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Effect of propofol and remifentanil on cerebral perfusion and oxygenation in pigs: a systematic review

机译:异丙酚和瑞芬太尼对猪脑灌注和氧合的影响:系统评价

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The objective of this review is to evaluate the existing literature with regard to the influence of propofol and remifentanil total intravenous anaesthesia (TIVA) on cerebral perfusion and oxygenation in healthy pigs. Anaesthesia has influence on cerebral haemodynamics and it is important not only in human but also in veterinary anaesthesia to preserve optimal regulation of cerebral haemodynamics. Propofol and remifentanil are widely used in neuroanaesthesia and are increasingly used in experimental animal studies. In translational models, the pig has advantages compared to small laboratory animals because of brain anatomy, metabolism, neurophysiological maturation, and cerebral haemodynamics. However, reported effects of propofol and remifentanil on cerebral perfusion and oxygenation in pigs have not been reviewed. An electronic search identified 99 articles in English. Title and screening selected 29 articles for full-text evaluation of which 19 were excluded with reasons. Of the 10 peer-reviewed articles included for review, only three had propofol or remifentanil anaesthesia as the primary study objective and only two directly investigated the effect of anaesthesia on cerebral perfusion and oxygenation (CPO). The evidence evaluated in this systematic review is limited, not focused on propofol and remifentanil and possibly influenced by factors of potential importance for CPO assessment. In one study of healthy pigs, CPO measures were within normal ranges following propofol-remifentanil anaesthesia, and addition of a single remifentanil bolus did not affect regional cerebral oxygen saturation (rSO2). Even though the pool of evidence suggests that propofol and remifentanil alone or in combination have limited effects on CPO in healthy pigs, confirmative evidence is lacking.
机译:这篇综述的目的是评估关于异丙酚和瑞芬太尼全静脉麻醉(TIVA)对健康猪脑灌注和氧合作用的影响的现有文献。麻醉对脑血流动力学有影响,不仅在人体内而且在兽医麻醉中,重要的是保持脑血流动力学的最佳调节。异丙酚和瑞芬太尼广泛用于神经麻醉,并越来越多地用于实验动物研究。在转换模型中,由于大脑的解剖结构,新陈代谢,神经生理成熟和脑血流动力学特性,与小型实验动物相比,猪具有优势。但是,关于异丙酚和瑞芬太尼对猪脑灌注和氧合作用的报道尚未得到审查。电子搜索确定了99篇英文文章。标题和筛选选择了29篇文章进行全文评估,其中有19篇被排除在外。在纳入审阅的10篇经同行评审的文章中,只有3篇以丙泊酚或瑞芬太尼麻醉为主要研究目标,仅有2篇直接研究了麻醉对脑灌注和氧合(CPO)的影响。该系统评价中评估的证据有限,不集中在丙泊酚和瑞芬太尼上,并且可能受到对CPO评估潜在重要性的影响。在一项健康猪的研究中,丙泊酚-瑞芬太尼麻醉后的CPO值在正常范围内,并且添加一个瑞芬太尼单次推注不会影响区域性脑氧饱和度(rSO 2 )。尽管有证据表明丙泊酚和瑞芬太尼单独或联合使用对健康猪的CPO影响有限,但仍缺乏确证。

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