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底丘脑刺激调节帕金森病的运动网络:恢复、缓解和重塑。

Subthalamic stimulation modulates motor network in Parkinson's disease: recover, relieve and remodel.

机构信息

School of Electrical and Information Engineering, Tianjin University, Tianjin 300072, China.

Department of Radiology, Ruijin Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai 200025, China.

出版信息

Brain. 2023 Jul 3;146(7):2780-2791. doi: 10.1093/brain/awad004.

Abstract

Aberrant dynamic switches between internal brain states are believed to underlie motor dysfunction in Parkinson's disease. Deep brain stimulation of the subthalamic nucleus is a well-established treatment for the motor symptoms of Parkinson's disease, yet it remains poorly understood how subthalamic stimulation modulates the whole-brain intrinsic motor network state dynamics. To investigate this, we acquired resting-state functional magnetic resonance imaging time-series data from 27 medication-free patients with Parkinson's disease (mean age: 64.8 years, standard deviation: 7.6) who had deep brain stimulation electrodes implanted in the subthalamic nucleus, in both on and off stimulation states. Sixteen matched healthy individuals were included as a control group. We adopted a powerful data-driven modelling approach, known as a hidden Markov model, to disclose the emergence of recurring activation patterns of interacting motor regions (whole-brain intrinsic motor network states) via the blood oxygen level-dependent signal detected in the resting-state functional magnetic resonance imaging time-series data from all participants. The estimated hidden Markov model disclosed the dynamics of distinct whole-brain motor network states, including frequency of occurrence, state duration, fractional coverage and their transition probabilities. Notably, the data-driven decoding of whole-brain intrinsic motor network states revealed that subthalamic stimulation reshaped functional network expression and stabilized state transitions. Moreover, subthalamic stimulation improved motor symptoms by modulating key trajectories of state transition within whole-brain intrinsic motor network states. This modulation mechanism of subthalamic stimulation was manifested in three significant effects: recovery, relieving and remodelling effects. Significantly, recovery effects correlated with improvements in tremor and posture symptoms induced by subthalamic stimulation (P < 0.05). Furthermore, subthalamic stimulation was found to restore a relatively low level of fluctuation of functional connectivity in all motor regions to a level closer to that of healthy participants. Also, changes in the fluctuation of functional connectivity between motor regions were associated with improvements in tremor and gait symptoms (P < 0.05). These findings fill a gap in our knowledge of the role of subthalamic stimulation at the level of neural activity, revealing the regulatory effects of subthalamic stimulation on whole-brain inherent motor network states in Parkinson's disease. Our results provide mechanistic insight and explanation for how subthalamic stimulation modulates motor symptoms in Parkinson's disease.

摘要

据信,大脑内部状态之间的异常动态切换是帕金森病运动功能障碍的基础。丘脑底核深部脑刺激是治疗帕金森病运动症状的一种成熟方法,但对于丘脑底核刺激如何调节整个大脑内在运动网络状态动力学仍知之甚少。为了研究这一点,我们从 27 名接受药物治疗的帕金森病患者(平均年龄:64.8 岁,标准差:7.6)中获得了静息状态功能磁共振成像时间序列数据,这些患者的丘脑底核都植入了深部脑刺激电极,分别处于刺激开启和关闭状态。还包括 16 名匹配的健康个体作为对照组。我们采用了一种强大的基于数据的建模方法,即隐马尔可夫模型,通过对所有参与者的静息状态功能磁共振成像时间序列数据中的血氧水平依赖信号进行分析,揭示了相互作用的运动区域(整个大脑内在运动网络状态)重现激活模式的出现。估计的隐马尔可夫模型揭示了不同的整个大脑运动网络状态的动力学,包括出现频率、状态持续时间、分数覆盖及其转移概率。值得注意的是,整个大脑内在运动网络状态的数据分析揭示了丘脑底核刺激重塑了功能网络表达并稳定了状态转换。此外,丘脑底核刺激通过调节整个大脑内在运动网络状态中的关键状态转换轨迹来改善运动症状。这种丘脑底核刺激的调制机制表现为三种显著的效应:恢复、缓解和重塑效应。重要的是,恢复效应与丘脑底核刺激引起的震颤和姿势症状的改善相关(P<0.05)。此外,丘脑底核刺激被发现将所有运动区域的功能连接波动恢复到接近健康参与者的相对较低水平。同样,运动区域之间功能连接波动的变化与震颤和步态症状的改善相关(P<0.05)。这些发现填补了我们在神经活动水平上对丘脑底核刺激作用的认识空白,揭示了丘脑底核刺激对帕金森病整个大脑内在运动网络状态的调节作用。我们的结果提供了对丘脑底核刺激如何调节帕金森病运动症状的机制见解和解释。

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