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静息态功能磁共振成像和概率弥散张量成像显示,手运动同形同伦体中最大的功能和结构连接发生在拇指区域。

Resting-State Functional Magnetic Resonance Imaging and Probabilistic Diffusion Tensor Imaging Demonstrate That the Greatest Functional and Structural Connectivity in the Hand Motor Homunculus Occurs in the Area of the Thumb.

机构信息

1 Department of Radiology, Memorial Sloan-Kettering Cancer Center , New York, New York.

2 Department of Medical Physics, Memorial Sloan-Kettering Cancer Center , New York, New York.

出版信息

Brain Connect. 2018 Aug;8(6):371-379. doi: 10.1089/brain.2018.0589.

Abstract

The primary hand motor region is classically believed to be in the "hand knob" area in the precentral gyrus (PCG). However, hand motor task-based activation is often localized outside this area. The purpose of this study is to investigate the structural and functional connectivity driven by different seed locations corresponding to the little, index, and thumb in the PCG using probabilistic diffusion tractography (PDT) and resting-state functional magnetic resonance imaging (rfMRI). Twelve healthy subjects had three regions of interest (ROIs) placed in the left PCG: lateral to the hand knob (thumb area), within the hand knob (index finger area), and medial to the hand knob (little finger area). Connectivity maps were generated using PDT and rfMRI. Individual and group level analyses were performed. Results show that the greatest hand motor connectivity between both hemispheres was obtained using the ROI positioned just lateral to the hand knob in the PCG (the thumb area). The number of connected voxels in the PCG between the two hemispheres was greatest in the lateral-most ROI (the thumb area): 279 compared with 13 for the medial-most ROI and 9 for the central hand knob ROI. Similarly, the highest white matter connectivity between the two hemispheres resulted from the ROI placed in the lateral portion of PCG (p < 0.003). The maximal functional and structural connectivity of the hand motor area between hemispheres occurs in the thumb area, located laterally at the "hand knob." Thus, this location appears maximal for rfMRI and PDT seeding of the motor area.

摘要

初级手运动区经典地被认为位于中央前回(PCG)的“手 knob”区域内。然而,手运动任务激活通常位于该区域之外。本研究的目的是使用概率扩散轨迹(PDT)和静息状态功能磁共振成像(rfMRI),研究对应于 PCG 中小指、食指和拇指的不同种子位置驱动的结构和功能连接。12 名健康受试者在左 PCG 中放置了三个感兴趣区域(ROI):位于手 knob 外侧(拇指区域)、在手 knob 内(食指区域)和在手 knob 内侧(小指区域)。使用 PDT 和 rfMRI 生成连接图。进行了个体和组水平分析。结果表明,使用位于 PCG 中手 knob 外侧的 ROI(拇指区域),可以获得两个半球之间最大的手运动连接。两个半球之间 PCG 中连接的体素数量在最外侧 ROI(拇指区域)最多:279 个,而最内侧 ROI 为 13 个,中央手 knob ROI 为 9 个。同样,来自 ROI 放置在 PCG 外侧部分的半球之间的最高白质连接导致(p < 0.003)。手运动区在半球之间的最大功能和结构连接发生在位于“手 knob”外侧的拇指区域。因此,该位置似乎最适合用于 rfMRI 和 PDT 种子定位运动区。

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