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左心室的动态硬度剖面图

Dynamic stiffness profiles in the left ventricle.

作者信息

Kennish A, Yellin E, Frater R W

出版信息

J Appl Physiol. 1975 Oct;39(4):665-71. doi: 10.1152/jappl.1975.39.4.665.

Abstract

Diastolic pressure-volume (P-V) curves were calculated on a beat-to-beat basis in the open-chest, pentobarbital-anesthetized dog, using the technique of direct transmitral flow measurement previously described. P-V curves were constructed and the slope (dP/dV) was plotted vs. pressure and time. dP/dV was used as an index of stiffness in each heart and its instantaneous changes with time were followed throughout the diastolic period. The end-diastolic P-V relation based on points from successive cycles during volume loading was found to be exponential. In contrast, the instantaneous P-V relation during any one diastolic period was not exponential. That is, the dynamic dP/dV vs. pressure plot was nonlinear. In the normal heart, stiffness was characterized in early diastole by a negative dP/dV as the ventricle continued to relax, and then frequently decreased prior to a second stiffness rise with atrial augmentation. These findings can be explained by a model containing an element whose deformation is rate dependent, i.e., a parallel viscous element. Stiffness profiles in mitral stenosis where dynamic effects are minimized substantiate this conclusion.

摘要

采用先前描述的直接测量二尖瓣血流的技术,在开胸、戊巴比妥麻醉的犬身上逐搏计算舒张期压力-容积(P-V)曲线。构建P-V曲线,并绘制斜率(dP/dV)与压力和时间的关系图。dP/dV用作每个心脏僵硬度的指标,并在整个舒张期跟踪其随时间的瞬时变化。发现基于容量负荷期间连续周期各点的舒张末期P-V关系呈指数关系。相比之下,任何一个舒张期内的瞬时P-V关系并非呈指数关系。也就是说,动态dP/dV与压力的关系图是非线性的。在正常心脏中,舒张早期僵硬度的特征是随着心室继续舒张dP/dV为负值,然后在心房增强导致第二次僵硬度升高之前,僵硬度常常降低。这些发现可以用一个包含变形取决于速率的元件(即并联粘性元件)的模型来解释。在二尖瓣狭窄中,动态效应最小化时的僵硬度曲线证实了这一结论。

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