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第三心音随年龄增长生理性消失的机制。

The mechanism of the physiologic disappearance of the third heart sound with aging.

作者信息

Longhini C, Scorzoni D, Baracca E, Brunazzi M C, Chirillo F, Fratti D, Musacci G F

机构信息

Istituti di Medicina Interna I, Università di Ferrara, Italy.

出版信息

Jpn Heart J. 1996 Mar;37(2):215-26. doi: 10.1536/ihj.37.215.

Abstract

The third heart sound (S3) is often present in children and adolescents but is not present in most adults. Applying at the left ventricle a mathematical model, the mechanism of the disappearance of S3 was studied employing the frequency analysis of the sound and echocardiographic data. The existence of a significant correlation between the spectrum energy of S3 and the diameter and thickness of the left ventricle at the moment of S3 in 25 healthy subjects (aged 21 +/- 7 years) allowed us to interpret the origin of S3 based on a viscoelastic oscillating system. Once the left ventricle starts vibrating it behaves as a simple physical model composed of a mass (m), a spring (k) and a viscous element. The abrupt deceleration of the blood mass (m) against the left ventricular walls (k) triggers the vibration of the system according to the equation Fd = 1/2 pi.square root of k/m.square root of 1 - zeta 2, where Fd is the natural damped frequency and zeta is the damping factor. The equation shows that the vibrating system can oscillate only if zeta is < 1. During the growth of the individual the increased myocardial mass may lead to augmented viscous forces causing a gradual increase in zeta until the system becomes overdamped and consequently unable to vibrate causing the disappearance of S3.

摘要

第三心音(S3)常见于儿童和青少年,但在大多数成年人中不存在。应用左心室数学模型,通过对心音和超声心动图数据进行频率分析,研究了S3消失的机制。在25名健康受试者(年龄21±7岁)中,S3频谱能量与S3出现时左心室直径和厚度之间存在显著相关性,这使我们能够基于粘弹性振荡系统来解释S3的起源。一旦左心室开始振动,它就表现为一个由质量(m)、弹簧(k)和粘性元件组成的简单物理模型。血质(m)对左心室壁(k)的突然减速,根据方程Fd = 1/2π√(k/m)√(1 - ζ²)触发系统振动,其中Fd是自然阻尼频率,ζ是阻尼因子。该方程表明,只有当ζ < 1时,振动系统才能振荡。在个体生长过程中,心肌质量增加可能导致粘性力增大,使ζ逐渐增加,直到系统变为过阻尼,从而无法振动,导致S3消失。

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