Weber K T, Janicki J S, Hefner L L
Am J Physiol. 1976 Aug;231(2):337-43. doi: 10.1152/ajplegacy.1976.231.2.337.
To determine the interrelationships between ejecting and isovolumic force-length relations and the extent to which the left ventricle will shorten, data obtained in 27 isolated, servo-regulated hearts were examined. For each heart a series of contractions, variably loaded (delta L) were derived for a thickwalled sphere and normalized by the cross-sectional area of muscle and length at zero end-diastolic pressure. It was found that within the physiological range examined total and active force were essentially a linear function of initial L with respective increments or reductions in slope produced by positive or negative shifts in contractile state. The force-L relations obtained isovolumically and at end ejection were virtually identical. For a given ejection pressure, end-systolic L was constant, despite variations in filling and therefore independent of initial L and deltaL; moreover, the L to which the ventricle shortened was determined by the course of the systolic force L-relation. Thus, irrespective of loading, delta L occurs within the confines of the contractile state-dependent isovolumic force-L relation and where the latter is equivalent to the end-systolic force-length relation.
为了确定射血期和等容期力-长度关系之间的相互关系,以及左心室缩短的程度,我们对27个离体、伺服调节心脏的数据进行了研究。对于每个心脏,针对一个厚壁球体得出一系列不同负荷(ΔL)下的收缩,并通过肌肉横截面积和舒张末期压力为零时的长度进行归一化处理。结果发现,在所研究的生理范围内,总力和主动力基本上是初始长度(L)的线性函数,收缩状态的正向或负向变化会分别导致斜率的增加或降低。等容期和射血末期获得的力-长度关系几乎相同。对于给定的射血压力,尽管充盈情况有所变化,但收缩末期的长度(L)是恒定的,因此与初始长度(L)和ΔL无关;此外,心室缩短的长度(L)由收缩期力-长度关系的进程决定。因此,无论负荷如何,ΔL都发生在依赖收缩状态的等容期力-长度关系范围内,且后者等同于收缩末期力-长度关系。