Department of Clinical and Experimental Medicine, University of Pisa, via Roma 67, 56126, Pisa, Italy.
Neuroradiology Unit, Pisa University Hospital, Pisa, Italy.
Sci Rep. 2020 Oct 7;10(1):16661. doi: 10.1038/s41598-020-73714-9.
Cerebello-thalamo-cortical network is suggested to be involved in the pathophysiology of Essential Tremor (ET). 23 patients with ET and 23 matched HC underwent a 3T-MRI with acquisition of a resting state sequence. Connectivity was investigated using a seed-based regression analyses approach. In ET patients were observed: Reduced connectivity between left primary motor cortex (M1) seed and right premotor cortex and cerebellum and bilateral premotor, parietal areas, supplementary motor area (SMA); Increased connectivity between left somatosensory cortex (S1) seed and parietal areas, M1, premotor cortex, SMA; reduced connectivity of this seed with cerebellum. Increased connectivity of SMA seed with premotor cortex and decreased with parietal and precentral areas; Increased connectivity between left thalamus seed and cerebellum; Reduced connectivity between right cerebellum seeds and other cerebellar areas, precentral and premotor areas. ET showed altered connectivity within the cortical sensory-motor network and between cerebral cortex and cerebellum. The increased connectivity between cerebellum and thalamus is consistent with their crucial role in tremor generation. These findings support the dynamical entrainment of multiple central oscillators throughout the cerebello-thalamo-cortical network in ET. This evidence is strengthened by the finding that this network is altered also when the core symptom is absent.
小脑-丘脑-皮质网络被认为参与了原发性震颤(ET)的病理生理学。23 名 ET 患者和 23 名匹配的 HC 接受了 3T-MRI 检查,采集了静息状态序列。使用基于种子的回归分析方法研究了连通性。在 ET 患者中观察到:左初级运动皮层(M1)种子与右侧运动前皮质和小脑以及双侧运动前皮质、顶叶区域、辅助运动区(SMA)之间的连通性降低;左体感皮层(S1)种子与顶叶区域、M1、运动前皮质、SMA 之间的连通性增加;该种子与小脑的连通性降低。SMA 种子与运动前皮质的连通性增加,与顶叶和中央前区的连通性降低;左丘脑种子与小脑之间的连通性增加;右侧小脑种子与其他小脑区域、中央前区和运动前区之间的连通性降低。ET 表现出皮质感觉运动网络内以及大脑皮层和小脑之间的连通性改变。小脑与丘脑之间增加的连通性与其在震颤产生中的关键作用一致。当核心症状不存在时,也发现了这个网络的改变,这一发现支持了多个中枢振荡器在小脑-丘脑-皮质网络中整个网络的动态同步。