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Differential Adaptation of Descending Motor Tracts in Musicians

机译:音乐家中下降运动轨迹的差异适应

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摘要

Between-group comparisons of musicians and nonmusicians have revealed structural brain differences and also functional differences in motor performance. In this study, we aimed to examine the relation between white matter microstructure and high-level motor skills by contrasting 2 groups of musicians with different instrument-specific motor requirements. We used diffusion tensor imaging to compare diffusivity measures of different corticospinal motor tracts of 10 keyboard players, 10 string players, and 10 nonmusicians. Additionally, the maximal tapping rates of their left and right index fingers were determined. When compared with nonmusicians, fractional anisotropy (FA) values of right-hemispheric motor tracts were significantly higher in both musician groups, whereas left-hemispheric motor tracts showed significantly higher FA values only in the keyboard players. Voxel-wise FA analysis found a group effect in white matter underlying the right motor cortex. Diffusivity measures of fibers originating in the primary motor cortex correlated with the maximal tapping rate of the contralateral index finger across all groups. The observed between-group diffusivity differences might represent an adaptation to the specific motor demands of the respective musical instrument. This is supported further by finding correlations between diffusivity measures and maximal tapping rates.
机译:音乐家和非音乐家之间的组间比较显示了大脑的结构差异以及运动表现的功能差异。在这项研究中,我们旨在通过对比两组具有不同乐器特定运动要求的音乐家来研究白质微观结构与高级运动技能之间的关系。我们使用扩散张量成像比较了10个键盘演奏者,10个弦乐器演奏者和10个非音乐演奏者的不同皮质脊髓运动区的扩散率。此外,确定其左和右食指的最大敲击率。与非音乐家相比,两组音乐家中右半球运动分数的分数各向异性(FA)值均显着较高,而仅在键盘演奏者中,左半球运动分数的FA值显着更高。按体素进行的FA分析发现右运动皮层下的白质具有群效应。在所有组中,起源于初级运动皮层的纤维的扩散率与对侧食指的最大敲击率相关。观察到的组间扩散率差异可能表示对相应乐器的特定马达要求的适应。通过找到扩散率测度和最大振实率之间的相关性,可以进一步支持这一点。

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