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Interindividual differences in gray and white matter properties are associated with early complex motor skill acquisition

机译:灰色和白质物质的细分差异与早期复杂的机动技能相关有关

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Abstract Brain circuits mediate but also constrain experience‐induced plasticity and corresponding behavioral changes. Here we tested whether interindividual behavioral differences in learning a challenging new motor skill correlate with variations in brain anatomy. Young, healthy participants were scanned using structural magnetic resonance imaging (T1‐weighted MPRAGE, n =?75 and/or diffusion‐weighted MRI, n =?59) and practiced a complex whole‐body balancing task on a seesaw‐like platform. Using conjunction tests based on the nonparametric combination (NPC) methodology, we found that gray matter volume (GMV) in the right orbitrofrontal cortex was positively related to the subjects' initial level of proficiency and their ability to improve performance during practice. Similarly, we obtained a strong trend toward a positive correlation between baseline fractional anisotropy (FA) in commissural prefrontal fiber pathways and later motor learning. FA results were influenced more strongly by radial than axial diffusivity. However, we did not find unique anatomical correlates of initial performance and learning to rate. Our findings reveal structural predispositions for successful motor skill performance and acquisition in frontal brain structures and underlying frontal white matter tracts. Together with previous results, these findings support the view that structural constraints imposed by the brain determine subsequent behavioral success and underline the importance of structural brain network constitution before learning starts.
机译:抽象脑电路调解,但也限制经验诱导的可塑性和相应的行为变化。在这里,我们测试了学习的挑战性的新运动技能是否与脑解剖学的变化相关。使用结构磁共振成像(T1加权Mprage,N = 75和/或扩散加权MRI,n =Δ59)扫描年轻,健康的参与者,并在跷跷板平台上实施复杂的全身平衡任务。使用基于非参数组合(NPC)方法的结合测试,我们发现右侧赤硝裂式皮质中的灰质体积(GMV)与受试者的初始熟练程度以及改善实践中性能的能力正相关。同样,我们获得了朝着外阴前弗雷特纤维途径和后期电机学习中基线分数各向异性(FA)之间的正相关趋势。通过径向径向比轴向扩散性更强烈地影响FA结果。但是,我们没有发现初始表现和学习率的独特解剖相关性。我们的调查结果揭示了额外脑结构的成功运动技能性能和采集的结构性易感性和底层白质。这些调查结果与以前的结果一起支持大脑施加的结构约束确定后续行为成功,并在学习开始之前强调结构脑网络宪法的重要性。

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