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Enhanced Frame-Similarity Technique for Detection of Respiratory and Cardiac Rhythms in Auscultation Records

机译:增强的帧相似度技术,用于检测听诊记录中的呼吸和心脏节律

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An enhanced algorithm for recognizing the rhythms associated with cardiac and respiratory activity in auscultation signals has been developed on the basis of previously proposed approaches. The essence of this technique is to evaluate the energy similarity of fragments of the original record at their superposition with a progressive time shift. To estimate the time evolution of signal frequency content, the Short-Time Fourier Transform is applied to records obtained by the developed portable one-channel digital auscultation complex. The free terms of the linear regression model for “instant” amplitude-frequency spectrum calculated in four information-significant octaves with central frequencies of 63, 125, 250, and 500 Hz are chosen for a measure of acoustic energy variation. The procedure of averaging of initial sample at one-second time intervals is used to segregate the cardiac and respiration periodicity into “fast” and “slow” channels. It is shown that search for minimums of the introduced distances depicting the similarity of compared fragments provides a reliable tool for detecting of life activity rhythms contained in the auscultation signal.
机译:在先前提出的方法的基础上,已经开发出一种增强的算法,用于识别听诊信号中与心脏和呼吸活动有关的节律。该技术的本质是用渐进的时移评估原始记录片段在叠加时的能量相似性。为了估计信号频率内容的时间演变,将短时傅立叶变换应用于由开发的便携式单通道数字听诊复合体获得的记录。选择以中心频率为63、125、250和500 Hz的四个信息有效八度音阶计算的“瞬时”幅度频谱的线性回归模型的自由项,以测量声能变化。以一秒钟的时间间隔对初始样本求平均值的过程用于将心脏和呼吸周期性分为“快”和“慢”通道。结果表明,搜索引入距离的最小值以描述所比较片段的相似性,这为检测听诊信号中所包含的生命活动节奏提供了可靠的工具。

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