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小动物的左心室机械能量学

Left ventricular mechanoenergetics in small animals.

作者信息

Takaki M

机构信息

Department of Physiology II, Nara Medical University, Kashihara, Nara, 634-8521 Japan.

出版信息

Jpn J Physiol. 2004 Jun;54(3):175-207. doi: 10.2170/jjphysiol.54.175.

DOI:10.2170/jjphysiol.54.175
PMID:15541198
Abstract

Studies on left ventricular mechanical work and energetics in rat and mouse hearts are reviewed. First, left ventricular linear end-systolic pressure-volume relation (ESPVR) and curved end-diastolic pressure-volume relation (EDPVR) in canine hearts and left ventricular curved ESPVR and curved EDPVR in rat hearts are reviewed. Second, as an index for total mechanical energy per beat in rat hearts as in canine hearts, a systolic pressure-volume area (PVA) is proposed. By the use of our original system for measuring continuous oxygen consumption for rat left ventricular mechanical work, the linear left ventricular myocardial oxygen consumption per beat (VO2)-PVA relation is obtained as in canine hearts. The slope of VO2-PVA relation (oxygen cost of PVA) indicates a ratio of chemomechanical energy transduction. VO2 intercept (PVA-independent VO2) indicates the summation of oxygen consumption for Ca2+ handling in excitation-contraction coupling and for basal metabolism. An equivalent maximal elastance (eEmax) is proposed as a new left ventricular contractility index based on PVA at the midrange left ventricular volume. The slope of the linear relation between PVA-independent VO2 and eEmax (oxygen cost of eEmax) indicates changes in oxygen consumption for Ca2+ handling in excitation-contraction coupling per unit changes in left ventricular contractility. The key framework of VO2-PVA-eEmax can give us a better understanding for the biology and mechanisms of physiological and various failing rat heart models in terms of mechanical work and energetics.

摘要

本文综述了大鼠和小鼠心脏左心室机械功和能量学的研究。首先,回顾了犬心脏的左心室线性收缩末期压力-容积关系(ESPVR)和曲线舒张末期压力-容积关系(EDPVR),以及大鼠心脏的左心室曲线ESPVR和曲线EDPVR。其次,如同在犬心脏中一样,提出了收缩压-容积面积(PVA)作为大鼠心脏每搏总机械能的指标。通过使用我们原创的用于测量大鼠左心室机械功连续耗氧量的系统,得到了与犬心脏中类似的左心室每搏线性心肌耗氧量(VO2)-PVA关系。VO2-PVA关系的斜率(PVA的氧耗)表示化学机械能转换的比率。VO2截距(与PVA无关的VO2)表示兴奋-收缩偶联中Ca2+处理和基础代谢的耗氧量总和。提出了等效最大弹性(eEmax)作为基于左心室中等容积时PVA的新的左心室收缩性指标。与PVA无关的VO2和eEmax之间线性关系的斜率(eEmax的氧耗)表示左心室收缩性每单位变化时兴奋-收缩偶联中Ca2+处理的耗氧量变化。VO2-PVA-eEmax的关键框架能够让我们从机械功和能量学方面更好地理解正常生理状态及各种衰竭大鼠心脏模型的生物学特性和机制。

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