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基于位移肌电信号的被动蹬踏过程中股四头肌动态肌肉粘弹性估计

Displacement MMG-based estimation of dynamic muscle viscoelasticity in the quadriceps during passive pedaling.

作者信息

Fukuhara Shinichi, Oka Hisao

机构信息

Department of Medical Engineering, Faculty of Health Science and Technology, Kawasaki University of Medical Welfare, 288, Matsushima, Kurashiki, Okayama, 701-0193, Japan.

Graduate School of Interdisciplinary Science and Engineering of Health Systems, Okayama University, Okayama, 700-0082, Japan.

出版信息

Sci Rep. 2025 Jan 28;15(1):3538. doi: 10.1038/s41598-025-87842-7.

Abstract

We explore the correlation between muscle viscoelasticity and displacement mechanomyography (DMMG) during passive joint movement. Current methods for assessing muscle viscoelasticity (which is essential for rehabilitation and sports conditioning) are limited in terms of simplicity, objectivity, and portability. We introduce a novel methodology employing DMMG during passive pedaling to evaluate these properties. Participants engaged in passive pedaling at various cadences, while DMMG signals were recorded from the quadriceps, and knee joint angles measured. DMMG signals were consistent across different cadences and unaffected by muscle temperature changes due to thermal stimulation. However, the phase difference between DMMG and knee joint angle increased with cadence, reflecting an increase in the particularly viscous component of the muscle. An increase in muscle temperature reduced this phase difference, indicating that temperature influences the viscous properties of muscle as detected by DMMG. The findings suggest that the combination of DMMG and knee joint angle measurement during passive pedaling could provide a simple, quantitative method to estimate muscle viscoelasticity. Analyzing the phase difference between DMMG and joint angle may facilitate the assessment of changes in muscle viscoelasticity without the need for complex equipment. These findings can enhance the evaluation of muscle performance, contracture, atrophy, and injury prevention in both rehabilitation and sports settings.

摘要

我们探讨了被动关节运动期间肌肉粘弹性与位移肌动图(DMMG)之间的相关性。当前评估肌肉粘弹性(这对康复和运动训练至关重要)的方法在简单性、客观性和便携性方面存在局限性。我们引入了一种新颖的方法,即在被动蹬踏过程中采用DMMG来评估这些特性。参与者以不同的节奏进行被动蹬踏,同时记录股四头肌的DMMG信号,并测量膝关节角度。DMMG信号在不同节奏下保持一致,且不受热刺激引起的肌肉温度变化的影响。然而,DMMG与膝关节角度之间的相位差随节奏增加,这反映出肌肉中粘性成分的增加。肌肉温度升高会减小这种相位差,表明温度会影响通过DMMG检测到的肌肉粘性特性。研究结果表明,在被动蹬踏过程中结合DMMG和膝关节角度测量可以提供一种简单的定量方法来估计肌肉粘弹性。分析DMMG与关节角度之间的相位差可能有助于在无需复杂设备的情况下评估肌肉粘弹性的变化。这些发现可以加强在康复和运动环境中对肌肉性能、挛缩、萎缩以及损伤预防的评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4ff6/11775096/a2a647619502/41598_2025_87842_Fig1_HTML.jpg

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