Effects of forearm rotation on wrist flexor and extensor muscle activities.

IF 2.8 3区 医学 Q1 ORTHOPEDICS Journal of Orthopaedic Surgery and Research Pub Date : 2025-01-17 DOI:10.1186/s13018-024-05363-x
Kazuhiro Ikeda, Koji Kaneoka, Naoto Matsunaga, Akira Ikumi, Masashi Yamazaki, Yuichi Yoshii
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Abstract

The forearm muscles coordinately control wrist motion, and their activity is affected by forearm rotation. Although forearm rotation has been implicated in the development of lateral and medial epicondylitis, its biomechanical background remains unknown. Therefore, the present study investigated the activity of wrist muscles in various forearm positions. Surface electromyography of the extensor carpi radialis brevis, extensor carpi ulnaris, flexor carpi radialis, and flexor carpi ulnaris was performed on 40 healthy upper limbs. We initially measured muscle strength and electromyographic activity (integrated electromyographic value per second) at maximum voluntary output towards wrist extension and flexion in a neutral position. We then assessed electromyographic activity under constant wrist torque (75% of maximum strength in the neutral position) in pronation, the neutral position, and supination. The percentage of maximum electromyographic activity was evaluated for each position. In wrist extension, the extensor carpi radialis brevis was activated during forearm pronation, while extensor carpi ulnaris activity did not change in any forearm position. In wrist flexion, the flexor carpi radialis was activated during forearm supination, while flexor carpi ulnaris activity was significantly lower with forearm pronation than in the neutral position. Since muscle activation increases traction force at the tendon origin, forearm positions that increase muscle activity may be a biomechanical risk factor for the development of tendinopathy. The present results are consistent with epidemiological and pathological findings on lateral and medial epicondylitis. These results provide insights into wrist biomechanics and the pathophysiology of lateral and medial epicondylitis.

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前臂旋转对腕屈伸肌活动的影响。
前臂肌肉协调控制手腕运动,其活动受到前臂旋转的影响。虽然前臂旋转与外侧和内侧上髁炎的发生有关,但其生物力学背景尚不清楚。因此,本研究考察了不同前臂体位下腕部肌肉的活动。对40例健康上肢进行桡侧腕短伸肌、尺侧腕伸肌、桡侧腕屈肌和尺侧腕屈肌的表面肌电成像。我们最初测量了肌肉力量和肌电活动(每秒综合肌电值)的最大自愿输出手腕伸展和屈曲在中立位置。然后,我们评估了恒定手腕扭矩(中立位最大强度的75%)下旋前、中立位和旋后的肌电图活动。评估每个体位的最大肌电活动百分比。在手腕伸展时,前臂旋前时桡侧腕短伸肌被激活,而尺侧腕伸肌的活动在任何前臂位置都没有改变。在腕屈曲时,桡侧腕屈肌在前臂旋后时被激活,而尺侧腕屈肌的活动在前臂旋前时明显低于中立位。由于肌肉激活会增加肌腱起源处的牵引力,因此增加肌肉活动的前臂体位可能是肌腱病变发展的生物力学风险因素。本研究结果与外上髁炎和内上髁炎的流行病学和病理学结果一致。这些结果为腕部生物力学和外侧和内侧上髁炎的病理生理学提供了见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
4.10
自引率
7.70%
发文量
494
审稿时长
>12 weeks
期刊介绍: Journal of Orthopaedic Surgery and Research is an open access journal that encompasses all aspects of clinical and basic research studies related to musculoskeletal issues. Orthopaedic research is conducted at clinical and basic science levels. With the advancement of new technologies and the increasing expectation and demand from doctors and patients, we are witnessing an enormous growth in clinical orthopaedic research, particularly in the fields of traumatology, spinal surgery, joint replacement, sports medicine, musculoskeletal tumour management, hand microsurgery, foot and ankle surgery, paediatric orthopaedic, and orthopaedic rehabilitation. The involvement of basic science ranges from molecular, cellular, structural and functional perspectives to tissue engineering, gait analysis, automation and robotic surgery. Implant and biomaterial designs are new disciplines that complement clinical applications. JOSR encourages the publication of multidisciplinary research with collaboration amongst clinicians and scientists from different disciplines, which will be the trend in the coming decades.
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