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Left–Right Asymmetry in Spectral Characteristics of Lung Sounds Detected Using a Dual-Channel Auscultation System in Healthy Young Adults

机译:使用双通道听诊系统检测的健康年轻人中肺部声音频谱特征的左右不对称性

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摘要

Though lung sounds auscultation is important for the diagnosis and monitoring of lung diseases, the spectral characteristics of lung sounds have not been fully understood. This study compared the spectral characteristics of lung sounds between the right and left lungs and between healthy male and female subjects using a dual-channel auscultation system. Forty-two subjects aged 18–22 years without smoking habits and any known pulmonary diseases participated in this study. The lung sounds were recorded from seven pairs of auscultation sites on the chest wall simultaneously. We found that in four out of seven auscultation pairs, the lung sounds from the left lung had a higher total power (PT) than those from the right lung. The PT of male subjects was higher than that of female ones in most auscultation pairs. The ratio of inspiration power to expiration power (RI/E) of lung sounds from the right lung was greater than that from the left lung at auscultation pairs on the anterior chest wall, while this phenomenon was reversed at auscultation pairs on the posterior chest wall in combined subjects, and similarly in both male and female subjects. Though the frequency corresponding to maximum power density of lung sounds (FMPD) from the left and right lungs was not significantly different, the frequency that equally divided the power spectrum of lung sounds (F50) from the left lung was significantly smaller than that from the right lung at auscultation site on the anterior and lateral chest walls, while it was significantly larger than that of from the right lung at auscultation site on the posterior chest walls. In conclusion, significant differences in the PT, FMPD, F50, and RI/E between the left and right lungs at some auscultation pairs were observed by using a dual-channel auscultation system in this study. Structural differences between the left and the right lungs, between the female and male subjects, and between anterior and posterior lungs might account for the observed differences in the spectral characteristics of lung sounds. The dual-channel auscultation system might be useful for future development of digital stethoscopes and power spectral analysis of lung sounds in patients with various kinds of cardiopulmonary diseases.
机译:尽管肺部听诊对于肺部疾病的诊断和监测很重要,但对肺部声音的频谱特性尚未完全了解。这项研究使用双通道听诊系统比较了左右肺之间以及健康男性和女性受试者之间的肺音频谱特征。参加这项研究的42位年龄在18-22岁之间,无吸烟习惯和任何已知的肺部疾病的受试者参加了这项研究。同时从胸壁上的七对听诊部位记录肺音。我们发现,在七个听诊对中的四个中,左肺的肺音总功率(PT)比右肺的音高。在大多数听诊对中,男性受试者的PT高于女性受试者。在前胸壁听诊对时,右肺的肺吸气吸气力与呼气强度(RI / E)的比大于在左肺吸气的呼出力(RI / E),而在后胸壁听诊对中,这种现象被逆转在综合科目中,男女相似。尽管对应于左右肺的最大肺音功率密度(FMPD)的频率没有显着差异,但均分来自左肺的肺音功率谱(F50)的频率明显小于来自左肺的肺音功率谱。前胸壁和外侧胸壁听诊位的右肺显着大于后胸壁听诊部位的右肺。总之,通过使用双通道听诊系统,在某些听诊对中,左右肺之间的PT,FMPD,F50和RI / E有显着差异。左,右肺之间,女性和男性受试者之间以及前,后肺之间的结构差异可能是观察到的肺音频谱特征差异的原因。双通道听诊系统可能对未来数字听诊器的开发以及各种心肺疾病患者的肺声功率谱分析有用。

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