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基于皮质分区的腹侧运动前区连接分析。

A Cortical Parcellation Based Analysis of Ventral Premotor Area Connectivity.

机构信息

Department of Neurosurgery, University of Oklahoma Health Sciences Center, Oklahoma City, Oklahoma, USA.

Robert Wood Johnson Medical School, Rutgers University, New Brunswick, New Jersey, USA.

出版信息

Neurol Res. 2021 Jul;43(7):595-607. doi: 10.1080/01616412.2021.1902702. Epub 2021 Mar 21.

Abstract

. The ventral premotor area (VPM) plays a crucial role in executing various aspects of motor control. These include hand reaching, joint coordination, and direction of movement in space. While many studies discuss the VPM and its relationship to the rest of the motor network, there is minimal literature examining the connectivity of the VPM outside of the motor network. Using region-based fMRI studies, we built a neuroanatomical model to account for these extra-motor connections. Thirty region-based fMRI studies were used to generate an activation likelihood estimation (ALE) using BrainMap software. Cortical parcellations overlapping the ALE were used to construct a preliminary model of the VPM connections outside the motor network. Diffusion spectrum imaging (DSI)-based fiber tractography was performed to determine the connectivity between cortical parcellations in both hemispheres, and a laterality index (LI) was calculated with resultant tract volumes. The resulting connections were described using the cortical parcellation scheme developed by the Human Connectome Project (HCP). Four cortical regions were found to comprise the VPM. These four regions included 6v, 4, 3b, and 3a. Across mapped brains, these areas showed consistent interconnections between each other. Additionally, ipsilateral connections to the primary motor cortex, supplementary motor area, and dorsal premotor cortex were demonstrated. Inter-hemispheric asymmetries were identified, especially with areas 1, 55b, and MI connecting to the ipsilateral VPM regions. We describe a preliminary cortical model for the underlying connectivity of the ventral premotor area. Future studies should further characterize the neuroanatomic underpinnings of this network for neurosurgical applications.

摘要

腹侧前运动区(VPM)在执行运动控制的各个方面中起着至关重要的作用。这些方面包括手部伸展、关节协调和在空间中的运动方向。虽然许多研究讨论了 VPM 及其与运动网络其余部分的关系,但很少有文献研究 VPM 与运动网络之外的连接。使用基于区域的 fMRI 研究,我们构建了一个神经解剖模型来解释这些额外的运动连接。使用 BrainMap 软件,我们使用 30 个基于区域的 fMRI 研究来生成激活可能性估计(ALE)。重叠 ALE 的皮质分割用于构建运动网络外 VPM 连接的初步模型。进行基于扩散光谱成像(DSI)的纤维束追踪,以确定两个半球皮质分割之间的连接,并计算来自于结果束的体积的侧性指数(LI)。使用由人类连接组计划(HCP)开发的皮质分割方案来描述所得连接。发现四个皮质区域构成了 VPM。这四个区域包括 6v、4、3b 和 3a。在映射的大脑中,这些区域显示出彼此之间的一致相互连接。此外,还显示了对初级运动皮层、补充运动区和背侧前运动皮层的同侧连接。识别出了半球间的不对称性,特别是区域 1、55b 和 MI 与同侧 VPM 区域相连。我们描述了 VPM 下连接的初步皮质模型。未来的研究应该进一步描述这个网络的神经解剖基础,以便在神经外科应用中使用。

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