Department of Radiology, Huashan Hospital, Fudan University, 12 Wulumuqi Middle Road, Shanghai 200040, China.
Neuroscience. 2013 Jul 23;243:33-9. doi: 10.1016/j.neuroscience.2013.03.048. Epub 2013 Apr 2.
The aim of this study is to explore the changes of inter-hemispheric functional connectivity in patients with unilateral brachial plexus injury.
Nine patients with five roots of unilateral brachial plexus avulsion injury and 11 healthy controls were recruited in this study. Resting-state functional connectivity magnetic resonance image was used to study the differences of inter-hemispheric functional connectivity between patients and healthy controls. Four areas were defined as regions of interest (ROI): the two primary motor areas (M1 areas) and two supplementary motor areas (SMAs) in the two hemispheres activated when the healthy controls performed unilateral hand grasping movement of the two hands, respectively. Functional connectivity maps were generated by correlating the regional time course of each ROI with that of every voxel in the whole brain. Then, functional connectivity was calculated by correlating the functional magnetic resonance image signal time courses of every two ROIs.
Resting-state inter-hemispheric functional connectivity of the primary motor areas was reduced following brachial plexus avulsion injury. The correlation coefficients of the SMAs showed no difference between the brachial plexus patients and healthy volunteers.
Our results indicate that brachial plexus injury decreases resting-state inter-hemispheric functional connectivity of the two primary motor areas. These results provide new insight into functional reorganization of the cerebral cortex after brachial plexus injury.
本研究旨在探讨臂丛神经损伤患者半球间功能连接的变化。
本研究纳入了 9 例单侧臂丛神经根撕脱伤患者和 11 名健康对照者。采用静息态功能磁共振成像研究患者与健康对照者之间半球间功能连接的差异。将四个区域定义为感兴趣区(ROI):当健康对照者分别用双手进行单侧手抓握运动时,两个半球中激活的两个初级运动区(M1 区)和两个补充运动区(SMA 区)。通过将每个 ROI 的区域时程与全脑每个体素的时程相关联,生成功能连接图。然后,通过将每个两个 ROI 的功能磁共振图像信号时程相关联,计算功能连接。
臂丛神经撕脱伤后,静息状态下初级运动区的半球间功能连接减少。SMA 的相关系数在臂丛神经损伤患者和健康志愿者之间没有差异。
我们的研究结果表明,臂丛神经损伤降低了两个初级运动区的静息状态下半球间功能连接。这些结果为臂丛神经损伤后大脑皮层的功能重组提供了新的视角。