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未麻醉猫脑血流对缺氧的非均匀反应。

Nonuniform brain blood flow response to hypoxia in unanesthetized cats.

作者信息

Neubauer J A, Edelman N H

出版信息

J Appl Physiol Respir Environ Exerc Physiol. 1984 Dec;57(6):1803-8. doi: 10.1152/jappl.1984.57.6.1803.

DOI:10.1152/jappl.1984.57.6.1803
PMID:6439706
Abstract

In seven unanesthetized cats, radiolabeled microspheres were used to determine regional brain blood flow (rBBF) to the medulla-pons (M-P), midbrain-thalamus (M-T), cerebellum (Cb), and cortex (Cx) during three conditions: 1) control [arterial O2 tension (PaO2) = 81 Torr, arterial CO2 tension (PaCO2) = 26 Torr]; 2) hypocapnic hypoxia (PaO2 = 39 Torr, PaCO2 = 22 Torr); and 3) isocapnic hypoxia (PaO2 = 47 Torr, PaCO2 = 26 Torr). Hypoxia increased blood flow significantly more in the caudal brain stem (M-P) than in the Cx (P less than 0.05) during both hypocapnic hypoxia (M-P/Cx: +33/ +17 ml X min-1 X 100 g-1) and isocapnic hypoxia (M-P/Cx: +13/ -2 ml X min-1 X 100 g-1). Since sympathetic innervation is greater anatomically to rostral than to caudal vessels, we examined the rBBF response to hypocapnic hypoxia in seven additional cats after unilateral superior cervical gangliectomy. All seven cats had a reduction in the cortical-to-caudal brain stem trend on the denervated side of the brain (M-P/Cx: +27/+28 ml X min-1 X 100 g-1) compared with the intact side of the brain (M-P/Cx: +34/+24 ml X min-1 X 100 g-1) owing to both increases in Cx and decreases in M-P flows. We conclude that in unanesthetized cats hypoxia causes a greater increase in the caudal brain stem compared with cortical blood flow, and this differential response is related to modulation by the sympathetic nervous system.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在七只未麻醉的猫中,使用放射性微球来测定延髓-脑桥(M-P)、中脑-丘脑(M-T)、小脑(Cb)和皮质(Cx)在三种情况下的局部脑血流量(rBBF):1)对照[动脉血氧张力(PaO2)=81托,动脉血二氧化碳张力(PaCO2)=26托];2)低碳酸血症性缺氧(PaO2=39托,PaCO2=22托);3)等碳酸血症性缺氧(PaO2=47托,PaCO2=26托)。在低碳酸血症性缺氧(M-P/Cx:+33/+17毫升·分钟-1·100克-1)和等碳酸血症性缺氧(M-P/Cx:+13/-2毫升·分钟-1·100克-1)期间,缺氧导致延髓-脑桥(M-P)中脑血流量的增加显著大于皮质(Cx)(P<0.05)。由于交感神经支配在解剖学上对脑前部血管的支配大于对后部血管的支配,我们在另外七只猫进行单侧颈上神经节切除术后,检查了对低碳酸血症性缺氧的rBBF反应。与脑完整侧(M-P/Cx:+34/+24毫升·分钟-1·100克-1)相比,所有七只猫在脑去神经侧的皮质到延髓-脑桥的血流量趋势均降低(M-P/Cx:+27/+28毫升·分钟-1·100克-1),这是由于Cx血流量增加和M-P血流量减少所致。我们得出结论,在未麻醉的猫中,与皮质血流量相比,缺氧导致延髓-脑桥血流量增加更多,这种差异反应与交感神经系统的调节有关。(摘要截断于250字)

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