首页> 外文OA文献 >A NOVEL SYSTEM OF ELECTRODES TRANSPARENT TO ULTRASOUND FOR SIMULTANEOUS DETECTION OF MYOELECTRIC ACTIVITY AND B-MODE ULTRASOUND IMAGES OF SKELETAL MUSCLES
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A NOVEL SYSTEM OF ELECTRODES TRANSPARENT TO ULTRASOUND FOR SIMULTANEOUS DETECTION OF MYOELECTRIC ACTIVITY AND B-MODE ULTRASOUND IMAGES OF SKELETAL MUSCLES

机译:同时检测骨骼肌肌电活动和B型超声图像的新型透明电极

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摘要

Application of two dimensional surface electrode arrays can provide a means of mapping motor unit action potentials on the skin surface above a muscle. The resulting muscle tissue displacement can be quantified, in a single plane, using ultrasound imaging (US). Currently however, it is not possible to simultaneously map spatio-temporal propagation of activation and resulting tissue strain. In this manuscript we eveloped and tested a material that will enable concurrent measurement of 2D surface EMGs with US images. Specific protocols were designed to test the compatibility of this new electrode material both with EMG recording and with US analysis. Key results indicate that, for this new electrode material: i) the electrode-skin impedance is similar to that of arrays of electrodes reported in literature; ii) the reflection of ultrasound at the electrode-skin interface is negligible; iii) the likelihood of observing missing contacts, short-circuits and artefacts in EMGs is not affected by the US probe; iv) movement of tissues sampled by US can be tracked accurately. We therefore conclude this approach will facilitate multi-modal imaging of muscle to provide new spatio-temporal information regarding electromechanical function of muscle. This is relevant to basic physiology-biomechanics of active and passive force transmission through and between muscle, of motor unit spatio-temporal activity patterns, of their variation with architecture and task related function, and of their adaptation with ageing, training-exercise-disuse, neurological disease and injury
机译:二维表面电极阵列的应用可以提供一种在肌肉上方的皮肤表面上绘制运动单元动作电位的方法。可以使用超声成像(US)在单个平面上量化由此产生的肌肉组织位移。然而,目前不可能同时绘制激活的时空传播和由此产生的组织应变。在本手稿中,我们开发并测试了一种材料,该材料将能够同时测量2D表面EMG和US图像。设计了特定的协议来测试这种新型电极材料与EMG记录和US分析的兼容性。关键结果表明,对于这种新型电极材料:i)电极-皮肤阻抗与文献报道的电极阵列相似; ii)超声在电极-皮肤界面的反射可忽略不计; iii)观察到的EMG中缺少的触点,短路和伪影的可能性不受US探针的影响; iv)可以精确跟踪US采样的组织的运动。因此,我们得出结论,这种方法将有助于肌肉的多模态成像,以提供有关肌肉机电功能的新时空信息。这与通过肌肉和在肌肉之间传递主动和被动力的基本生理学-生物力学,运动单位的时空活动模式,与结构和任务相关功能的变化以及与衰老,训练-锻炼-使用的适应有关。 ,神经疾病和损伤

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