Department of Neurology, Campus Mitte, Charité - Universitätsmedizin Berlin, Berlin, Germany.
Department of Neurosurgery, Campus Mitte, Charité - Universitätsmedizin Berlin, Berlin, Germany.
Elife. 2018 Feb 1;7:e31895. doi: 10.7554/eLife.31895.
Gamma synchronization increases during movement and scales with kinematic parameters. Here, disease-specific characteristics of this synchronization and the dopamine-dependence of its scaling in Parkinson's disease are investigated. In 16 patients undergoing deep brain stimulation surgery, movements of different velocities revealed that subthalamic gamma power peaked in the sensorimotor part of the subthalamic nucleus, correlated positively with maximal velocity and negatively with symptom severity. These effects relied on movement-related bursts of transient synchrony in the gamma band. The gamma burst rate highly correlated with averaged power, increased gradually with larger movements and correlated with symptom severity. In the dopamine-depleted state, gamma power and burst rate significantly decreased, particularly when peak velocity was slower than ON medication. Burst amplitude and duration were unaffected by the medication state. We propose that insufficient recruitment of fast gamma bursts during movement may underlie bradykinesia as one of the cardinal symptoms in Parkinson's disease.
Gamma 同步在运动过程中增加,并与运动学参数成比例。在这里,研究了帕金森病中这种同步的疾病特异性特征及其与多巴胺的缩放关系。在 16 名接受深部脑刺激手术的患者中,不同速度的运动表明,苍白球内侧核的运动区 gamma 功率峰值与最大速度呈正相关,与症状严重程度呈负相关。这些影响依赖于运动相关的短暂同步 gamma 带爆发。Gamma 爆发率与平均功率高度相关,随着更大的运动逐渐增加,并与症状严重程度相关。在多巴胺耗竭状态下,gamma 功率和爆发率显著降低,特别是当峰值速度慢于药物开启时。爆发幅度和持续时间不受药物状态的影响。我们提出,运动过程中快速 gamma 爆发的不足可能是帕金森病的运动迟缓等主要症状之一的基础。