospinal system and hand motor function: central conduction times and motor performance tests.
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Development of the corticospinal system and hand motor function: central conduction times and motor performance tests.

机译:皮质脊髓系统和手部运动功能的发展:中心传导时间和运动性能测试。

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Maturation of the corticospinal (CS) tract and hand motor function provide paradigms for central nervous system development. In this study, involving 112 participants (aged from 0.2 to 30 years), we evaluated central motor conduction times (CMCT) obtained with transcranial magnetic stimulation (TMS) during preinnervation conditions of facilitation and relaxation. Auditory reaction time, velocity of a ballistic movement of the arm, finger tapping, diadochokinesis, and fine motor visuomanual tracking were also examined. The maturation profiles for every parameter were calculated. CMCTs for the different preinnervation conditions reached adult values at different times and this could be explained by maturation of excitability at the cortical and spinal level. A stable phase for CMCTs and reaction time was reached during childhood. Parameters which measured motor speed and skill indicated that the development of these continued into adulthood. The maturation of the fast CS tract seems to be completed before the acquisition of the related motor performance has been accomplished. In conclusion, we could demonstrate that data from several neurophysiological methods can be combined and used to study the maturation of the function of the nervous system. This approach could allow appraisal of pathological conditions that show parallels with omissions or lack of developmental progress.
机译:皮质脊髓(CS)道的成熟和手运动功能为中枢神经系统发育提供了范例。在这项研究中,涉及112位参与者(年龄从0.2到30岁),我们评估了在促进和放松神经前条件下经颅磁刺激(TMS)获得的中心运动传导时间(CMCT)。还检查了听觉反应时间,手臂弹道运动的速度,敲击手指,穿刺通气和精细运动的视觉手法追踪。计算每个参数的成熟曲线。不同神经支配条件下的CMCT在不同时间达到成人值,这可以通过皮层和脊柱水平的兴奋性成熟来解释。儿童期达到了CMCT和反应时间的稳定阶段。衡量运动速度和技能的参数表明,这些运动一直持续到成年。快速CS的成熟似乎在完成相关电机性能的获取之前就已经完成。总之,我们可以证明来自几种神经生理学方法的数据可以组合起来,并用于研究神经系统功能的成熟度。这种方法可以评估与遗漏或缺乏发育进展相似的病理状况。

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