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急性低温损伤后灵长类动物大脑中的血管反应性。

Vascular reactivity in the primate brain after acute cryogenic injury.

作者信息

Reilly P L, Farrar J K, Miller J D

出版信息

J Neurol Neurosurg Psychiatry. 1977 Nov;40(11):1092-1101. doi: 10.1136/jnnp.40.11.1092.

Abstract

The effects of an acute cryogenic injury on cerebral flow (CBF) and cerebral vascular reactivity were studied in 12 anaesthetised, ventilated baboons. Autoregulation, defined in this study as intact with a greater than 20% change in cerebrovascular resistance in response to a change in cerebral perfusion pressure, was tested before the lesion by arterial hypotension. Intact autoregulation was found in half the animals, but all animals showed an increase in CBF with hypercarbia. The cryogenic lesion was followed by a marked rise in intracranial pressure, and a fall in CBF which was only partly related to the status of autoregulation beforehand. After injury, arterial hypertension caused an increase in cerebrovascular resistance of more than 20% in half the animals. This response was not related to the presence of autoregulation before the lesion, and was accompanied by a greater impairment of the cerebrovascular response to carbon dioxide, more severe brain oedema, and lower cerebral oxygen consumption, than in the remaining baboons which had a pressure passive response to arterial hypertension. This study confirms that the failure of CBF to increase with arterial hypertension may indicate severe brain damage rather than intact physiological autoregulation.

摘要

在12只麻醉通气的狒狒身上研究了急性低温损伤对脑血流量(CBF)和脑血管反应性的影响。本研究中,通过动脉低血压在损伤前测试自动调节功能,将其定义为当脑灌注压发生变化时脑血管阻力变化大于20%即为自动调节功能完好。发现半数动物自动调节功能完好,但所有动物在高碳酸血症时CBF均增加。低温损伤后,颅内压显著升高,CBF下降,且CBF下降仅部分与预先的自动调节状态有关。损伤后,半数动物动脉高血压导致脑血管阻力增加超过20%。这种反应与损伤前自动调节功能的存在无关,并且与其余对动脉高血压呈压力被动反应的狒狒相比,其对二氧化碳的脑血管反应受损更严重、脑水肿更严重、脑氧消耗更低。这项研究证实,CBF在动脉高血压时未能增加可能表明严重脑损伤而非生理自动调节功能完好。

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