Kudriavtsev Vladimir, Polyshchuk Vladimir, Roy Douglas L
Biosignetics Corporation, Toronto, Canada.
Biomed Eng Online. 2007 May 4;6:16. doi: 10.1186/1475-925X-6-16.
A new method and application is proposed to characterize intensity and pitch of human heart sounds and murmurs. Using recorded heart sounds from the library of one of the authors, a visual map of heart sound energy was established. Both normal and abnormal heart sound recordings were studied. Representation is based on Wigner-Ville joint time-frequency transformations. The proposed methodology separates acoustic contributions of cardiac events simultaneously in pitch, time and energy. The resolution accuracy is superior to any other existing spectrogram method. The characteristic energy signature of the innocent heart murmur in a child with the S3 sound is presented. It allows clear detection of S1, S2 and S3 sounds, S2 split, systolic murmur, and intensity of these components. The original signal, heart sound power change with time, time-averaged frequency, energy density spectra and instantaneous variations of power and frequency/pitch with time, are presented. These data allow full quantitative characterization of heart sounds and murmurs. High accuracy in both time and pitch resolution is demonstrated. Resulting visual images have self-referencing quality, whereby individual features and their changes become immediately obvious.
提出了一种用于表征人类心音和杂音强度及音高的新方法及应用。利用其中一位作者库中记录的心音,建立了心音能量的可视化图谱。对正常和异常心音记录均进行了研究。表征基于维格纳-威利联合时频变换。所提出的方法能在音高、时间和能量方面同时分离心脏事件的声学贡献。分辨率精度优于任何其他现有的频谱图方法。给出了一名伴有S3音的儿童无害性心脏杂音的特征能量特征。它能清晰检测出S1、S2和S3音、S2分裂、收缩期杂音以及这些成分的强度。展示了原始信号、心音功率随时间的变化、时间平均频率、能量密度谱以及功率和频率/音高随时间的瞬时变化。这些数据能对心音和杂音进行全面的定量表征。在时间和音高分辨率方面均展示出高精度。所得的可视化图像具有自参照特性,借此个体特征及其变化能立即显现出来。