Elsner R, Millard R W, Kjekshus J K, White F, Blix A S, Kemper W S
Am J Physiol. 1985 Dec;249(6 Pt 2):H1119-26. doi: 10.1152/ajpheart.1985.249.6.H1119.
Three harbor seals Phoca vitulina richardsi and five spotted seals Phoca vitulina largha were used in studies of acute episodes of local myocardial ischemia in open-chest, anesthetized animals and of coronary blood flow and regional function as indicated by left ventricular segment dimensions during experimentally simulated dives of conscious, instrumented animals. We observed that seal myocardium, in which there are few coronary anastomoses, responded to brief local occlusion with prompt local dysfunction and systolic bulging; coronary flow in the nondiving seal oscillated irregularly and declined with spontaneous apnea and related falling heart rate; flow continued to oscillate but was much reduced during dives, frequently ceasing entirely for periods as long as 45 s; ventricular segment dimension shortening was reduced intermittently during dives; and elevated heart rate induced during dives by cardiac pacing or by administration of atropine diminished or eliminated the reductions in coronary blood flow. Responses of seal heart reflect the reduction in cardiac metabolic demand during diving and the seal's myocardial adaptation for enhanced anaerobic glycolysis. The seal heart can maintain mechanical function during dives with minimal coronary perfusion, despite the progressive and ultimately profound hypoxia, hypercapnia, and acidosis. Reduced cardiac metabolism, copious glycolytic reserves, and metabolite washout by intermittent brief bursts of coronary blood flow are apparently sufficient to support continued cardiac function, even though the seal heart has little tolerance for acute localized ischemia.
三只理查兹港海豹(Phoca vitulina richardsi)和五只斑海豹(Phoca vitulina largha)被用于以下研究:在开胸麻醉动物身上研究局部心肌缺血的急性发作,以及在有意识的、植入仪器的动物进行实验模拟潜水期间,研究冠状动脉血流和左心室节段尺寸所指示的区域功能。我们观察到,海豹心肌中冠状动脉吻合支较少,对短暂局部阻塞的反应是迅速出现局部功能障碍和收缩期膨出;非潜水海豹的冠状动脉血流不规则振荡,并随着自发性呼吸暂停和相关的心率下降而减少;潜水期间血流继续振荡,但大幅减少,经常完全停止长达45秒;潜水期间心室节段尺寸缩短间歇性减少;潜水期间通过心脏起搏或给予阿托品诱导的心率升高减少或消除了冠状动脉血流的减少。海豹心脏的反应反映了潜水期间心脏代谢需求的降低以及海豹心肌对增强无氧糖酵解的适应性。尽管存在渐进性且最终严重的缺氧、高碳酸血症和酸中毒,海豹心脏在潜水期间冠状动脉灌注极少的情况下仍能维持机械功能。心脏代谢降低、丰富的糖酵解储备以及冠状动脉血流间歇性短暂爆发导致的代谢物清除,显然足以支持心脏持续功能,尽管海豹心脏对急性局部缺血的耐受性很低。