Sovijärvi A R, Helistö P, Malmberg L P, Kallio K, Paajanen E, Saarinen A, Lipponen P, Haltsonen S, Pekkanen L, Piirilä P, Näveri L, Katila T
Laboratory of Clinical Physiology, Helsinki University Central Hospital, Finland.
Technol Health Care. 1998 Jun;6(1):11-22.
A versatile PC-based lung sound analyzer has been developed for short-term recording and analysis of respiratory sounds in research and clinical applications. The system consists of two sound sensors, a flow sensor, a filtering signal amplifier and a PC with a data acquisition card and software for measurement and analysis of the sounds. The analyses include phonopneumography, time expanded waveform analysis, spectral analysis with time averaged Fast Fourier Transform, frequency analysis in time domain (sonogram), and automatic detection and waveform analysis of crackles. Short-term repeatability of spectral parameters of tracheal and lung sounds was studied in 10 healthy subjects. The coefficients of variation (CoV) of the averaged quartile frequencies (F25, F50 and F75) of lung sounds during flow-controlled tidal breathing were 3.7, 4.0 and 8.9% in expiration and 2.7, 3.5 and 4.5% in inspiration, respectively. CoVs of the averaged F25, F50 and F75 of expiratory tracheal sounds were 6.9, 3.0 and 2.4%, and those of inspiratory tracheal sounds 6.3, 2.6 and 3.3%, respectively. Examples of lung sound analysis of samples containing adventitious sounds such as crackles and wheezes are presented. The results indicate that the median frequency has the best repeatability of quartile frequencies of breath sounds and they suggest that the variations of those parameters are low enough for diagnostic purposes. The results also suggest that the analyzer can be a useful new tool for pulmonary research in the fields of physiological and clinical short-term studies of respiratory sounds.
已开发出一种多功能的基于个人电脑的肺音分析仪,用于在研究和临床应用中对呼吸音进行短期记录和分析。该系统由两个声音传感器、一个流量传感器、一个滤波信号放大器以及一台配有数据采集卡和用于声音测量与分析软件的个人电脑组成。分析内容包括呼吸音图、时间扩展波形分析、带时间平均快速傅里叶变换的频谱分析、时域频率分析(声谱图)以及爆裂音的自动检测和波形分析。对10名健康受试者的气管音和肺音频谱参数的短期重复性进行了研究。在流量控制的潮气呼吸过程中,肺音平均四分位数频率(F25、F50和F75)的变异系数(CoV)在呼气时分别为3.7%、4.0%和8.9%,在吸气时分别为2.7%、3.5%和4.5%。呼气气管音平均F25、F50和F75的CoV分别为6.9%、3.0%和2.4%,吸气气管音的CoV分别为6.3%、2.6%和3.3%。给出了包含如爆裂音和哮鸣音等附加音样本的肺音分析示例。结果表明,中位数频率在呼吸音四分位数频率中具有最佳的重复性,并且这些参数的变化足够低,可用于诊断目的。结果还表明,该分析仪对于呼吸音生理和临床短期研究领域的肺部研究可能是一种有用的新工具。