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The relationship between TMS measures of functional properties and DTI measures of microstructure of the corticospinal tract

机译:TMS功能特性测量值与DTI皮质脊髓束微结构测量值之间的关系

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Background: Recently, a link between resting motor threshold (RMT) and local tissue microstructure, as indexed by fractional anisotropy (FA), was demonstrated in large parts of white matter. However, regions showing such correlations were generally found outside of the corticospinal tract (CST). Therefore, the question arises whether other electrophysiologic measurements could be more locally related to microstructural properties of the CST. In this study, we explored the relationship between such measurements and regional FA in a group of healthy volunteers. Objective/Hypothesis: We hypothesized that RMT might be more related to an overall susceptibility of white matter to TMS, whereas other electrophysiologic markers might be more specifically related to properties of the CST only. Methods: Thirty-seven subjects were included. We studied RMT, active motor threshold (AMT), intensity to evoke a motor-evoked potential (MEP) of 1 mV (S1mV), MEP input-output curve (IO-curve), and central motor conduction time (CMCT) using transcranial magnetic stimulation, and FA of the corticospinal tract using diffusion tensor magnetic resonance imaging. We performed voxel-wise and TBSS correlation analysis between these electrophysiologic measurements and FA. In addition, we tested for significant correlation between these parameters and mean diffusivity (MD). Results: On voxel-wise analysis, we did not detect significant correlations between any electrophysiologic parameter (RMT, AMT, S1mV, IO curve slope, CMCT) and FA. With TBSS, we detected correlations between FA and bilateral AMT, as well as left-hemispheric S1mV, but these correlations were found in locations unlikely to contribute to motor pathways. Conclusions: Although a relationship between structure and function has been shown in many other regions of the brain, it seems to be much more challenging to demonstrate such a relationship in the CST of healthy subjects.
机译:背景:最近,在大部分白质中证实了静息运动阈值(RMT)与局部组织微观结构之间的联系,该联系以分数各向异性(FA)表示。但是,通常在皮质脊髓束(CST)之外发现显示这种相关性的区域。因此,出现了一个问题,即其他电生理测量是否可能与CST的微结构特性在局部上更相关。在这项研究中,我们探索了一组健康志愿者中此类测量值与区域FA之间的关系。目的/假设:我们假设RMT可能与白质对TMS的总体敏感性更相关,而其他电生理指标可能仅与CST的特性更具体相关。方法:纳入37名受试者。我们研究了RMT,活动电机阈值(AMT),诱发1 mV(S1mV)的电机诱发电位(MEP)的强度,MEP输入-输出曲线(IO曲线)和使用经颅颅的中央电机传导时间(CMCT)磁张刺激和使用扩散张量磁共振成像的皮质脊髓束FA。我们在这些电生理测量值和FA之间进行了体素和TBSS相关分析。此外,我们测试了这些参数与平均扩散率(MD)之间的显着相关性。结果:在体素分析中,我们未发现任何电生理参数(RMT,AMT,S1mV,IO曲线斜率,CMCT)与FA之间存在显着相关性。使用TBSS,我们检测到FA与双侧AMT以及左半球S1mV之间的相关性,但是这些相关性被发现在不太可能有助于运动路径的位置。结论:尽管在大脑的许多其他区域已经显示出结构与功能之间的关系,但是要在健康受试者的CST中证明这种关系似乎更具挑战性。

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