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使用氧磷光猝灭法在功能激活期间脑血流量、氧分压和计算得出的脑氧代谢率的动态变化。

Dynamic changes in cerebral blood flow, O2 tension, and calculated cerebral metabolic rate of O2 during functional activation using oxygen phosphorescence quenching.

作者信息

Ances B M, Wilson D F, Greenberg J H, Detre J A

机构信息

Department of Neurology, University of Pennsylvania School of Medicine, Philadelphia, Pennsylvania 19104, USA.

出版信息

J Cereb Blood Flow Metab. 2001 May;21(5):511-6. doi: 10.1097/00004647-200105000-00005.

Abstract

Changes in cerebral blood flow (CBF) using laser-Doppler and microvascular O2 oxygen tension using oxygen-dependent phosphorescence quenching in the rat somatosensory cortex were obtained during electrical forepaw stimulation. The signal-averaged CBF response resulting from electrical forepaw stimulation consisted of an initial peak (t = 3.1 +/- 0.8 seconds after onset of stimulation), followed by a plateau phase that was maintained throughout the length of the stimulus. In contrast, microvascular O2 tension changes were delayed, reached a plateau level (t = 23.5 +/- 1.7 seconds after the onset of stimulation) that remained for the length of the stimulus and for several seconds after stimulus termination, and then returned to baseline. Using Fick's equation and these dynamic measurements, changes in the calculated cerebral metabolic rate of oxygen (CMRO2) during functional stimulation were determined. The calculated CMRO2 response initially was comparable with the CBF, but with protracted stimulation, CMRO2 changes were approximately one-third that of CBF changes. These results suggest that a complex relation exists, with comparable changes in CBF and CMRO2 initially occurring after stimulation but excessive changes in CBF compared with CMRO2 arising with protracted stimulation.

摘要

在大鼠体感皮层进行前爪电刺激期间,使用激光多普勒测量脑血流量(CBF)的变化,并使用氧依赖磷光猝灭法测量微血管O₂氧分压的变化。前爪电刺激引起的信号平均CBF反应包括一个初始峰值(刺激开始后t = 3.1 +/- 0.8秒),随后是一个平台期,该平台期在整个刺激过程中持续存在。相比之下,微血管O₂张力变化延迟,在刺激开始后t = 23.5 +/- 1.7秒达到一个平台水平,该水平在刺激持续期间以及刺激终止后持续数秒,然后恢复到基线水平。使用菲克方程和这些动态测量结果,确定了功能刺激期间计算出的脑氧代谢率(CMRO₂)的变化。计算出的CMRO₂反应最初与CBF相当,但在长时间刺激下,CMRO₂变化约为CBF变化的三分之一。这些结果表明,存在一种复杂的关系,刺激后最初CBF和CMRO₂变化相当,但与CMRO₂相比,长时间刺激下CBF变化过大。

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