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弗兰克-斯塔林机制的几何和肌肉生理因素。

Geometric and muscle physiological factors of the Frank-Starling mechanisms.

作者信息

Jacob R, Dierberger B, Gülch R W, Kissling G

机构信息

Physiologisches Institut II, Universität Tübingen, FRG.

出版信息

Basic Res Cardiol. 1993 Jan-Feb;88(1):86-91. doi: 10.1007/BF00788534.

Abstract

The relation between left-ventricular stroke volume (SV) and end-diastolic volume (EDV) was determined based on angiocardiographic measurements in 10 open-chest minipigs under varying filling conditions (blood letting or infusions). The results were compared with a theoretical relation calculated under the assumption of varying EDV but constancy of myocardial properties. In contrast to the linear increase of SV as a function of EDV as found in the animal experiments, the calculated curve reveals a maximum near the normal operating point with a decrease in the range of higher EDV. It can be concluded that the well-known increase of SV with increasing ventricular filling, beyond the normal EDV, is almost completely due to muscle physiological factors (mainly increase in Ca2+ sensitivity of the contractile apparatus), whereas the decrease of SV in the range of low filling pressure is mainly due to the geometrical conditions.

摘要

基于对10只开胸小型猪在不同充盈条件下(放血或输液)的心血管造影测量,确定了左心室每搏输出量(SV)与舒张末期容积(EDV)之间的关系。将结果与在舒张末期容积变化但心肌特性恒定的假设下计算出的理论关系进行了比较。与动物实验中发现的每搏输出量随舒张末期容积呈线性增加不同,计算出的曲线在正常工作点附近显示出最大值,在舒张末期容积较高的范围内则下降。可以得出结论,在正常舒张末期容积以上,随着心室充盈增加而众所周知的每搏输出量增加几乎完全归因于肌肉生理因素(主要是收缩装置对Ca2+敏感性的增加),而在低充盈压力范围内每搏输出量的减少主要归因于几何条件。

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