利用导电电活性聚合物传感器量化肌肉收缩:新型表面机械力学成像设备简介。

Q2 Medicine
International Biomechanics Pub Date : 2023-12-01 Epub Date: 2024-02-28 DOI:10.1080/23335432.2024.2319068
Donna Moxley Scarborough, Shannon E Linderman, Ryan Aspenleiter, Eric M Berkson
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引用次数: 0

摘要

临床医生需要一种准确的方法来评估活动中的肌肉收缩力,以便更好地指导治疗。我们研究了导电电活性聚合物传感器作为新型可穿戴表面机械力学成像(sMMG)传感器在量化肌肉收缩力方面的应用。肌肉收缩时的径向位移由 sMMG 传感器的物理拉伸介电弹性体组件检测,该组件可量化电容的变化。在平行下蹲活动和等长收缩过程中,股四头肌、腘绳肌和腓肠肌的肌肉激活持续时间与 sMMG 和 EMG 之间具有很强的相关性。sMMG 等长肌肉激活时间与测力计的力量输出时间之间存在中度到高度的相关性。电活性聚合物传感器测量肌肉收缩时间的潜在可穿戴应用得到了支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Quantifying muscle contraction with a conductive electroactive polymer sensor: introduction to a novel surface mechanomyography device.

Clinicians seek an accurate method to assess muscle contractility during activities to better guide treatment. We investigated application of a conductive electroactive polymer sensor as a novel wearable surface mechanomyography (sMMG) sensor for quantifying muscle contractility. The radial displacement of a muscle during a contraction is detected by the physically stretched dielectric elastomer component of the sMMG sensor which quantifies the changes in capacitance. The duration of muscle activation times for quadriceps, hamstrings, and gastrocnemius muscles demonstrated strong correlation between sMMG and EMG during a parallel squat activity and isometric contractions. A moderate to strong correlation was demonstrated between the sMMG isometric muscle activation times and force output times from a dynamometer. The potential wearable application of an electroactive polymer sensor to measure muscle contraction time is supported.

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来源期刊
International Biomechanics
International Biomechanics Medicine-Rehabilitation
CiteScore
1.90
自引率
0.00%
发文量
2
审稿时长
17 weeks
期刊介绍: International Biomechanics is a fully Open Access biomechanics journal that aims to foster innovation, debate and collaboration across the full spectrum of biomechanics. We publish original articles, reviews, and short communications in all areas of biomechanics and welcome papers that explore: Bio-fluid mechanics, Continuum Biomechanics, Biotribology, Cellular Biomechanics, Mechanobiology, Mechano-transduction, Tissue Mechanics, Comparative Biomechanics and Functional Anatomy, Allometry, Animal locomotion in biomechanics, Gait analysis in biomechanics, Musculoskeletal and Orthopaedic Biomechanics, Cardiovascular Biomechanics, Plant Biomechanics, Injury Biomechanics, Impact Biomechanics, Sport and Exercise Biomechanics, Kinesiology, Rehabilitation in biomechanics, Quantitative Ergonomics, Human Factors engineering, Occupational Biomechanics, Developmental Biomechanics.
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