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基于超声回声强度的功能性电刺激过程中肌肉疲劳评估。

Ultrasound Echogenicity-based Assessment of Muscle Fatigue During Functional Electrical Stimulation.

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2021 Nov;2021:5948-5952. doi: 10.1109/EMBC46164.2021.9630325.

Abstract

The rapid onset of muscle fatigue during functional electrical stimulation (FES) is a major challenge when attempting to perform long-term periodic tasks such as walking. Surface electromyography (sEMG) is frequently used to detect muscle fatigue for both volitional and FES-evoked muscle contraction. However, sEMG contamination from both FES stimulation artifacts and residual M-wave signals requires sophisticated processing to get clean signals and evaluate the muscle fatigue level. The objective of this paper is to investigate the feasibility of computationally efficient ultrasound (US) echogenicity as a candidate indicator of FES-induced muscle fatigue. We conducted isometric and dynamic ankle dorsiflexion experiments with electrically stimulated tibialis anterior (TA) muscle on three human participants. During a fatigue protocol, we synchronously recorded isometric dorsiflexion force, dynamic dorsiflexion angle, US images, and stimulation intensity. The temporal US echogenicity from US images was calculated based on a gray-scaled analysis to assess the decrease in dorsiflexion force or motion range due to FES-induced TA muscle fatigue. The results showed a monotonic reduction in US echogenicity change along with the fatigue progression for both isometric (R =0.870±0.026) and dynamic (R =0.803±0.048) ankle dorsiflexion. These results implied a strong linear relationship between US echogenicity and TA muscle fatigue level. The findings indicate that US echogenicity may be a promising computationally efficient indicator for assessing FES-induced muscle fatigue and may aid in the design of muscle-in-the-loop FES controllers that consider the onset of muscle fatigue.

摘要

功能性电刺激(FES)过程中肌肉疲劳的快速出现是进行长期周期性任务(如行走)时的主要挑战。表面肌电图(sEMG)常用于检测自主和 FES 诱发的肌肉收缩的肌肉疲劳。然而,sEMG 会受到 FES 刺激伪影和残留 M 波信号的污染,需要进行复杂的处理才能获得干净的信号并评估肌肉疲劳程度。本文的目的是研究计算效率高的超声(US)回声作为 FES 诱导的肌肉疲劳候选指标的可行性。我们在三名参与者身上进行了等长和动态踝关节背屈实验,用电流刺激胫骨前肌(TA)。在疲劳协议期间,我们同步记录等长背屈力、动态背屈角度、US 图像和刺激强度。根据灰度分析计算 US 图像的时间性 US 回声,以评估由于 FES 引起的 TA 肌肉疲劳导致的背屈力或运动范围的下降。结果表明,随着疲劳的进展,无论是等长(R =0.870±0.026)还是动态(R =0.803±0.048)踝关节背屈,US 回声的变化都呈单调递减。这些结果表明 US 回声与 TA 肌肉疲劳程度之间存在很强的线性关系。研究结果表明,US 回声可能是评估 FES 诱导的肌肉疲劳的一种很有前途的计算效率高的指标,并可能有助于设计考虑肌肉疲劳出现的肌肉反馈 FES 控制器。

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