Department of Biomedical Engineering, Eindhoven University of Technology, Eindhoven, The Netherlands.
PLoS One. 2012;7(6):e39061. doi: 10.1371/journal.pone.0039061. Epub 2012 Jun 29.
Deep brain stimulation (DBS) for Parkinson's disease often alleviates the motor symptoms, but causes cognitive and emotional side effects in a substantial number of cases. Identification of the motor part of the subthalamic nucleus (STN) as part of the presurgical workup could minimize these adverse effects. In this study, we assessed the STN's connectivity to motor, associative, and limbic brain areas, based on structural and functional connectivity analysis of volunteer data. For the structural connectivity, we used streamline counts derived from HARDI fiber tracking. The resulting tracks supported the existence of the so-called "hyperdirect" pathway in humans. Furthermore, we determined the connectivity of each STN voxel with the motor cortical areas. Functional connectivity was calculated based on functional MRI, as the correlation of the signal within a given brain voxel with the signal in the STN. Also, the signal per STN voxel was explained in terms of the correlation with motor or limbic brain seed ROI areas. Both right and left STN ROIs appeared to be structurally and functionally connected to brain areas that are part of the motor, associative, and limbic circuit. Furthermore, this study enabled us to assess the level of segregation of the STN motor part, which is relevant for the planning of STN DBS procedures.
深部脑刺激 (DBS) 常用于治疗帕金森病的运动症状,但在很大一部分病例中会引起认知和情绪方面的副作用。识别丘脑底核 (STN) 的运动部分作为术前评估的一部分,可以最大程度地减少这些不良反应。在这项研究中,我们根据志愿者数据的结构和功能连接分析,评估了 STN 与运动、联合和边缘脑区的连接。对于结构连接,我们使用从 HARDI 纤维跟踪中得出的流线计数。所得轨迹支持了人类存在所谓的“超直接”通路。此外,我们确定了每个 STN 体素与运动皮质区域的连接。功能连接是基于功能磁共振成像计算的,即给定脑区的信号与 STN 信号之间的相关性。同样,每个 STN 体素的信号也可以根据与运动或边缘脑种子 ROI 区域的相关性来解释。右侧和左侧 STN ROI 似乎与运动、联合和边缘回路的脑区在结构和功能上都有连接。此外,这项研究使我们能够评估 STN 运动部分的分离程度,这对于 STN DBS 手术的规划很重要。