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在绵羊模型中对双叶人工心脏瓣膜关闭声音的声学分析。

Acoustic analysis of the closing sounds of bileaflet prosthetic valves in a sheep model.

作者信息

Donnerstein R L, Scott W A, Vasu A, Copeland J G

机构信息

Department of Pediatrics, University of Arizona, Health Sciences Center, Tucson 85724.

出版信息

J Thorac Cardiovasc Surg. 1991 Jun;101(6):1060-8.

PMID:2038199
Abstract

Previous investigations of mechanical valve sounds have shown that (1) frequency spectra of sounds produced by abnormal valves differ from those of properly functioning valves and (2) leaflets of normally functioning bileaflet valves do not close synchronously. This investigation studied effects of mechanical valve size, environment, and hemodynamic state on closing sounds. A single 25 mm bileaflet mitral mechanical valve was implanted in six sheep and a single 27 mm valve in four sheep. With digital signal processing, asynchronous leaflet closure and frequency spectra were assessed after alterations in animal position, respiratory phase, heart rate, afterload, contractility, and preload. Both asynchronous leaflet closure and frequency spectra varied among animals, and, except for a decrease in asynchrony with increasing contractility, were largely independent of valve size and hemodynamics. Baseline asynchrony ranged from 0.5 to 4.2 msec. Frequency spectra were characterized by the first three resonant peaks. Lowest resonant peaks ranged from 2.5 to 3.4 kHz, middle from 4.7 to 6.8 kHz, and highest from 7.2 to 9.6 kHz. These results indicate that accurate assessment of mechanical valve function with acoustic analysis requires baseline studies in all patients by means of a system with a frequency response of more than 10 kHz.

摘要

先前对机械瓣膜声音的研究表明

(1)异常瓣膜产生的声音频谱与功能正常的瓣膜不同;(2)功能正常的双叶瓣膜小叶不会同步关闭。本研究探讨了机械瓣膜尺寸、环境和血流动力学状态对关闭声音的影响。给6只绵羊植入了一个25mm的双叶二尖瓣机械瓣膜,给4只绵羊植入了一个27mm的瓣膜。通过数字信号处理,在改变动物体位、呼吸相位、心率、后负荷、收缩力和前负荷后,评估小叶关闭不同步情况和频谱。小叶关闭不同步情况和频谱在不同动物之间存在差异,除了随着收缩力增加不同步性降低外,在很大程度上与瓣膜尺寸和血流动力学无关。基线不同步范围为0.5至4.2毫秒。频谱由前三个共振峰表征。最低共振峰范围为2.5至3.4kHz,中间为4.7至6.8kHz,最高为7.2至9.6kHz。这些结果表明,通过声学分析准确评估机械瓣膜功能需要借助频率响应超过10kHz的系统对所有患者进行基线研究。

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