Longhini C, Portaluppi F, Arslan E, Pedrielli F
Jpn Heart J. 1979 May;20(3):333-9. doi: 10.1536/ihj.20.333.
The present study is focused on spectrum analysis as a useful method of processing the PCG in order to obtain the frequency spectral distribution of normal heart sounds. Thirty normal subjects aged from 17 to 34 were studied. PCG was recorded on the fourth intercostal space at the left sternal border using a sound level meter coupled with a standard 6 ml cavity. The microphone had a linear response from 0.2 to 8,000 Hz. The signal was filtered with the standard B network according to the ANSI specifications and was registered on a four track FM tape recorder. A four channel analyzer with a microprocessor for off-line elaborations was used with 10 KHz sampling frequency. The PCG signal was triggered by a QRS detector on the R wave of the simultaneously recorded ECG. Fast Fourier transform was performed employing either a four channel analyzer with a microprocessor, or an A/D converter with a computer. Finally the results of the analysis were statistically elaborated. The described procedures permit to obtain a direct and exact tracing of the acoustic features of the heart, thus representing an attempt to come closer to the standardization and automatic analysis of the phonocardiographic technique.
本研究聚焦于频谱分析,这是一种处理心音图(PCG)以获取正常心音频谱分布的有用方法。研究了30名年龄在17至34岁之间的正常受试者。使用与标准6毫升腔室耦合的声级计,在左胸骨旁第四肋间记录心音图。麦克风在0.2至8000赫兹范围内具有线性响应。信号根据美国国家标准学会(ANSI)规范用标准B网络进行滤波,并记录在四轨调频磁带录音机上。使用具有微处理器的四通道分析仪以10千赫兹的采样频率进行离线处理。心音图信号由同时记录的心电图的R波上的QRS检测器触发。采用具有微处理器的四通道分析仪或带计算机的模数转换器进行快速傅里叶变换。最后对分析结果进行统计学处理。所描述的程序能够直接、准确地描绘心脏的声学特征,从而代表了一种更接近心音图技术标准化和自动分析的尝试。