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首页> 外文期刊>Japanese Journal of Pharmacology >Effects of Denopamine (TA-064), a New Positive Inotropic Agent, on Myocardial Oxygen Consumption and Left Ventricular Dimension in Anesthetized Dogs
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Effects of Denopamine (TA-064), a New Positive Inotropic Agent, on Myocardial Oxygen Consumption and Left Ventricular Dimension in Anesthetized Dogs

机译:新型正性肌力药Denopamine(TA-064)对麻醉狗心肌耗氧量和左心室尺寸的影响

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References(19) Cited-By(9) We compared the effects of denopamine (TA-064) and isoproterenol on hemodynamics, myocardial oxygen consumption and the left ventricular (LV) dimension in halothane-N2O anesthetized dogs. Denopamine (0.25-1 μg/kg/ min, i.v., infusion × 15 min) produced a maximum increase in LV dp/dtma, , by 64% of the control, without affecting aortic pressure significantly. Doses of isoproterenol (0.01-0.04 μg/kg/min, i.v., infusion × 15 min) were selected to produce a positive inotropic action similar to that of denopamine. Denopamine produced significantly less increasing effects in heart rate, cardiac output and myocardial oxygen consumption and had more reducing effects in LV internal diameter than isoproterenol, while isoproterenol tended to produce a more potent increase in coronary blood flow, but a smaller decrease in LV end-diastolic pressure than denopamine. PQ interval was similarly reduced. Denopamine caused no substantial increase in myocardial oxygen consumption at a lower dose, at which LV dp/dtmax was significantly increased. A weak effect of denopamine on myocardial oxygen consumption may result partly from a weak positive chronotropic effect and partly from a reduction of preload and cardiac size.
机译:参考文献(19)By(9)我们比较了氟烷-N2O麻醉的狗中的去甲酚(TA-064)和异丙肾上腺素对血流动力学,心肌耗氧量和左心室(LV)尺寸的影响。地那巴胺(0.25-1μg/ kg / min,静脉内输注×15分钟)使LV dp / dtma最大增加了对照组的64%,而没有显着影响主动脉压。选择异丙肾上腺素的剂量(0.01-0.04μg/ kg / min,静脉内输注×15分钟)以产生与denopamine类似的正性肌力作用。与异丙肾上腺素相比,地诺明对心率,心输出量和心肌耗氧量的增加作用显着较少,对左室内径的减少作用更大,而异丙肾上腺素倾向于使冠状动脉血流增加更有效,但对左室末端的减少较小舒张压要比氯胺酮高。 PQ间隔也同样减少。在较低剂量下,地那巴明不会引起心肌耗氧量的实质性增加,在此剂量下,LV dp / dtmax会显着增加。多巴酚丁胺对心肌耗氧量的作用较弱,可能部分是由于弱的正变时作用,部分是由于预负荷和心脏尺寸的减小。

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