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首页> 外文期刊>The Journal of Experimental Biology >Effect of coronary perfusion on the basal performance, volume loading and oxygen consumption in the isolated resistance-headed heart of the trout Oncorhynchus mykiss
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Effect of coronary perfusion on the basal performance, volume loading and oxygen consumption in the isolated resistance-headed heart of the trout Oncorhynchus mykiss

机译:冠状动脉灌注对鳟鱼似锦鳟离体抗性心脏的基础性能,容量负荷和耗氧量的影响

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Basal performance, volume loading response and oxygen consumption were determined in a resistance-headed preparation of the isolated trout heart. Two groups of hearts were used: the +CF group, in which the coronary vascular tree was perfused with a flow directly related to the pressure generated by the heart, and the -CF group, in which the coronary flow was set to zero. As a criterion for setting basal performance, the atrial input pressure was set in order to induce the ventricle to produce a cardiac output of 15 ml min(-1) kg(-1). Once basal conditions were obtained, the preparation was perfused for 30 min, and atrial and aortic pressure, cardiac output, heart rate, coronary pressure and coronary flow were determined at 5 min intervals. At the onset of perfusion, there was no difference in the basal performance between the two groups: the same preload was necessary to get the same cardiac output in both perfusion groups. None of the other performance parameters determined were different. However, after only 5 min of perfusion, the -CF hearts displayed significant adjustments, with increased atrial preload and ventricular preload (mean atrial pressure), and a significant decrease in cardiac output. At the end of the 30 min basal perfusion period, hearts were challenged with a stepwise increase in preload in order to obtain maximal stroke work (volume loading). The effect of coronary perfusion on the heart's response to volume loading was highly significant: the stroke work-preload relationship was significantly shifted towards higher preload values in the -CF group. Also, the maximal work produced by the heart under the experimental conditions used was lower in the -CF group. Rate of oxygen consumption of the heart increased significantly with volume loading, from a basal value of approximately 20 mul O-2 min(-1) g(-1) to approx. 40 mul O-2 min(-1) g(-1), but was not significantly affected by the absence of coronary perfusion. Mechanical efficiency under basal conditions was approximately 17%, but was not affected by either volume loading or coronary perfusion. Taken as a whole, these data represent direct evidence of the effect of coronary perfusion on the mechanical performance of the trout heart, but also show that these effects are limited by significant self-adjustments that occur in the heart.
机译:在离体鳟鱼心脏的抵抗试验中确定了基础性能,体积负荷响应和耗氧量。使用了两组心脏:+ CF组和-CF组,其中将与心脏产生的压力直接相关的血流灌注到冠状血管树上,而-CF组将冠状动脉的血流设置为零。作为设置基础性能的标准,设置房输入压力以诱导心室产生15 ml min(-1)kg(-1)的心输出量。获得基础条件后,将制剂灌注30分钟,并每隔5分钟测定一次心房和主动脉压力,心输出量,心率,冠状动脉压力和冠脉流量。灌注开始时,两组之间的基础表现没有差异:两个灌注组需要相同的预紧力才能获得相同的心输出量。确定的其他性能参数均没有不同。然而,仅5分钟的灌注后,-CF心脏显示出明显的调节,心房预负荷和心室预负荷(平均心房压力)增加,心输出量显着下降。在30分钟的基础灌注期结束时,以逐步增加的预紧力挑战心脏,以获得最大的中风功(容积负载)。冠状动脉灌注对心脏对容量负荷的反应的影响非常显着:-CF组中风功与预负荷之间的关系已显着向较高的负荷前移。同样,在-CF组中,在使用的实验条件下,心脏产生的最大功较低。心脏的耗氧率随着体积负荷的增加而显着增加,从大约20 mul O-2 min(-1)g(-1)的基本值增加到大约1。 40 mul O-2 min(-1)g(-1),但不受冠状动脉灌注的影响不明显。在基础条件下的机械效率约为17%,但不受体积负荷或冠状动脉灌注的影响。总的来说,这些数据代表了冠状动脉灌注对鳟鱼心脏机械性能的影响的直接证据,但也表明,这些影响受到心脏中发生的重大自我调节的限制。

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