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全氟碳乳剂预充添加剂可改善体外循环开始时的脑电图和脑血流量。

A perfluorocarbon emulsion prime additive improves the electroencephalogram and cerebral blood flow at the initiation of cardiopulmonary bypass.

作者信息

Vocelka C, Spiess B, Soltow L, Thomas R, Gohra H, Akimoto H, Rothnie C, Kunzelman K, Verrier E, Cochran R P

机构信息

Department of Surgery, School of Medicine, University of Washington, Seattle 98195, USA.

出版信息

J Extra Corpor Technol. 1995 Mar;27(1):6-10.

Abstract

Depression in electroencephalogram (EEG) has been documented clinically and is reproducible in swine at the initiation of cardiopulmonary bypass (CPB) utilizing a crystalloid prime. The physiological cause of this transient alteration in electrical brain activity appears to be associated with the transient drop in arterial pressure. The etiology is unknown but may be attributable to the bolus of the crystalloid prime or micro emboli, either air or fibrin-platelet. Thirteen swine (17-26 kg) were anesthetized and received 4 mg/kg dexamethasone, and following a tracheotomy were ventilated with halothane in 100% O2. Surgical preparation included: sternotomy and preparation for right atrial-aortic CPB. The CPB circuit consisted of a hollow fiber membrane oxygenator, a hard-shell venous reservoir, a roller pump, and PVC tubing. The circuit was randomly primed with either 1200 ml Plasmalyte-A or 10 ml/kg perfluorocarbon emulsion (PFE) and Plasmalyte-A to total 1200 ml. The animals were monitored continuously for systemic hemodynamics and electrocardiogram, and cerebral monitoring included blood flow and bitemporal EEG. Arterial blood gases were measured and PaCO2 was kept between 30-45 mmHg both before and during CPB. Cerebral blood flow (CBF) was measured pre-CPB and at 10 minutes after initiation of CPB. Bitemporal computerized EEG was analyzed every 60 seconds. Total power of each hemisphere, power in frequency bands, and spectral edge were recorded. All animals demonstrated a relative decrease in EEG total power at the onset of CPB. Animals that received PFE demonstrated a more stable arterial blood pressure, an increased CBF, and a lesser decrease and an earlier recovery of the EEG power.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

脑电图(EEG)抑制在临床上已有记录,并且在使用晶体预充液进行体外循环(CPB)开始时,猪身上可再现这种情况。脑电活动这种短暂变化的生理原因似乎与动脉压的短暂下降有关。病因尚不清楚,但可能归因于晶体预充液的推注或微栓子,无论是空气栓子还是纤维蛋白 - 血小板栓子。13头猪(17 - 26千克)麻醉后接受4毫克/千克地塞米松,气管切开后用100%氧气中的氟烷进行通气。手术准备包括:胸骨切开术和右心房 - 主动脉CPB准备。CPB回路由中空纤维膜氧合器、硬壳静脉储液器、滚压泵和PVC管组成。回路随机用1200毫升平衡液 - A或10毫升/千克全氟碳乳剂(PFE)与平衡液 - A预充至总量1200毫升。持续监测动物的全身血流动力学和心电图,脑监测包括血流量和双侧脑电图。测量动脉血气,CPB前和CPB期间将PaCO2维持在30 - 45毫米汞柱之间。在CPB前和CPB开始后10分钟测量脑血流量(CBF)。每60秒分析一次双侧计算机化脑电图。记录每个半球的总功率、频段功率和频谱边缘。所有动物在CPB开始时脑电图总功率均相对下降。接受PFE的动物表现出更稳定的动脉血压、增加的CBF以及脑电图功率较小的下降和更早的恢复。(摘要截短于250字)

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