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Subthalamic nucleus long-range synchronization—an independent hallmark of human Parkinsons disease

机译:丘脑下核的远程同步-人类帕金森氏病的独立标志

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摘要

Beta-band synchronous oscillations in the dorsolateral region of the subthalamic nucleus (STN) of human patients with Parkinson's disease (PD) have been frequently reported. However, the correlation between STN oscillations and synchronization has not been thoroughly explored. The simultaneous recordings of 2390 multi-unit pairs recorded by two parallel microelectrodes (separated by fixed distance of 2 mm, n = 72 trajectories with two electrode tracks >4 mm STN span) in 57 PD patients undergoing STN deep brain stimulation surgery were analyzed. Automatic procedures were utilized to divide the STN into dorsolateral oscillatory and ventromedial non-oscillatory regions, and to quantify the intensity of STN oscillations and synchronicity. Finally, the synchronicity of simultaneously vs. non-simultaneously recorded pairs were compared using a shuffling procedure. Synchronization was observed predominately in the beta range and only between multi-unit pairs in the dorsolateral oscillatory region (n = 615). In paired recordings between sites in the dorsolateral and ventromedial (n = 548) and ventromedial-ventromedial region pairs (n = 1227), no synchronization was observed. Oscillation and synchronicity intensity decline along the STN dorsolateral-ventromedial axis suggesting a fuzzy border between the STN regions. Synchronization strength was significantly correlated to the oscillation power, but synchronization was no longer observed following shuffling. We conclude that STN long-range beta oscillatory synchronization is due to increased neuronal coupling in the Parkinsonian brain and does not merely reflect the outcome of oscillations at similar frequency. The neural synchronization in the dorsolateral (probably the motor domain) STN probably augments the pathological changes in firing rate and patterns of subthalamic neurons in PD patients.
机译:帕金森氏病(PD)患者的丘脑底核(STN)背外侧区域中的β波段同步振荡已被频繁报道。但是,STN振荡和同步之间的相关性尚未被彻底探究。分析了在57例接受STN深部脑刺激手术的PD患者中,两个平行微电极同时记录的2390个多单位对的记录(以2 mm的固定距离隔开,n = 72条轨迹,两个电极轨道> 4 mm STN跨度)。利用自动程序将STN分为背外侧振荡和腹侧非振荡区域,并量化STN振荡的强度和同步性。最后,使用混洗程序比较了同时记录对与非同时记录对的同步性。同步主要在β范围内,仅在背外侧振荡区域(n = 615)的多单元对之间观察到。在背外侧和腹侧位点(n = 548)和腹侧-腹侧区对(n = 1227)之间的配对记录中,未观察到同步。沿STN背外侧-腹轴的振荡和同步强度下降,表明STN区域之间的边界模糊。同步强度与振荡功率显着相关,但在混洗后不再观察到同步。我们得出的结论是,STN远程β振荡同步是由于帕金森氏脑中神经元耦合增加,而不仅反映了相似频率下的振荡结果。 STN背外侧(可能是运动区域)的神经同步可能会增加PD患者的放电速率和丘脑下神经元模式的病理变化。

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