McGaughey M D, Maughan W L, Sunagawa K, Sagawa K
Circulation. 1985 Feb;71(2):357-62. doi: 10.1161/01.cir.71.2.357.
We examined pulsus alternans in seven isolated, perfused canine left ventricles ejecting into a simulated arterial impedance. Left ventricular pressure-volume loops were measured during pulsus alternans while filing-source pressure was lowered. In all cases two distinct linear end-systolic pressure-volume relationships (ESPVRs) were noted for the strong and weak beats. The slopes of the ESPVRs of the strong beats were significantly greater than those of the weak beats (mean difference 0.9 +/- 0.6 mm Hg/ml, p less than .01), while the intercepts were not significantly different (mean difference 0.06 +/- 0.5 ml). Diastolic pressure-volume relationships for the strong and weak beats were not significantly different, excluding incomplete relaxation as a cause of pulsus alternans. Although the weak beats had both a smaller preceding end-diastolic volume and a larger end-systolic volume, the presence of two distinct ESPVRS for the strong and weak beats shows there is alternating ventricular chamber contractility in pulsus alternans that is not solely due to the Starling mechanism. The magnitude of alternation in pump function parameters such as pressure and stroke volume during pulsus alternans reflects the complex interactions of alternating contractile state with alternations in preload and afterload.
我们在七个向模拟动脉阻抗射血的离体灌注犬左心室中研究了交替脉。在交替脉期间,当充盈源压力降低时测量左心室压力-容积环。在所有情况下,均记录到强搏和弱搏的两种不同的线性收缩末期压力-容积关系(ESPVR)。强搏的ESPVR斜率显著大于弱搏(平均差值0.9±0.6 mmHg/ml,p<0.01),而截距无显著差异(平均差值0.06±0.5 ml)。强搏和弱搏的舒张期压力-容积关系无显著差异,排除了不完全舒张作为交替脉的原因。尽管弱搏的前一个舒张末期容积较小且收缩末期容积较大,但强搏和弱搏存在两种不同的ESPVR表明,交替脉中存在交替的心室腔收缩力,这并非仅由Starling机制所致。交替脉期间泵功能参数(如压力和搏出量)的交替幅度反映了交替收缩状态与前负荷和后负荷交替之间的复杂相互作用。