Mayevsky A, Lebourdais S, Chance B
J Neurosci Res. 1980;5(3):173-82. doi: 10.1002/jnr.490050302.
The present investigation was aimed at studying the interrelation between hemodynamic, metabolic and oxygen tension in the brain of the gerbil exposed to various physiological and pathological conditions in the awake and anesthetized states. The hemodynamic and metabolic activities were evaluated by the DC fluorometer/reflectometer and were correlated to the pO2 values obtained by a surface electrode. When the awake brain was exposed to spreading depression (SD), a typical oxidation cycle of the NADH was recorded concomitant with a decrease cycle of the pO2. Under anesthetic effect the same dip in pO2 response was found but the NADH showed a "reduction cycle." The pO2 values were in a very good correlation with the changes in the reflectance trace, namely, the pO2 was a good indicator of the vasoconstriction-vasodilatation responses under various conditions. The same model was used under hypoxic and ischemic conditions, as well as under the effects of anesthetics.
本研究旨在探讨清醒和麻醉状态下,暴露于各种生理和病理条件的沙鼠大脑中血流动力学、代谢和氧张力之间的相互关系。通过直流荧光计/反射计评估血流动力学和代谢活动,并将其与表面电极获得的pO2值相关联。当清醒大脑暴露于扩散性抑制(SD)时,记录到NADH的典型氧化循环,同时pO2下降。在麻醉作用下,发现pO2反应有相同的下降,但NADH显示出“还原循环”。pO2值与反射率曲线的变化具有很好的相关性,即pO2是各种条件下血管收缩-血管舒张反应的良好指标。在缺氧、缺血条件以及麻醉作用下使用相同的模型。