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家兔颈动脉窦压力反射中主动脉压力与变力反应之间的相互作用。

Interactions between aortic pressure and inotropic responses in the carotid sinus baroreflex of the rabbit.

作者信息

Opitz H, Kretschmer L, Scheufler K

出版信息

Biomed Biochim Acta. 1985;44(10):1507-16.

PMID:4084254
Abstract

The isolated left carotid sinus of rabbit was stimulated with 20 kPa pressure steps. By means of an intraaortic balloon catheter the arterial blood pressure could be either fixed against reflex changes (pressure clamp) or adjusted to any value desired. The passive pressure dependence of the left ventricular systolic pressure LVSP is observed to be linear, and the enddiastolic pressure LVEDP is hardly affected. The LV contractility index CI = (d log P/dt)max has a nonlinear dependence on the aortic pressure. Its slope, the so-called coefficient of pressure-induced inotropy CPI, is high in the lower pressure range and vice versa. In the paced heart inotropic reflex responses to 20 kPa intrasinus pressure steps, expressed in percent attenuation of the CI, were firstly elicited at freely variable arterial pressure and, thereupon, at pressure clamp conditions. In the latter case the inotropic effects are significantly lower (14.5%) than at free running pressure (34.6%). A mean of CPI = 2.32% . kPa-1 is obtained from the inotropic effect differences and the concomitant pressure drops. When subdividing the effects with respect to initial diastolic pressure, we could obtain a CPI = 3.7% . kPa-1 in the pressure range below 14.5 kPa, and a CPI = 1.53% . kPa-1 for higher pressures. The primary inotropic effects at pressure clamp conditions do not depend on the arterial pressure.

摘要

用20 kPa的压力阶跃刺激兔离体左颈动脉窦。借助主动脉内气囊导管,动脉血压可以固定以对抗反射性变化(压力钳制),也可以调整到任何所需值。观察到左心室收缩压LVSP的被动压力依赖性呈线性,而舒张末期压力LVEDP几乎不受影响。左心室收缩性指数CI = (d log P/dt)max对主动脉压力呈非线性依赖性。其斜率,即所谓的压力诱导变力系数CPI,在较低压力范围内较高,反之亦然。在起搏心脏中,对20 kPa窦内压力阶跃的变力反射反应,以CI衰减百分比表示,首先在自由变化的动脉血压下引发,随后在压力钳制条件下引发。在后一种情况下,变力效应明显低于自由运行压力下的效应(14.5%对34.6%)。从变力效应差异和伴随的压力降得出平均CPI = 2.32%·kPa-1。当根据初始舒张压对效应进行细分时,在14.5 kPa以下的压力范围内,我们可以得到CPI = 3.7%·kPa-1,对于较高压力,CPI = 1.53%·kPa-1。压力钳制条件下的初级变力效应不依赖于动脉血压。

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