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单次给予可乐定后重度颅脑损伤患者脑血流动力学的变化

Changes in cerebral hemodynamics after a single dose of clonidine in severely head-injured patients.

作者信息

ter Minassian A, Beydon L, Decq P, Bonnet F

机构信息

Surgical Intensive Care Unit, Hôpital Henri Mondor, Creteil, France.

出版信息

Anesth Analg. 1997 Jan;84(1):127-32. doi: 10.1097/00000539-199701000-00024.

Abstract

alpha 2-Adrenergic agonists induce cerebral vasoconstriction, reduce intracranial pressure (ICP) in experimental animals and may be useful in the hemodynamic management of head-injured patients. We studied the effects of the alpha 2 agonist clonidine on the cerebral circulation in 12 head-injured patients (Glasgow Coma Scale score < 8). Middle cerebral artery flow velocity (MCAV), ICP, mean arterial pressure (MAP), and cerebral perfusion pressure (CPP), were continuously recorded before (T0), at the end (T1), and 30 min after (T2) a 10-min intravenous (i.v.) infusion of 2.5 micrograms/kg clonidine. The cerebral arteriovenous oxygen content difference (AVDO2) and Paco2 were sequentially obtained. ICP, Paco2, AVDO2, and MCAV did not change after clonidine administration. In contrast, MAP and CPP decreased (P < 0.05 and P < 0.05, respectively, at T1 and T2). Three subjects displayed a transient increase in ICP (> 10 mm Hg) at T1; this increase was concomitant with the decrease in MAP. Clonidine administered as an i.v. infusion may induce a critical but transient increase in ICP in some severely head-injured patients. This effect may result from cerebral autoregulatory vasodilation and increased cerebral blood volume as a response to the hypotensive effects of clonidine.

摘要

α2肾上腺素能激动剂可引起实验动物脑动脉收缩,降低颅内压(ICP),可能对头外伤患者的血流动力学管理有用。我们研究了α2激动剂可乐定对12例颅脑损伤患者(格拉斯哥昏迷量表评分<8)脑循环的影响。在静脉输注2.5μg/kg可乐定10分钟前(T0)、结束时(T1)和结束后30分钟(T2),连续记录大脑中动脉血流速度(MCAV)、ICP、平均动脉压(MAP)和脑灌注压(CPP)。依次获取脑动静脉氧含量差(AVDO2)和动脉血二氧化碳分压(Paco2)。给予可乐定后,ICP、Paco2、AVDO2和MCAV均无变化。相比之下,MAP和CPP下降(T1和T2时分别为P<0.05和P<0.05)。3名受试者在T1时ICP出现短暂升高(>10mmHg);这种升高与MAP下降同时出现。静脉输注可乐定可能会使一些重度颅脑损伤患者的ICP出现临界但短暂的升高。这种效应可能是由于脑自动调节性血管舒张和脑血容量增加,作为对可乐定降压作用的一种反应。

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