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正常麻醉猫第一心音频谱的研究:可能的起源及胸壁影响

A study of the first heart sound spectra in normal anesthetized cats: possible origins and chest wall influences.

作者信息

Fazzalari N L, Mazumdar J, Ghista D N, Allen D G, de Bruin H

出版信息

Can J Comp Med. 1984 Jan;48(1):30-4.

Abstract

Heart sound recordings were taken from cats. The heart sounds were recorded directly from the chest wall and through an esophageal tube. The phono transducer and the esophageal tube were both placed over the base of the heart. Ultrasound M-mode, or motion-mode, recordings were taken to study the mitral valve dynamics. After analogue to digital conversion, electrocardiogram gated first heart sounds of each phono record were analyzed by the fast Fourier transform to obtain a frequency spectrum. Relative energies in 15 Hz bandwidths up to 150 Hz were correlated with the mitral valve closing velocity of the anterior mitral leaflet, obtained from the M-mode echocardiograms. The closing velocity correlated best with the energy in the 30-45 Hz bandwidth and 60-75 Hz bandwidth for the externally and internally monitored phonocardiogram respectively. The chest wall acted as a low pass filter, that is, the wall favoured the transmission of low frequencies and the energy transmitted decreased as wall thickness increased.

摘要

心音记录取自猫。心音直接从胸壁和通过食管管进行记录。心音换能器和食管管都放置在心脏底部。进行超声M型(即运动模式)记录以研究二尖瓣动力学。经过模数转换后,通过快速傅里叶变换分析每个心音记录的心电图门控第一心音,以获得频谱。高达150Hz的15Hz带宽内的相对能量与从前M型超声心动图获得的二尖瓣前叶关闭速度相关。对于外部和内部监测的心音图,关闭速度分别与30 - 45Hz带宽和60 - 75Hz带宽内的能量相关性最佳。胸壁起到低通滤波器的作用,也就是说,胸壁有利于低频的传输,并且随着胸壁厚度增加,传输的能量会减少。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5554/1236001/0c1b81e1954b/compmed00005-0033-a.jpg

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