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Time-frequency representations of the sternocleidomastoid muscle electromyographic signal recorded with concentric ring electrodes

机译:同心环电极记录的胸锁乳突肌肌电信号的时频表示

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The use of non-invasive methods for the study of respiratory muscle signals can provide clinical information for the evaluation of the respiratory muscle function. The aim of this study was to evaluate time-frequency characteristics of the electrical activity of the sternocleidomastoid muscle recorded superficially by means of concentric ring electrodes (CREs) in a bipolar configuration. The CREs enhance the spatial resolution, attenuate interferences, as the cardiac activity, and also simplify the orientation problem associated to the electrode location. Five healthy subjects underwent a respiratory load test in which an inspiratory load was imposed during the inspiratory phase. During the test, the electromyographic signal of the sternocleidomastoid muscle (EMGsc) and the inspiratory mouth pressure (Pmouth) were acquired. Time-frequency characteristics of the EMGsc signal were analyzed by means of eight time-frequency representations (TFRs): the spectrogram (SPEC), the Morlet scalogram (SCAL), the Wigner-Ville distribution (WVD), the Choi-Williams distribution (CHWD), two generalized exponential distributions (GED1 and GED2), the Born-Jordan distribution (BJD) and the Cone-Kernel distribution (CKD). The instantaneous central frequency of the EMGsc showed an increasing behavior during the inspiratory cycle and with the increase of the inspiratory load. The bilinear TFRs (WVD, CHWD, GEDs and BJD) were less sensitive to cardiac activity interference than classical TFRs (SPEC and SCAL). The GED2 was the TFR that shown the best results for the characterization of the instantaneous central frequency of the EMGsc.
机译:使用非侵入性方法研究呼吸肌信号可以为评估呼吸肌功能提供临床信息。这项研究的目的是评估通过双极配置的同心环电极(CRE)在表面上记录的胸锁乳突肌的电活动的时频特性。 CRE增强了空间分辨率,减轻了心脏活动等干扰,并简化了与电极位置相关的定向问题。五名健康​​受试者进行了呼吸负荷测试,在吸气阶段施加了吸气负荷。在测试过程中,获取了胸锁乳突肌(EMGsc)的肌电信号和吸气口压力(Pmouth)。通过八种时频表示(TFR)来分析EMGsc信号的时频特性:频谱图(SPEC),莫雷特刻度图(SCAL),维格纳-维尔分布(WVD),Choi-Williams分布( CHWD),两个广义指数分布(GED1和GED2),Born-Jordan分布(BJD)和圆锥核分布(CKD)。 EMGsc的瞬时中心频率在吸气周期中表现出增加的行为,并且随着吸气负荷的增加而增加。双线性TFR(WVD,CHWD,GED和BJD)对心脏活动干扰的敏感性低于经典TFR(SPEC和SCAL)。 GED2是TFR,在表征EMGsc的瞬时中心频率方面表现出最好的结果。

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