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健康人体在手臂伸展任务中利用肌电图和智能手机加速度计评估躯干前屈

Assessment of trunk flexion in arm reaching tasks with electromyography and smartphone accelerometry in healthy human subjects.

机构信息

Institute for Bioengineering of Catalonia, Barcelona Institute of Science and Technology, 08028, Barcelona, Spain.

Department of Automatic Control, Universitat Politècnica de Catalunya-Barcelona Tech (UPC), 08028, Barcelona, Spain.

出版信息

Sci Rep. 2021 Mar 8;11(1):5363. doi: 10.1038/s41598-021-84789-3.

Abstract

Trunk stability is essential to maintain upright posture and support functional movements. In this study, we aimed to characterize the muscle activity and movement patterns of trunk flexion during an arm reaching task in sitting healthy subjects and investigate whether trunk stability is affected by a startling acoustic stimulus (SAS). For these purposes, we calculated the electromyographic (EMG) onset latencies and amplitude parameters in 8 trunk, neck, and shoulder muscles, and the tilt angle and movement features from smartphone accelerometer signals recorded during trunk bending in 33 healthy volunteers. Two-way repeated measures ANOVAs were applied to examine the effects of SAS and target distance (15 cm vs 30 cm). We found that SAS markedly reduced the response time and EMG onset latencies of all muscles, without changing neither movement duration nor muscle recruitment pattern. Longer durations, higher tilt angles, and higher EMG amplitudes were observed at 30 cm compared to 15 cm. The accelerometer signals had a higher frequency content in SAS trials, suggesting reduced movement control. The proposed measures have helped to establish the trunk flexion pattern in arm reaching in healthy subjects, which could be useful for future objective assessment of trunk stability in patients with neurological affections.

摘要

躯干稳定性对于维持直立姿势和支持功能性运动至关重要。本研究旨在描述健康受试者坐位时手臂伸展任务中躯干前屈的肌肉活动和运动模式,并探讨躯干稳定性是否受到惊声刺激(SAS)的影响。为此,我们计算了 33 名健康志愿者在智能手机加速度计信号记录的躯干弯曲过程中 8 个躯干、颈部和肩部肌肉的肌电图(EMG)起始潜伏期和幅度参数,以及倾斜角度和运动特征。采用双因素重复测量方差分析来检验 SAS 和目标距离(15cm 与 30cm)的影响。结果发现,SAS 显著缩短了所有肌肉的反应时间和 EMG 起始潜伏期,而运动持续时间和肌肉募集模式没有变化。与 15cm 相比,30cm 时运动持续时间更长,倾斜角度更大,EMG 幅度更高。SAS 试验中的加速度计信号具有更高的频率内容,表明运动控制能力降低。提出的这些措施有助于确定健康受试者手臂伸展时的躯干前屈模式,这对于未来评估神经系统疾病患者的躯干稳定性具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b616/7940612/4761e06caba6/41598_2021_84789_Fig1_HTML.jpg

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