Nikolic S D, Yellin E L, Dahm M, Pajaro O, Frater R W
Department of Cardiothoracic Surgery, Albert Einstein College of Medicine, Bronx, New York 10461.
Am J Physiol. 1990 Aug;259(2 Pt 2):H457-63. doi: 10.1152/ajpheart.1990.259.2.H457.
This study was designed to investigate the relationship between left ventricular (LV) eccentricity, volume, and passive elastic properties. Eight open-chest fentanyl-anesthetized dogs were instrumented with an LV micromanometer, a remote-controlled mitral valve occluder, and two pairs of ultrasonic crystals to measure anterior-posterior and base-apex dimensions. We identified the presence of elastic recoil forces with negative LV diastolic pressure in nonfilling diastoles (end-systolic volume clamp). Using linear regression analysis we related midwall eccentricity to volume in nonfilling diastoles at the time of LVPmin and at end diastole, and in normal beats at end systole at LVPmin and at end-diastole. Intersection of the end-systolic and end-diastolic lines (transitional volume, Vt = 38.0 + 6.4 ml) divides cycles with and without the presence of elastic recoil forces. Vt is analogous to the equilibrium volume (V0), determined as the volume intercept of the logarithmic passive pressure-volume (P-V) relationship using LV volume estimated from LV weights (V0 nl = 37.6 + 4.4 ml), or the volume intercept of the linearized P-V relationship calculated from a prolate spheroidal model using measured minor and major diameters (V0 l = 44.5 + 3.5 ml). Linear regression analysis was also used to relate the square of peak mitral flow (MF2) with the corresponding atrioventricular pressure gradient (delta P); the slope represents a dissipative constant for the cycles without, P = 0.00058(MF)2 + 0.35 (n = 48, r = 0.73), and with elastic recoil P = 0.00035(MF)2 + 0.21 (n = 24, r = 0.81).(ABSTRACT TRUNCATED AT 250 WORDS)
本研究旨在探讨左心室(LV)偏心度、容积与被动弹性特性之间的关系。对8只开胸并用芬太尼麻醉的犬,植入左心室微测压计、遥控二尖瓣封堵器以及两对超声晶体,以测量前后径和心底-心尖径。我们在非充盈舒张期(收缩末期容积钳制)通过负的左心室舒张压识别弹性回缩力的存在。使用线性回归分析,我们将在左心室最小压力(LVPmin)时的非充盈舒张期、舒张末期、收缩末期LVPmin时的正常搏动以及舒张末期的室壁中层偏心度与容积相关联。收缩末期和舒张末期线的交点(过渡容积,Vt = 38.0 + 6.4 ml)划分了有和没有弹性回缩力的心动周期。Vt类似于平衡容积(V0),其确定方法为:使用根据左心室重量估算的左心室容积,通过对数被动压力-容积(P-V)关系的容积截距(V0 nl = 37.6 + 4.4 ml),或使用测量的短径和长径通过长椭球体模型计算的线性化P-V关系的容积截距(V0 l = 44.5 + 3.5 ml)。线性回归分析还用于将二尖瓣血流峰值平方(MF2)与相应的房室压力梯度(δP)相关联;斜率代表无弹性回缩力时心动周期的耗散常数,P = 0.00058(MF)2 + 0.35(n = 48,r = 0.73),有弹性回缩力时P = 0.00035(MF)2 + 0.21(n = 24,r = 0.81)。(摘要截短至250字)