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帕金森病患者与健康成年人的双手协调性和神经肌肉同步性

Bimanual coordination and neuromuscular synchronization in Parkinson's disease and healthy adults.

作者信息

Weinrich Madison, Neto Osmar P, Wang Yiyu, Balthazor Brock, Kennedy Deanna M

机构信息

Department of Kinesiology and Sport Management, Texas A&M University, College Station, TX, 77843-4243, USA.

Department of Kinesiology, California State University, San Marcos, CA, USA.

出版信息

Exp Brain Res. 2025 Apr 1;243(4):104. doi: 10.1007/s00221-025-07061-4.

DOI:10.1007/s00221-025-07061-4
PMID:40167792
Abstract

Parkinson's disease (PD) is a progressive neurodegenerative disorder that significantly impairs motor function, affecting over 1.5 million people in the U.S. PD is characterized by deficits in movement speed, force timing, and force modulation, particularly during coordinated upper limb actions. These impairments contribute to reduced functional independence and a diminished quality of life in individuals with PD. This study investigated the impact of PD on bimanual coordination, focusing on temporal accuracy, force production, and neuromuscular synchronization. The goal was to compare these parameters across individuals with PD, healthy older adults (HOA), and healthy young adults (HYA) during a stable force coordination task. Thirteen individuals with PD (median age [min-max] = 73 [60-83] years; 6 males), 13 HOAs median age [min-max] = 74 [60-84] years; 7 males), and 15 HYAs (median age [min-max] = 21 [18-23] years; 7 males) performed a 1:1 in-phase (0°) bimanual coordination task, requiring participants to rhythmically produce isometric forces with their left and right index fingers. Muscle activity from the First Dorsal Interosseus (FDI) muscles were recorded using electromyography (EMG). Each participant completed 21, 30-second trials. Temporal accuracy and stability were assessed using frequency ratio, absolute error (AE), and variability (VE) of relative phase. Force production was evaluated in terms of force harmonicity, force asymmetry, and peak force. Neuromuscular synchronization was analyzed using force-force and EMG-EMG coherence across different frequency bands. All groups achieved the target frequency ratio of 1.0, with no significant differences in AE or VE, suggesting comparable temporal accuracy and stability across groups. However, the PD group demonstrated significantly lower harmonicity, indicating less smooth force production, and greater force asymmetry compared to HOA and HYA groups. Reduced force-force coherence, especially in the 1-4 Hz and 4-8 Hz frequency bands, further highlighted challenges in bilateral force synchronization for the PD group. EMG-EMG coherence analysis revealed that the HYA group exhibited higher muscle activation synchronization, particularly in the alpha band, compared to the PD group. These findings suggest that while basic temporal coordination remains intact in PD, the disease impairs the smoothness and symmetry of force production, likely due to disrupted neural synchronization. The observed correlations between higher force coherence, greater harmonicity, and lower force asymmetry underscore the critical role of neural drive coherence in achieving smooth and symmetrical force production. However, it is important to consider the impact of medication state, since all participants were tested around their "ON" medication state. Understanding these impairments can inform the development of targeted interventions and rehabilitation strategies aimed at improving motor function and quality of life in individuals with PD.

摘要

帕金森病(PD)是一种进行性神经退行性疾病,会严重损害运动功能,在美国影响着超过150万人。PD的特征是运动速度、力量时机和力量调节方面存在缺陷,尤其是在协调上肢动作时。这些损伤导致PD患者的功能独立性降低和生活质量下降。本研究调查了PD对双手协调性的影响,重点关注时间准确性、力量产生和神经肌肉同步性。目标是在一项稳定的力量协调任务中,比较PD患者、健康老年人(HOA)和健康年轻人(HYA)在这些参数上的差异。13名PD患者(中位年龄[最小值 - 最大值]=73[60 - 83]岁;6名男性)、13名HOA患者(中位年龄[最小值 - 最大值]=74[60 - 84]岁;7名男性)和15名HYA患者(中位年龄[最小值 - 最大值]=21[18 - 23]岁;7名男性)进行了1:1同相(0°)双手协调任务,要求参与者用左右食指有节奏地产生等长力。使用肌电图(EMG)记录第一背侧骨间肌(FDI)的肌肉活动。每位参与者完成21次30秒的试验。使用相对相位的频率比、绝对误差(AE)和变异性(VE)评估时间准确性和稳定性。从力量谐波性、力量不对称性和峰值力量方面评估力量产生情况。使用不同频段的力量 - 力量和EMG - EMG相干性分析神经肌肉同步性。所有组均达到目标频率比1.0,AE或VE无显著差异,表明各组在时间准确性和稳定性方面具有可比性。然而,与HOA组和HYA组相比,PD组的谐波性显著更低,表明力量产生不那么平滑,且力量不对称性更大。力量 - 力量相干性降低,尤其是在1 - 4Hz和4 - 8Hz频段,进一步凸显了PD组在双侧力量同步方面的挑战。EMG - EMG相干性分析显示,与PD组相比,HYA组表现出更高的肌肉激活同步性,尤其是在α频段。这些发现表明,虽然PD患者的基本时间协调性保持完好,但该疾病会损害力量产生的平滑性和对称性,可能是由于神经同步性受到破坏。观察到的较高力量相干性、更大谐波性和较低力量不对称性之间的相关性强调了神经驱动相干性在实现平滑和对称力量产生中的关键作用。然而,由于所有参与者均在“开”药状态下进行测试,因此必须考虑药物状态的影响。了解这些损伤可为旨在改善PD患者运动功能和生活质量的针对性干预措施和康复策略的制定提供参考。

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本文引用的文献

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Combining Transcranial Direct Current Stimulation with Exercise to Improve Mobility, Stability, and Tremor Management in 25 Individuals with Parkinson's Disease.将经颅直流电刺激与运动相结合以改善25例帕金森病患者的活动能力、稳定性和震颤控制
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Increased EMG-EMG coherence in the theta and alpha bands during bimanual force modulation.
在双手力调制过程中,θ 频段和α 频段的 EMG-EMG 相干性增加。
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