Motor Control in Parkinson's Disease During the Performance of Multi-Joint Reversal Movements.

IF 1.1 4区 心理学 Q4 NEUROSCIENCES
Journal of Motor Behavior Pub Date : 2024-01-01 Epub Date: 2024-07-16 DOI:10.1080/00222895.2024.2350723
Luciane Aparecida Pascucci Sande de Souza, Matheus Batista Nascimento, Artur Souza Dos Santos, Valdeci Carlos Dionisio
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引用次数: 0

Abstract

We tested if the movement slowness of individuals with Parkinson's disease is related to their decreased ability to generate adequate net torques and linearly coordinate them between joints. This cross-sectional study included ten individuals with Parkinson's disease and ten healthy individuals. They performed planar movements with a reversal over three target distances. We calculated joint kinematics of the elbow and shoulder using spatial orientation. The muscle, interaction, and net torques were integrated into the acceleration/deceleration phases of the fingertip speed. We calculated the linear correlations of those torques between joints. Both groups modulated the elbow and shoulder net torques with target distances. They linearly coupled the production of torques. Both groups did not modulate the interaction torques. The movement slowness in Parkinson's disease was related to the difficulty in generating the appropriate muscle and net torques in the task. The interaction torques do not seem to play any role in movement control.

帕金森病患者在进行多关节反向运动时的运动控制能力
我们测试了帕金森病患者的运动迟缓是否与他们产生足够净扭矩并在关节间进行线性协调的能力下降有关。这项横断面研究包括 10 名帕金森病患者和 10 名健康人。他们在三个目标距离内进行了带有反转的平面运动。我们利用空间定位计算了肘部和肩部的关节运动学。肌肉、相互作用和净扭矩被整合到指尖速度的加速/减速阶段。我们计算了关节间扭矩的线性相关。两组人都根据目标距离调节了肘部和肩部的净扭矩。他们对扭矩的产生进行了线性耦合。两组人都没有调节相互作用力矩。帕金森病患者的运动迟缓与任务中难以产生适当的肌肉扭矩和净扭矩有关。相互作用力矩在运动控制中似乎不起任何作用。
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来源期刊
Journal of Motor Behavior
Journal of Motor Behavior 医学-神经科学
CiteScore
3.10
自引率
0.00%
发文量
39
审稿时长
>12 weeks
期刊介绍: The Journal of Motor Behavior, a multidisciplinary journal of movement neuroscience, publishes articles that contribute to a basic understanding of motor control. Articles from different disciplinary perspectives and levels of analysis are encouraged, including neurophysiological, biomechanical, electrophysiological, psychological, mathematical and physical, and clinical approaches. Applied studies are acceptable only to the extent that they provide a significant contribution to a basic issue in motor control. Of special interest to the journal are those articles that attempt to bridge insights from different disciplinary perspectives to infer processes underlying motor control. Those approaches may embrace postural, locomotive, and manipulative aspects of motor functions, as well as coordination of speech articulators and eye movements. Articles dealing with analytical techniques and mathematical modeling are welcome.
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