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猫脑皮质血流测量中光电法与氢气清除法的比较。

Comparison between the photoelectric method and H2 clearance method for measuring cerebrocortical blood flow in cats.

作者信息

Tomita M, Gotoh F, Tanahashi N, Kobari M, Terayama Y, Mihara B, Ohta K, Gerdsen I

机构信息

Department of Neurology, School of Medicine, Keio University, Tokyo, Japan.

出版信息

J Cereb Blood Flow Metab. 1988 Oct;8(5):727-32. doi: 10.1038/jcbfm.1988.120.

Abstract

The photoelectric method using carbon black as a nondiffusible tracer of blood was compared with the hydrogen clearance (H2) method in nine anesthetized cats. A photoelectric apparatus and H2 electrode were applied to a small region of the cerebral cortex (left ectosylvian gyrus) for simultaneous measurement of the regional CBF. The values of CBF(H2) and CBF(photoelectric) were 50.7 +/- 19.2 and 52.1 +/- 14.5 ml.100 g-1.min-1, respectively. CBF(H2) and CBF(photoelectric) were found to correlate well (r = 0.588, p less than 0.01) when changes in CBF were induced by CO2 inhalation, exsanguination, hyperventilation, and occlusion of the middle cerebral artery. The correlation between CBF(H2) and CBF(photoelectric) was much better in the case of intraindividual comparisons (r = 0.957, p less than 0.01). In addition to its merits in common with the H2 clearance method, such as handiness, low cost, and strict regionality, the photoelectric method displayed the following advantages: time-to-time measurements of CBF (less than 20 s), immediate display of the microcirculatory flow pattern, and simultaneous monitoring of cerebral blood volume. However, measurements from deep structures of the brain are better performed by the H2 method despite the disadvantage of the use of a potentially explosive gas.

摘要

在9只麻醉猫身上,将使用炭黑作为血液非扩散示踪剂的光电方法与氢清除(H2)法进行了比较。将光电装置和H2电极应用于大脑皮层的一个小区域(左侧外侧裂回),以同时测量局部脑血流量。脑血流量(H2)和脑血流量(光电)的值分别为50.7±19.2和52.1±14.5 ml·100 g-1·min-1。当通过吸入二氧化碳、放血、过度通气和大脑中动脉闭塞诱导脑血流量变化时,发现脑血流量(H2)和脑血流量(光电)具有良好的相关性(r = 0.588,p<0.01)。在个体内比较时,脑血流量(H2)和脑血流量(光电)之间的相关性要好得多(r = 0.957,p<0.01)。除了具有与H2清除法相同的优点,如操作简便、成本低和严格的局部性外,光电方法还具有以下优点:可随时测量脑血流量(小于20秒)、可立即显示微循环血流模式以及可同时监测脑血容量。然而,尽管使用潜在爆炸性气体存在缺点,但对于大脑深部结构的测量,H2法的效果更好。

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