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聚焦振动对跟腱的影响对健康受试者和亚急性中风患者感觉运动皮层激活的作用。

Influence of focal vibration over Achilles tendon on the activation of sensorimotor cortex in healthy subjects and subacute stroke patients.

作者信息

Li Wei, Li Chong, Xu Quan, Guan Xinyu, Ji Linhong

机构信息

Division of Intelligent and Biomechanical System, State Key Laboratory of Tribology, Department of Mechanical Engineering, Tsinghua University.

Department of Rehabilitation Medicine, Beijing Tsinghua Changgung Hospital, School of Clinical Medicine, Tsinghua University, Haidian, Beijing, China.

出版信息

Neuroreport. 2019 Nov 6;30(16):1081-1086. doi: 10.1097/WNR.0000000000001319.

Abstract

The modulation of cerebral activity could induce plastic changes in the cerebral cortex and contribute to motor rehabilitation. Focal vibration over lower-extremity muscles has therapeutic effects on the impaired motor function for stroke patients, but the modulatory effects of focal vibration on brain activity are less known. To explore this problem, this experiment was designed and conducted, in which focal vibration (75 Hz) was applied over the right Achilles tendon of 14 healthy subjects and the affected Achilles tendon of seven subacute stroke patients. Electroencephalography was recorded in the following phases: resting-state and three focal vibration sessions. Electroencephalographical analysis showed a significantly desynchronized power of contralateral primary sensorimotor cortex (S1-M1) in beta1 band (13-18 Hz) following all focal vibration sessions occurred in healthy subjects compared to resting-state, whereas a significantly desynchronized power of bilateral S1-M1 in the beta1 and beta2 band (18-21 Hz) was observed in stroke patients compared to resting-state. Besides, event-related power desynchronization of bilateral S1-M1 in stroke patients was significantly lower than healthy subjects in the beta2 and beta3 band (21-30 Hz) during focal vibration sessions. These results demonstrated that focal vibration over Achilles tendon could activate bilateral S1-M1 in stroke patients, which was different in healthy subjects. These indications contribute to a better understanding of the underlying mechanism of focal vibration on stroke rehabilitation.

摘要

大脑活动的调节可诱导大脑皮层发生可塑性变化,并有助于运动功能康复。下肢肌肉的局部振动对中风患者受损的运动功能具有治疗作用,但局部振动对大脑活动的调节作用尚鲜为人知。为探究这一问题,设计并开展了本实验,对14名健康受试者的右侧跟腱以及7名亚急性中风患者的患侧跟腱施加局部振动(75赫兹)。在以下阶段记录脑电图:静息状态和三个局部振动时段。脑电图分析显示,与静息状态相比,健康受试者在所有局部振动时段后,对侧初级感觉运动皮层(S1-M1)在β1频段(13-18赫兹)的功率显著去同步化;而与静息状态相比,中风患者双侧S1-M1在β1和β2频段(18-21赫兹)的功率显著去同步化。此外,在局部振动时段,中风患者双侧S1-M1的事件相关功率去同步化在β2和β3频段(21-30赫兹)显著低于健康受试者。这些结果表明,跟腱局部振动可激活中风患者的双侧S1-M1,这与健康受试者不同。这些发现有助于更好地理解局部振动对中风康复的潜在机制。

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