A Wearable Strain-Sensor-Based Shoulder Patch for Fatigue Detection in Bicep Curls
Ming Xuan Chua, Shuhua Peng, Thanh Nho Do, Chun Hui Wang, Liao Wu

TL;DR
This paper introduces a wearable strain sensor shoulder patch that detects muscle fatigue and compensation during bicep curls, enabling remote monitoring in home-based rehabilitation.
Contribution
It presents a novel wearable sensor and algorithm for detecting fatigue-induced muscle compensation, validated against optical and electromyography sensors.
Findings
Effective real-time fatigue detection during exercises
High correlation between strain sensor signals and muscle fatigue
Potential for remote rehabilitation monitoring
Abstract
A common challenge in home-based rehabilitation is muscle compensation induced by pain or fatigue, where patients with weakened primary muscles recruit secondary muscle groups to assist their movement, causing issues such as delayed rehabilitation progress or risk of further injury. In a home-based setting, the subtle compensatory actions may not be perceived since physiotherapists cannot directly observe patients. To address this problem, this study develops a novel wearable strain sensor-based shoulder patch to detect fatigue-induced muscle compensation during bicep curl exercises. Built on an observation that the amplitude of a strain sensor's resistance is correlated to the motion of a joint that the sensor is attached to, we develop an algorithm that can robustly detect the state when significant changes appear in the shoulder joint motion, which indicates fatigue-induced muscle…
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Taxonomy
TopicsMetal and Thin Film Mechanics · Adhesion, Friction, and Surface Interactions · Mechanical stress and fatigue analysis
MethodsHigh-Order Consensuses
