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二氧化碳对脑自动调节的调节作用。

Regulation of cerebral autoregulation by carbon dioxide.

机构信息

From the Department of Anesthesia and Perioperative Care, University of California San Francisco, San Francisco, California.

出版信息

Anesthesiology. 2015 Jan;122(1):196-205. doi: 10.1097/ALN.0000000000000506.

Abstract

Cerebral autoregulation describes a mechanism that maintains cerebral blood flow stable despite fluctuating perfusion pressure. Multiple nonperfusion pressure processes also regulate cerebral perfusion. These mechanisms are integrated. The effect of the interplay between carbon dioxide and perfusion pressure on cerebral circulation has not been specifically reviewed. On the basis of the published data and speculation on the aspects that are without supportive data, the authors offer a conceptualization delineating the regulation of cerebral autoregulation by carbon dioxide. The authors conclude that hypercapnia causes the plateau to progressively ascend, a rightward shift of the lower limit, and a leftward shift of the upper limit. Conversely, hypocapnia results in the plateau shifting to lower cerebral blood flows, unremarkable change of the lower limit, and unclear change of the upper limit. It is emphasized that a sound understanding of both the limitations and the dynamic and integrated nature of cerebral autoregulation fosters a safer clinical practice.

摘要

脑自动调节描述了一种机制,即使在灌注压波动的情况下,仍能维持脑血流稳定。多种非灌注压过程也调节脑灌注。这些机制是相互整合的。二氧化碳和灌注压对脑循环相互作用的影响尚未被专门综述。基于已发表的数据和对缺乏支持数据的方面的推测,作者提供了一个概念化的描述,阐述了二氧化碳对脑自动调节的调节。作者得出结论,高碳酸血症导致平台逐渐上升,下限右移,上限左移。相反,低碳酸血症导致平台向较低的脑血流转移,下限无明显变化,上限变化不明确。需要强调的是,对脑自动调节的局限性以及动态和整合性质的充分理解,有助于更安全的临床实践。

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