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使用新型表面肌电传感器评估股四头肌收缩在两种神经肌肉控制筛选任务期间。

Assessing Quadriceps Muscle Contraction Using a Novel Surface Mechanomyography Sensor during Two Neuromuscular Control Screening Tasks.

机构信息

Department of Orthopaedic Surgery, Massachusetts General Hospital, Boston, MA 02114, USA.

FIGUR8, Inc., Boston, MA 02116, USA.

出版信息

Sensors (Basel). 2023 Jun 29;23(13):6031. doi: 10.3390/s23136031.

Abstract

Electromyography (EMG) is the clinical standard for capturing muscle activation data to gain insight into neuromuscular control, yet challenges surrounding data analysis limit its use during dynamic tasks. Surface mechanomyography (sMMG) sensors are novel wearable devices that measure the physical output of muscle excursion during contraction, which may offer potential easy application to assess neuromuscular control. This study aimed to investigate sMMG detection of the timing patterns of muscle contraction compared to EMG. Fifteen healthy participants (mean age = 31.7 ± 9.1 y; eight males and seven females) were donned with EMG and sMMG sensors on their right quadriceps for simultaneous data capture during bilateral deep squats, and a subset performed three sets of repeated unilateral partial squats. No significant difference in the total duration of contraction was detected by EMG and sMMG during bilateral ( = 0.822) and partial ( = 0.246) squats. sMMG and EMG timing did not differ significantly for eccentric ( = 0.414) and concentric ( = 0.462) phases of muscle contraction during bilateral squats. The sMMG magnitude of quadriceps excursion demonstrated excellent intra-session retest reliability for bilateral (ICC = 0.962 mm) and partial (ICC = 0.936 mm, = 10) squats. The sMMG sensors accurately and consistently provided key quadriceps muscle performance metrics during two physical activities commonly used to assess neuromuscular control for injury prevention, rehabilitation, and exercise training.

摘要

肌电图(EMG)是捕捉肌肉激活数据以深入了解神经肌肉控制的临床标准,但数据分析面临的挑战限制了其在动态任务中的应用。表面肌振图(sMMG)传感器是一种新型可穿戴设备,可测量收缩期间肌肉运动的物理输出,这可能为评估神经肌肉控制提供潜在的简便应用。本研究旨在研究 sMMG 检测肌肉收缩时间模式与 EMG 的比较。15 名健康参与者(平均年龄=31.7±9.1 岁;男性 8 名,女性 7 名)在右侧股四头肌上佩戴 EMG 和 sMMG 传感器,以在双侧深蹲时同时进行数据采集,并选择一部分参与者进行三组重复的单侧半深蹲。在双侧( = 0.822)和单侧( = 0.246)深蹲时,EMG 和 sMMG 检测到的收缩总持续时间没有显著差异。在双侧深蹲时,sMMG 和 EMG 之间的收缩时间在离心( = 0.414)和向心( = 0.462)阶段没有显著差异。股四头肌运动的 sMMG 幅度在双侧(ICC=0.962mm)和单侧(ICC=0.936mm, = 10)深蹲的单次测试中具有极好的内部分测试可靠性。sMMG 传感器在两种常用于评估神经肌肉控制以预防损伤、康复和运动训练的身体活动中,准确一致地提供了关键的股四头肌肌肉表现指标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2de8/10346542/146e631fb112/sensors-23-06031-g001.jpg

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