首页> 外文会议>Engineering in Medicine and Biology Society, 2001. Proceedings of the 23rd Annual International Conference of the IEEE >Cardiac interference in myographic signals from different respiratory muscles and levels of activity
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Cardiac interference in myographic signals from different respiratory muscles and levels of activity

机译:心脏对来自不同呼吸肌和活动水平的肌电信号的干扰

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An interesting approach to study pulmonary diseases is the analysis of the respiratory muscle activity by means of electromyographic (EMG) and vibromyographic (VMG) signals. However, both signals are contaminated by cardiac activity reflected in electrocardiographic and cardiac pulse signals, respectively. Adaptive filtering and Singular Value Decomposition techniques were applied to reduce cardiac interference (CI) in signals recorded from three respiratory muscles (genioglossus, sternomastoid and diaphragm) in 19 subjects breathing against progressively increased negative pressure. The parameter Interference Relation (IR) is presented and its reduction with filtering is highly correlated with signal to noise ratio. This correlation indicates that IR is a good index to evaluate the level of interference. The Cl is highest at low levels of ventilation when the respiratory muscles are less active. Furthermore, the level of interference depends on the selected muscle: the most affected muscle is the diaphragm, then sternomastoid, and finally genioglossus. This order is preserved for both EMG and VMG signals. That indicates similar level of CI for signals reflecting electrical and mechanical muscle activity. The reduction of CI by means of the presented filtering techniques is shown by the parameter IR especially in EMG signals.
机译:一种有趣的研究肺病的方法是通过电拍摄(EMG)和振动(VMG)信号分析呼吸肌活动。然而,两个信号都被心电图和心脏脉冲信号中反映的心脏活性污染。应用自适应滤波和奇异值分解技术以减少从三个呼吸肌(Genioglossus,Sternomastoid和隔膜)中的信号中的心脏干扰(CI)在19个受试者中呼吸逐渐增加的负压。提出了参数干扰关系(IR),并且其滤波的减少与信噪比高度相关。这种相关性表明IR是评估干扰水平的好索引。当呼吸肌较小的活性时,CL在低水平的通风中最高。此外,干扰水平取决于所选择的肌肉:最受影响的肌肉是隔膜,然后是胸骨孢子状,最后的Genioglossus。此订单保留了EMG和VMG信号。表示反映电气和机械肌肉活动的信号的类似水平的CI水平。借助于所提出的滤波技术,通过参数IR表示CI的减少,特别是在EMG信号中。

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