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A Novel Method for Measuring the Timing of Heart Sound Components through Digital Phonocardiography

机译:一种通过数字心动图测量心音成分时间的新方法

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摘要

The auscultation of heart sounds has been for decades a fundamental diagnostic tool in clinical practice. Higher effectiveness can be achieved by recording the corresponding biomedical signal, namely the phonocardiographic signal, and processing it by means of traditional signal processing techniques. An unavoidable processing step is the heart sound segmentation, which is still a challenging task from a technical viewpoint—a limitation of state-of-the-art approaches is the unavailability of trustworthy techniques for the detection of heart sound components. The aim of this work is to design a reliable algorithm for the identification and the classification of heart sounds’ main components. The proposed methodology was tested on a sample population of 24 healthy subjects over 10-min-long simultaneous electrocardiographic and phonocardiographic recordings and it was found capable of correctly detecting and classifying an average of 99.2% of the heart sounds along with their components. Moreover, the delay of each component with respect to the corresponding R-wave peak and the delay among the components of the same heart sound were computed: the resulting experimental values are coherent with what is expected from the literature and what was obtained by other studies.
机译:心音听诊数十年来一直是临床实践中的基本诊断工具。通过记录相应的生物医学信号(即心电图信号)并通过传统信号处理技术对其进行处理,可以实现更高的有效性。心音分割是不可避免的处理步骤,从技术角度来看,这仍然是一项艰巨的任务-现有技术的局限性在于无法使用可信赖的技术来检测心音成分。这项工作的目的是设计一种可靠的算法,用于心音主要成分的识别和分类。这项提议的方法在24名健康受试者的样本人群中进行了10分钟以上的同时心电图和心电图记录测试,结果发现该方法能够正确检测和分类平均99.2%的心音及其成分。此外,计算了每个分量相对于相应的R波峰的延迟以及相同心音的各个分量之间的延迟:所得的实验值与文献中预期的结果以及通过其他研究获得的结果一致。

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