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甲苯磺丁苄胺对犬低温时室颤阈值的影响。

Effect of bretylium tosylate on ventricular fibrillation threshold during hypothermia in dogs.

作者信息

Bjørnstad H, Mortensen E, Sager G, Refsum H

机构信息

Department of Medical Physiology, University of Tromsø, Norway.

出版信息

Am J Emerg Med. 1994 Jul;12(4):407-12. doi: 10.1016/0735-6757(94)90049-3.

Abstract

How bretylium tosylate affected the ventricular fibrillation threshold, electrophysiological parameters, and plasma catecholamine levels during hypothermia in dogs was studied. Threshold for ventricular fibrillation was determined by programmed electrical stimulation using a stimulation protocol that involved applying a maximum of five extrastimuli at body temperatures 37, 34, 31, 28, and 25 degrees C, and at the same temperatures during rewarming. Electrocardiogram, epicardial monophasic action potentials (MAP), and electrograms were recorded, and ventricular effective refractory period (VERP) was determined at each of the above temperatures. In one group (n = 7), a bolus dosage of bretylium tosylate (BT), 6 mg/kg body wt, was administered at 25 degrees C before rewarming. Another group (n = 4) was exposed to cooling and rewarming without addition of BT. Cooling to 25 degrees C reduced ventricular fibrillation threshold linearly, reduced heart rate, increased VERP and MAP, and slowed myocardial conduction velocity in both groups. There was no overall increase in plasma catecholamine levels during cooling. Addition of BT at 25 degrees C increased ventricular fibrillation threshold during rewarming compared with cooling. Addition of BT at 25 degrees C increased VERP by +/- 32 milliseconds and the corrected JT time by 0.06 +/- 0.02 seconds. VERP and JTc increased during rewarming with BT compared with cooling with no drug. BT had no effect on conduction velocity, and plasma catecholamine levels were not reduced. The antiarrhythmic effect of BT during hypothermia was attributed to an increased wavelength of refractoriness by its increase in the refractory period. This increased wavelength of refractoriness may prevent excitable gaps or increase circuit pathway in the setting of reentry arrhythmias.

摘要

研究了甲苯磺酸溴苄铵在犬低温期间如何影响心室颤动阈值、电生理参数和血浆儿茶酚胺水平。通过程控电刺激确定心室颤动阈值,刺激方案包括在体温37、34、31、28和25摄氏度时以及复温期间相同温度下施加最多五个额外刺激。记录心电图、心外膜单相动作电位(MAP)和电描记图,并在上述每个温度下测定心室有效不应期(VERP)。在一组(n = 7)中,在复温前25摄氏度时给予甲苯磺酸溴苄铵(BT)大剂量,6mg/kg体重。另一组(n = 4)在不添加BT的情况下进行降温及复温。两组中,降温至25摄氏度均使心室颤动阈值呈线性降低、心率减慢、VERP和MAP增加以及心肌传导速度减慢。降温期间血浆儿茶酚胺水平无总体升高。与降温相比,25摄氏度时添加BT可使复温期间的心室颤动阈值升高。25摄氏度时添加BT使VERP增加± 32毫秒,校正JT时间增加0.06 ± 0.02秒。与无药物降温相比,BT复温期间VERP和JTc增加。BT对传导速度无影响,血浆儿茶酚胺水平未降低。低温期间BT的抗心律失常作用归因于其通过延长不应期增加了不应期波长。这种增加的不应期波长可能会防止折返性心律失常时的可兴奋间隙或增加折返路径。

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