BACKGROUND:Multiple sclerosis (MS) impairs signal transmission along cortico-cortical and cortico-subcortical connections, affecting functional integration within the motor network. Functional magnetic resonance imaging (fMRI) during motor tasks has revealed altered functional connectivity in MS, but it is unclear how much motor disability contributed to these abnormal functional interaction patterns. OBJECTIVE:To avoid any influence of impaired task performance, we examined disease-related changes in functional motor connectivity in MS at rest. METHODS:A total of 42 patients with MS and 30 matched controls underwent a 20-minute resting-state fMRI session at 3 Tesla. Independent component analysis was applied to the fMRI data to identify disease-related changes in motor resting-state connectivity. RESULTS:Patients with MS showed a spatial expansion of motor resting-state connectivity in deep subcortical nuclei but not at the cortical level. The anterior and middle parts of the putamen, adjacent globus pallidus, anterior and posterior thalamus and the subthalamic region showed stronger functional connectivity with the motor network in the MS group compared with controls. CONCLUSION:MS is characterised by more widespread motor connectivity in the basal ganglia while cortical motor resting-state connectivity is preserved. The expansion of subcortical motor resting-state connectivity in MS indicates less efficient funnelling of neural processing in the executive motor cortico-basal ganglia-thalamo-cortical loops.

译文

背景:多发性硬化症(MS)会损害沿皮质-皮质和皮质-皮质下连接的信号传输,影响运动网络内的功能集成。运动任务期间的功能磁共振成像(fMRI)已揭示MS中功能连接的改变,但尚不清楚多少运动障碍导致了这些异常的功能相互作用方式。
目的:为了避免影响任务表现的任何影响,我们研究了静止状态下MS中疾病相关的功能性运动连接改变。
方法:总共42例MS患者和30名相匹配的对照组在3特斯拉接受了20分钟的静息状态fMRI检查。将独立成分分析应用于fMRI数据,以识别运动静止状态连通性中与疾病相关的变化。
结果:患有MS的患者在深层皮层下核中显示出运动静息状态连通性的空间扩展,但在皮质水平上没有。与对照组相比,MS组的壳前部和中部,邻近的苍白球,丘脑前部和后部以及丘脑下区域显示出与运动网络的更强功能连接。
结论:MS的特点是基底神经节的运动连接更加广泛,而皮质运动的静息状态连接得以保留。 MS中皮层下运动静止状态连通性的扩展表明在执行性运动皮层-基底神经节-丘脑-皮层环路中神经处理的漏斗效率较低。

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