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首页> 外文期刊>Gait & posture >Iliocapsularis: Technical application of fine-wire electromyography, and direction specific action during maximum voluntary isometric contractions
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Iliocapsularis: Technical application of fine-wire electromyography, and direction specific action during maximum voluntary isometric contractions

机译:Iliocapsularis:细线肌电图的技术应用,以及最大自愿等距收缩期间的方向特定动作

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The iliocapsularis muscle of the anterior hip may play an important role in hip function, but no electromyographic (EMG) recordings have been made. This muscle provides the most substantial muscular attachment to the anterior hip capsule and is hypothesised to have a dynamic role to limit capsular impingement and to augment joint stability. Current understanding of the function of iliocapsularis is based on limited cadaveric and radiographic studies. Located deep over the hip joint it would require intramuscular fine-wire EMG to evaluate its activity directly with limited cross-talk from overlying muscles. The primary aim of this study was to describe a new technique for insertion of intramuscular EMG electrodes into iliocapsularis and to report its activation during different directions of hip maximum voluntary isometric contraction (MVIC). Fifteen healthy volunteers (10 M, mean age (SD) 22 (2) years) who were free from hip pain were recruited for electrode insertion and to perform MVIC's in six directions at 0 degrees and three directions at 90 degrees of hip flexion. Intramuscular electrodes were successfully inserted into the iliocapsularis muscle with guidance from real-time ultrasound imaging. The greatest muscle activity occurred during resisted hip flexion at 90 degrees (Median (IQR); 100.0 (1.2) % MVIC) and lowest activity during hip extension, 0 degrees (0.5 (0.3) % MVIC). These findings have implications for our understanding of iliocapsularis' functional role. This paper provides the first report of intramuscular electrode insertion into iliocapsularis with guided technical instructions for future EMG investigations in other populations and tasks. Crown Copyright (C) 2017 Published by Elsevier B.V. All rights reserved.
机译:前髋髋的Iliocapsularis肌肉可能在髋关节功能中发挥重要作用,但是没有进行电偏振(EMG)记录。这种肌肉为前髋壳提供最大的肌肉附着,并假设具有动态作用,以限制囊状撞击并增加关节稳定性。目前对Iliocapsularis功能的理解是基于有限的尸体和射线照相研究。位于髋关节的深度,它需要肌肉内细线EMG,从过度肌肉中直接评估其活动。本研究的主要目的是描述一种将肌内EMG电极插入ILICapsularis的新技术,并在髋关节最大自愿等距收缩(MVIC)的不同方向上报告其激活。十五是健康的志愿者(10米,平均年龄(SD)22(2)年)被招募了髋关节疼痛的电极插入,并在0度和三个方向上以90度的髋部屈曲执行MVIC的六个方向。肌内电极成功插入Iliocapsularis肌肉中,具有实时超声成像的指导。在抗髋部屈曲期间发生最大的肌肉活性在90度(中位数(IQR); 100.0(1.2)%MVIC)和髋部延伸期间的最低活动,0度(0.5(0.5(0.5(0.3)%的MVIC)。这些发现对我们对Iliocapsularis的功能作用的理解有影响。本文提供了肌肉内电极插入ILICapsularis的第一个报告,在其他人口和任务中的未来EMG调查中的引导技术说明。皇冠版权(c)2017由elsevier b.v出版。保留所有权利。

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