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使用腕部机器人对大学年龄男性在腕部动态桡尺偏斜过程中的前臂肌肉活动进行特征描述。

Characterizing forearm muscle activity in university-aged males during dynamic radial-ulnar deviation of the wrist using a wrist robot.

作者信息

Forman Davis A, Forman Garrick N, Avila-Mireles Edwin J, Mugnosso Maddalena, Zenzeri Jacopo, Murphy Bernadette, Holmes Michael W R

机构信息

Faculty of Science, University of Ontario Institute of Technology, Oshawa, ON, Canada.

Faculty of Applied Health Sciences, Brock University, St. Catharines, ON, Canada.

出版信息

J Biomech. 2020 Jul 17;108:109897. doi: 10.1016/j.jbiomech.2020.109897. Epub 2020 Jun 13.

Abstract

Functioning as wrist stabilizers, the wrist extensor muscles exhibit higher levels of muscle activity than the flexors in most distal upper-limb tasks. However, this finding has been derived mostly from isometric or wrist flexion-extension protocols, with little consideration for wrist dynamics or radial-ulnar wrist deviations. The purpose of this study was to assess forearm muscle activity during the execution of dynamic wrist radial-ulnar deviation in various forearm orientations (pronation/supination). In 12 healthy university-aged males, surface electromyography (EMG) was recorded from eight muscles of the dominant arm: flexor carpi radialis (FCR), flexor carpi ulnaris (FCU), flexor digitorum superficialis (FDS), extensor carpi radialis (ECR), extensor carpi ulnaris (ECU), extensor digitorum (ED), biceps brachii (BB) and triceps brachii (TB). While grasping a handle, participants performed dynamic radial-ulnar deviation using a three-degrees-of-freedom wrist manipulandum. The robotic device applied torque to the handle, in either a radial or ulnar direction, and in one of three forearm postures (30° supinated/neutral/30° pronated). Results indicated that forearm posture influenced the muscles acting upon the hand (FDS/ED), whereas movement phase (concentric-eccentric) and torque direction influenced nearly every muscle. The ECR demonstrated the greatest task-dependency of all forearm muscles, which is possibly reflective of forearm muscle lines of action. Co-contraction ratios were much higher in radial trials than ulnar (Radial: 1.20 ± 0.78, Ulnar: 0.28 ± 0.18, P < 0.05), suggesting greater FCU and ECU contribution to wrist joint stability in radial-ulnar movement. These findings highlight a greater complexity of wrist extensor function than has previously been reported in isometric work.

摘要

作为腕关节稳定肌,在大多数上肢远端任务中,腕伸肌的肌肉活动水平高于屈肌。然而,这一发现大多来自等长收缩或腕关节屈伸试验,很少考虑腕关节动力学或桡尺偏斜。本研究的目的是评估在不同前臂姿势(旋前/旋后)下进行动态腕关节桡尺偏斜时的前臂肌肉活动。在12名健康的大学年龄男性中,记录了优势手臂的八块肌肉的表面肌电图(EMG):桡侧腕屈肌(FCR)、尺侧腕屈肌(FCU)、指浅屈肌(FDS)、桡侧腕伸肌(ECR)、尺侧腕伸肌(ECU)、指伸肌(ED)、肱二头肌(BB)和肱三头肌(TB)。在握住手柄时,参与者使用三自由度腕关节操作器进行动态桡尺偏斜。机器人设备在桡侧或尺侧方向以及三种前臂姿势之一(旋后30°/中立/旋前30°)向手柄施加扭矩。结果表明,前臂姿势影响作用于手部的肌肉(FDS/ED),而运动阶段(向心-离心)和扭矩方向几乎影响每块肌肉。ECR在所有前臂肌肉中表现出最大的任务依赖性,这可能反映了前臂肌肉的作用线。桡侧试验中的共同收缩率远高于尺侧试验(桡侧:1.20±0.78,尺侧:0.28±0.18,P<0.05),表明在桡尺运动中FCU和ECU对腕关节稳定性的贡献更大。这些发现突出了腕伸肌功能比以往等长收缩研究中报道的更为复杂。

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