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一种过敏性休克的血流动力学模型。

A hemodynamic model for anaphylactic shock.

作者信息

Barsan W G, Hedges J R, Syverud S A, Dalsey W C

出版信息

Ann Emerg Med. 1985 Sep;14(9):834-9. doi: 10.1016/s0196-0644(85)80629-6.

DOI:10.1016/s0196-0644(85)80629-6
PMID:4025979
Abstract

The treatment of cardiovascular collapse and anaphylactic shock is largely empiric. A simple animal model was developed to evaluate the hemodynamic alterations in anaphylaxis. Eight adult New Zealand white rabbits of both sexes were studied. All animals weighed 3.8 kg to 5.3 kg. Sensitization was accomplished with a 2-mL subcutaneous dose of horse serum followed in two days with a 2-mL intravenous (IV) dose. At least 14 days elapsed after the IV dose before a 1-mL challenge dose of horse serum was given. On the day of the challenge dose, a femoral arterial catheter, arterial temperature probe, and right atrial catheter were placed under methoxyflurane anesthesia. The temperature probe was positioned in the aortic arch. The methoxyflurane was discontinued and the only sedation given during the shock phase was IV diazepam (0.1 mg/kg to 0.5 mg/kg). At least 30 minutes after methoxyflurane was discontinued, the challenge dose of horse serum was given through the right atrial catheter. Before and during the shock phase cardiac rhythm, arterial pressure, and intravascular temperature were monitored continuously. Cardiac outputs (CO) were performed by a thermodilution technique using 0.8 mL room temperature saline injectate through the right atrial catheter. Temperature deflection of the aortic probe was recorded and cardiac output was calculated. After giving the challenge dose, CO was measured at three, five, ten, 15, 25, 35, 45, and 60 minutes. All eight animals showed a significant (P less than .0005) fall in CO, cardiac index, and blood pressure within three minutes. The fall in cardiac index was 50% or more in all animals. Two animals died as a result of shock.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

心血管虚脱和过敏性休克的治疗很大程度上是经验性的。我们建立了一个简单的动物模型来评估过敏反应中的血流动力学改变。研究了8只成年新西兰白兔,雌雄不限。所有动物体重在3.8千克至5.3千克之间。通过皮下注射2毫升马血清进行致敏,两天后静脉注射2毫升。静脉注射后至少经过14天,再给予1毫升马血清激发剂量。在给予激发剂量当天,在甲氧氟烷麻醉下放置股动脉导管、动脉温度探头和右心房导管。温度探头置于主动脉弓处。停用甲氧氟烷,休克期仅给予静脉注射地西泮(0.1毫克/千克至0.5毫克/千克)。停用甲氧氟烷至少30分钟后,通过右心房导管给予马血清激发剂量。在休克期之前和期间,持续监测心律、动脉压和血管内温度。心输出量(CO)通过热稀释技术测定,经右心房导管注入0.8毫升室温生理盐水。记录主动脉探头的温度变化并计算心输出量。给予激发剂量后,在3、5、10、15、25、35、45和60分钟时测量心输出量。所有8只动物在3分钟内CO、心脏指数和血压均显著下降(P小于0.0005)。所有动物的心脏指数下降50%或更多。两只动物死于休克。(摘要截选至250字)

相似文献

1
A hemodynamic model for anaphylactic shock.一种过敏性休克的血流动力学模型。
Ann Emerg Med. 1985 Sep;14(9):834-9. doi: 10.1016/s0196-0644(85)80629-6.
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Hemodynamic pattern in anaphylactic shock with cardiac arrest.心脏骤停性过敏性休克的血流动力学模式
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Anaphylaxis in the monkey: hemodynamics and blood flow distribution.猴子的过敏反应:血流动力学与血流分布
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Role of nitric oxide in anaphylactic shock.一氧化氮在过敏性休克中的作用。
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