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Detecting Bioelectric Muscle Activity Corrupted by Superimposed Magnetic Resonance Field

机译:检测叠加磁共振场损坏的生物电肌肉活动

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Most of clinical measurements base their functionality on bioelectromagnetism, in particular in the measurements of the electric or magnetic signals produced by the activity of living tissues. The surface Electromyography (sEMG) analysis is able to reveal the electric field generated by each muscle activity, whereas the Magnetic Resonance Imaging (MRI) allows to obtain some images of the human body with very high resolutions, interpreting a magnetic field emitted after stimulation. The joint measurement is a very difficult task because of the high electromagnetic interference between the resonance coils (very high magnetic fields) and the EMG electrodes, that makes unrevealed the sEMG signal. In this paper we present a method to reveal sEMG signal in voluntary contractions when the measurement is made in a MRI environment.
机译:大多数临床测量基于生物电磁的功能基础,特别是在通过活组织活性产生的电气或磁信号的测量中。表面肌电图(SEMG)分析能够揭示由每个肌肉活动产生的电场,而磁共振成像(MRI)允许以非常高的分辨率获得人体的一些图像,以非常高的分辨率来解释刺激后发射的磁场。由于谐振线圈(非常高磁场)和EMG电极之间的高电磁干扰,接合测量是一个非常困难的任务,这使得SEMG信号越来越多。在本文中,当在MRI环境中进行测量时,我们提出了一种在自愿收缩中揭示SEMG信号的方法。

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