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肱二头肌神经肌肉电刺激中前臂姿势和肘关节角度对肘屈肌力矩和肌电的影响。

Effect of Forearm Postures and Elbow Joint Angles on Elbow Flexion Torque and Mechanomyography in Neuromuscular Electrical Stimulation of the Biceps Brachii.

机构信息

Fakulti Kejuruteraan Elektronik dan Kejuruteraan Komputer, Universiti Teknikal Malaysia Melaka, Durian Tunggal 76100, Melaka, Malaysia.

Regional Centre of Excellence in Biomedical Engineering and e-Health, University of Rwanda, Kigali P.O. Box 4285, Rwanda.

出版信息

Sensors (Basel). 2023 Sep 29;23(19):8165. doi: 10.3390/s23198165.

Abstract

Neuromuscular electrical stimulation plays a pivotal role in rehabilitating muscle function among individuals with neurological impairment. However, there remains uncertainty regarding whether the muscle's response to electrical excitation is affected by forearm posture, joint angle, or a combination of both factors. This study aimed to investigate the effects of forearm postures and elbow joint angles on the muscle torque and MMG signals. Measurements of the torque around the elbow and MMG of the biceps brachii (BB) muscle were conducted in 36 healthy subjects (age, 22.24 ± 2.94 years; height, 172 ± 0.5 cm; and weight, 67.01 ± 7.22 kg) using an in-house elbow flexion testbed and neuromuscular electrical stimulation (NMES) of the BB muscle. The BB muscle was stimulated while the forearm was positioned in the neutral, pronation, or supination positions. The elbow was flexed at angles of 10°, 30°, 60°, and 90°. The study analyzed the impact of the forearm posture(s) and elbow joint angle(s) on the root-mean-square value of the torque (TQRMS). Subsequently, various MMG parameters, such as the root-mean-square value (MMGRMS), the mean power frequency (MMGMPF), and the median frequency (MMGMDF), were analyzed along the longitudinal, lateral, and transverse axes of the BB muscle fibers. The test-retest interclass correlation coefficient (ICC) for the torque and MMG ranged from 0.522 to 0.828. Repeated-measure ANOVAs showed that the forearm posture and elbow flexion angle significantly influenced the TQRMS ( < 0.05). Similarly, the MMGRMS, MMGMPF, and MMGMDF showed significant differences among all the postures and angles ( < 0.05). However, the combined main effect of the forearm posture and elbow joint angle was insignificant along the longitudinal axis ( > 0.05). The study also found that the MMGRMS and TQRMS increased with increases in the joint angle from 10° to 60° and decreased at greater angles. However, during this investigation, the MMGMPF and MMGMDF exhibited a consistent decrease in response to increases in the joint angle for the lateral and transverse axes of the BB muscle. These findings suggest that the muscle contraction evoked by NMES may be influenced by the interplay between actin and myosin filaments, which are responsible for muscle contraction and are, in turn, influenced by the muscle length. Because restoring the function of limbs is a common goal in rehabilitation services, the use of MMG in the development of methods that may enable the real-time tracking of exact muscle dimensional changes and activation levels is imperative.

摘要

神经肌肉电刺激在神经功能障碍个体的肌肉功能康复中起着关键作用。然而,目前尚不清楚前臂姿势、关节角度或这两个因素的组合是否会影响肌肉对电刺激的反应。本研究旨在探讨前臂姿势和肘关节角度对肌肉扭矩和 MMG 信号的影响。使用内部肘部弯曲测试台和肱二头肌的神经肌肉电刺激(NMES),对 36 名健康受试者(年龄 22.24 ± 2.94 岁;身高 172 ± 0.5 cm;体重 67.01 ± 7.22 kg)的肘部周围扭矩和肱二头肌(BB)的 MMG 进行了测量。BB 肌肉在中立、旋前或旋后位置下进行刺激。肘部弯曲角度为 10°、30°、60°和 90°。研究分析了前臂姿势和肘关节角度对扭矩均方根值(TQRMS)的影响。随后,分析了 BB 肌纤维的纵向、横向和横向轴上的 MMG 参数,如均方根值(MMGRMS)、平均功率频率(MMGMPF)和中值频率(MMGMDF)。扭矩和 MMG 的测试-再测试组内相关系数(ICC)范围为 0.522 至 0.828。重复测量方差分析显示,前臂姿势和肘部弯曲角度对 TQRMS 有显著影响(<0.05)。同样,MMGRMS、MMGMPF 和 MMGMDF 在所有姿势和角度之间也存在显著差异(<0.05)。然而,前臂姿势和肘关节角度的联合主要效应在纵向轴上不显著(>0.05)。研究还发现,随着关节角度从 10°增加到 60°,MMGRMS 和 TQRMS 增加,而在更大的角度下则减少。然而,在这项研究中,MMGMPF 和 MMGMDF 对 BB 肌横向和纵向轴上关节角度的增加表现出一致的下降。这些发现表明,NMES 引起的肌肉收缩可能受到肌动蛋白和肌球蛋白丝之间相互作用的影响,而肌动蛋白和肌球蛋白丝负责肌肉收缩,反过来又受肌肉长度的影响。由于恢复四肢功能是康复服务的共同目标,因此在开发可能实现精确肌肉维度变化和激活水平实时跟踪的方法时,使用 MMG 至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b599/10575078/1c835b7a248d/sensors-23-08165-g001.jpg

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