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QT间期时长与心率的函数关系:基于物理原理的推导及与测量值的比较。

The duration of the QT interval as a function of heart rate: a derivation based on physical principles and a comparison to measured values.

作者信息

Kovács S J

出版信息

Am Heart J. 1985 Oct;110(4):872-8. doi: 10.1016/0002-8703(85)90472-7.

DOI:10.1016/0002-8703(85)90472-7
PMID:3901717
Abstract

Several quantitatively and qualitatively disparate formulas for the duration of electrical systole (the QT interval) as a function of the R-R interval are reviewed. These are compared by the use of dimensional analysis, which permits rectification of previously published algebraic and dimensional inconsistencies. With one exception, prior developments of formulas have been empiric in nature, with results therefore not based on or necessarily mathematically consistent with basic physical or biologic principles. In order to resolve ambiguity and determine which (if any) of the many proposed formulas is consistent with elementary principles, we began with physical principles as they relate to the results of experiments and derived a mathematical expression for the QT interval as a function of the R-R interval. By making use of equations for the conservation of energy for the heart as a pump and the first law of thermodynamics, a formula of the form QT alpha K'1 + K'2/R-R was derived. This derivation, stemming from first principles and founded on experimental data, does not quantitatively specify the additive (K'1) or multiplicative constant (K'2), but constrains the algebraic relationship of QT as a function of R-R. The formula is comprised of the sum of two terms, a HR (R-R) independent additive constant (K'1) and a term alpha (R-R)-1. The derivation resolves previous qualitative disparaties in proposed formulas and yields a finite limit for QT in the limit of large R-R intervals.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

本文回顾了几种将心脏电收缩期时长(QT间期)表示为R-R间期函数的公式,这些公式在定量和定性方面存在差异。通过量纲分析对这些公式进行比较,纠正了先前发表的代数和量纲不一致的问题。除了一个例外,先前公式的推导本质上都是经验性的,因此其结果并非基于基本物理或生物学原理,也不一定在数学上与之相符。为了解决歧义并确定众多提议公式中哪一个(如果有的话)与基本原理一致,我们从与实验结果相关的物理原理出发,推导出了一个将QT间期表示为R-R间期函数的数学表达式。利用心脏作为泵的能量守恒方程和热力学第一定律,推导出了QT α K'1 + K'2/R-R形式的公式。这一推导源于第一原理并基于实验数据,虽然没有定量指定相加常数(K'1)或相乘常数(K'2),但限定了QT与R-R之间的代数关系。该公式由两项之和组成:一个与心率(R-R)无关的相加常数(K'1)和一项α(R-R)-1。这一推导解决了先前提议公式中的定性差异,并在大R-R间期极限情况下得出了QT的有限极限。(摘要截选至250字)

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