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短暂性高碳酸血症增强大鼠体感诱发性血流激活。

Brief hypercapnia enhances somatosensory activation of blood flow in rat.

作者信息

Schmitz B, Böttiger B W, Hossmann K A

机构信息

Department of Experimental Neurology, Max-Planck-Institute for Neurological Research, Cologne, Germany.

出版信息

J Cereb Blood Flow Metab. 1996 Nov;16(6):1307-11. doi: 10.1097/00004647-199611000-00027.

Abstract

Activation of CBF by hypercapnia or functional stimulation has been attributed to multiple mediators, most of which are thought to interfere with cerebrovascular reactivity in a closely time-related manner. Here we describe that brief hypercapnia produces marked up-regulation of somatosensory activation of blood flow that outlasts carbon dioxide exposure for at least 60 min. In chloralose-anesthetized, mechanically ventilated rats, somatosensory activation was carried out by electrical stimulation of the forepaw. Blood flow was measured in the contralateral primary somatosensory cortex by laser-Doppler flowmetry (LDF). Under control conditions, somatosensory stimulation increased LDF by 38.8 +/- 11.0%. Ventilation with 6% CO2 for 3 min caused a rise of LDF by 28.0 +/- 8.7%. Baseline CBF and PaCo2 returned to control values within 20 min. Repetition of somatosensory stimulation after hypercapnia revealed a long-lasting up-regulation of the flow response: 25 min after hypercapnia, functional stimulation increased LDF by 86.0 +/- 18.1%, and 60 min after hypercapnia even by 96.0 +/- 26.0%. This is the first demonstration of CO2-induced up-regulation of functional activation of blood flow and an example of the importance of general physiological variables for the modulation of the coupling process.

摘要

高碳酸血症或功能刺激对脑血流量(CBF)的激活作用归因于多种介质,其中大多数被认为会以与时间密切相关的方式干扰脑血管反应性。在此我们描述,短暂的高碳酸血症会使体感激活的血流产生显著上调,这种上调在二氧化碳暴露结束后至少持续60分钟。在水合氯醛麻醉、机械通气的大鼠中,通过电刺激前爪来进行体感激活。通过激光多普勒血流仪(LDF)测量对侧初级体感皮层的血流量。在对照条件下,体感刺激使LDF增加了38.8±11.0%。用6%的二氧化碳通气3分钟使LDF升高了28.0±8.7%。基线CBF和动脉血二氧化碳分压(PaCo2)在20分钟内恢复到对照值。高碳酸血症后重复进行体感刺激显示血流反应出现持久上调:高碳酸血症后25分钟,功能刺激使LDF增加了86.0±18.1%,高碳酸血症后60分钟甚至增加了96.0±26.0%。这是首次证明二氧化碳诱导的血流功能激活上调,也是一般生理变量对耦合过程调节重要性的一个实例。

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