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皮质脊髓兴奋性和传导性与皮质脊髓束的解剖结构有关。

Corticospinal excitability and conductivity are related to the anatomy of the corticospinal tract.

作者信息

Betti Sonia, Fedele Marta, Castiello Umberto, Sartori Luisa, Budisavljević Sanja

机构信息

Department of General Psychology, University of Padova, Padova, Italy.

Faculty of Psychology and Educational Sciences, KU Leuven Kulak, Kortrijk, Belgium.

出版信息

Brain Struct Funct. 2022 Apr;227(3):1155-1164. doi: 10.1007/s00429-021-02410-9. Epub 2021 Oct 25.

Abstract

Probing the brain structure-function relationship is at the heart of modern neuroscientific explorations, enabled by recent advances in brain mapping techniques. This study aimed to explore the anatomical blueprint of corticospinal excitability and shed light on the structure-function relationship within the human motor system. Using diffusion magnetic resonance imaging tractography, based on the spherical deconvolution approach, and transcranial magnetic stimulation (TMS), we show that anatomical inter-individual variability of the corticospinal tract (CST) modulates the corticospinal excitability and conductivity. Our findings show for the first time the relationship between increased corticospinal excitability and conductivity in individuals with a bigger CST (i.e., number of streamlines), as well as increased corticospinal microstructural organization (i.e., fractional anisotropy). These findings can have important implications for the understanding of the neuroanatomical basis of TMS as well as the study of the human motor system in both health and disease.

摘要

探究脑结构与功能的关系是现代神经科学探索的核心内容,这得益于脑图谱技术的最新进展。本研究旨在探索皮质脊髓兴奋性的解剖蓝图,并揭示人类运动系统内的结构与功能关系。基于球面反卷积方法,我们使用扩散磁共振成像纤维束成像和经颅磁刺激(TMS),结果表明皮质脊髓束(CST)的个体间解剖变异性会调节皮质脊髓兴奋性和传导性。我们的研究结果首次表明,CST较大(即纤维束数量)的个体,其皮质脊髓兴奋性和传导性增加,同时皮质脊髓微观结构组织(即分数各向异性)也增加。这些发现对于理解TMS的神经解剖学基础以及健康和疾病状态下人类运动系统的研究具有重要意义。

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