外骨骼
等长运动
可穿戴计算机
惯性测量装置
计算机科学
力动力学
肌肉收缩
生物医学工程
人工肌肉
稳健性(进化)
模拟
工程类
人工智能
医学
解剖
物理疗法
机械工程
执行机构
基因
嵌入式系统
生物化学
化学
作者
Yun Lu,Yudong Cao,Yi Chen,Hui Li,Weihua Li,Haiping Du,Shiwu Zhang,S. S. Sun
标识
DOI:10.1088/1361-665x/accf6f
摘要
Abstract Piezoelectric based ultrasonic transducer shows a promising application prospect in the wearable muscle force estimator by detecting the morphological-biochemical peculiarity of human motion. However, due to the nonlinearity of muscle contraction, muscle force estimation in a dynamic motion, such as leg lifting, is still a challenge. In this study, a wearable multi-sensory system was developed for muscle force estimation in the isometric contraction assessment and during the dynamic training. A customized wearable ultrasound system was adopted for real-time deformation measurement of muscle, and an inertial measurement unit sensor was utilized to detect the joint angle. Thus, the muscle force can be predicted by identifying the muscle deformation as well as considering the muscle thickness change caused by the joint angel variation. The robustness and efficiency of the system was investigated by evaluating the muscle force of the rectus femoris during the isometric contraction assessment and the knee’s dynamic exercise. The accuracy of muscle force prediction is over 90%. During the knee’s dynamic exercise, the predicted force output of the lower-limb agreed well with the measured value, demonstrating the promising application of the system in dynamic muscle force estimation. This approach can provide real-time muscle force information for the patients to improve the rehabilitative training effect when using an exoskeletal rehabilitation robot as well as evaluate their recovery situation.
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