首页> 外文期刊>Journal of electromyography and kinesiology: Official journal of the International Society of Electrophysiological Kinesiology >EMG gait data from indwelling electrodes is attenuated over time and changes independent of any experimental effect
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EMG gait data from indwelling electrodes is attenuated over time and changes independent of any experimental effect

机译:来自留置电极的EMG步态数据随着时间的推移衰减,并且与任何实验效果无关的变化

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摘要

The effect of time on the validity of electromyography (EMG) signals from indwelling fine-wire electrodes has not been explored. This is important because experiments using intramuscular electrodes are often long and biochemical and mechanical factors, may impair measurement accuracy over time. Measures over extended periods might therefore be erroneous. Twelve healthy participants (age = 33 +/- 8 years) walked for 50 min at a controlled speed. Fine-wire electrodes were inserted into tibialis anterior and a surface EMG sensor attached near the fine-wire insertion site. EMG signals progressively and significantly decreased with time with the fine-wire electrode, but not the surface electrode. For the fine-wire electrode, after 25 min mean amplitude had reduced by 11% (p < 0.001) and after 50 min by 16% (p < 0.001), and peak amplitude reduced 22% at 20 min (p = 0.006) and 37% at 50 min (p < 0.001). Reduced amplitude with indwelling EMG without concurrent changes in surface EMG signal suggests an important inconsistency in data from fine-wire EMG electrodes. Changes in EMG signal will occur over time independent of the experimental condition and this questions their use in experiments of more than 30 min. These results should impact on experimental study design. They also invite reinterpretation of prior literature and sensor innovation to improve measurement performance.
机译:尚未探索时间对电拍摄电极的肌电图(EMG)信号的有效性的影响。这很重要,因为使用肌内电极的实验通常是长期的,生化和机械因子可能会随着时间的推移而损害测量精度。因此,延长期间的措施可能是错误的。十二名健康参与者(年龄= 33 +/- 8年)以受控速度走了50分钟。将细线电极插入到胫骨前侧和附近的细线插入部位附近的表面EMG传感器。 EMG信号随时间逐渐和显着降低,但没有细线电极,但不是表面电极。对于细线电极,在25分钟后,平均振幅减少11%(P <0.001),50分钟后(P <0.001),峰值幅度在20分钟时减少22%(P = 0.006)和50分钟的37%(p <0.001)。使用表面EMG信号的不同时变化的indwelling emg的振幅降低,表明来自细线EMG电极的数据中的重要不一致。 EMG信号的变化将随时间发生,独立于实验条件,并在30分钟的实验中使用它们的使用。这些结果应对实验研究设计产生影响。他们还邀请了对现有文学和传感器创新的重新诠释,以提高测量性能。

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