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首页> 外文期刊>The Journal of Experimental Biology >HYPOXIA AND ISCHAEMIA IN BUFFER-PERFUSED TOAD HEARTS
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HYPOXIA AND ISCHAEMIA IN BUFFER-PERFUSED TOAD HEARTS

机译:浸过的蟾蜍心脏缺氧和缺血

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Previous studies on the effects of ischaemia or hypoxia in ectothermic vertebrate hearts have generally used preparations that were not performing at physiological levels of pressure and flow, The conclusions that ischaemia or hypoxia are not stressful to these organisms were examined in another species, Bufo marinus, in which a buffer-perfused heart was performing physiological levels of work, The in situ preparation demonstrated the Frank-Starling relationship and mechanical characteristics similar to the hearts of intact animals. The hearts recovered from 60 min of ischaemia and reperfusion with no reduction in pressure, flow or heart rate parameters, Hearts exposed to 30 min of hypoxia at physiological filling and diastolic afterload pressures ceased generating a continuous cardiac output during the hypoxia, In most cases, there was a gradual reduction of cardiac output to zero, but in 27% of the hearts studied, intermittent beating was observed, During reoxygenation, the hearts recovered 50-90% of their prehypoxic function and were damaged, Hearts exposed to hypoxia with reduced filling and diastolic afterload continued to develop a cardiac output throughout the hypoxia and demonstrated an overshoot phenomena with the onset of reoxygenation, If demand is in the normal range at the onset of hypoxia, the hearts intrinsically reduce demand either by reducing pressure development or by conversion to intermittent beating, Toad hearts appear not to be damaged by ischaemia, a condition in which demand is low. [References: 18]
机译:先前关于局部缺血或缺氧在外热脊椎动物心脏中的作用的研究通常使用的制剂在生理水平的压力和流量下不能发挥作用。在另一种物种Bufo marinus中检查了局部缺血或缺氧对这些生物无压力的结论,在这种情况下,缓冲液灌注的心脏正在执行生理水平的工作。原位制备显示出与完整动物心脏相似的Frank-Starling关系和机械特性。在60分钟的局部缺血和再灌注过程中,心脏恢复了正常,压力,流量或心率参数均未降低;在生理充盈和舒张压后负荷压力下暴露于缺氧30分钟的心脏在缺氧期间不再产生持续的心输出量,在大多数情况下,心输出量逐渐降低至零,但在研究的27%的心脏中观察到间歇性的跳动。在重新充氧期间,心脏恢复了其缺氧前功能的50-90%并被损坏,暴露于缺氧且充盈减少的心脏舒张压后负荷在整个缺氧期间继续产生心输出量,并在再充氧开始时表现出过冲现象。如果在缺氧开始时需求处于正常范围内,则心脏通过降低压力发展或通过转化为低氧来本质上减少需求。间歇性跳动,蟾蜍的心脏似乎不受局部缺血的损害,局部缺血的需求较低。 [参考:18]

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