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在反复短暂性脑缺血期间,通过1H和31P核磁共振波谱法同步检测脑电图、乳酸和磷的变化。

Concomitant EEG, lactate, and phosphorus changes by 1H and 31P NMR spectroscopy during repeated brief cerebral ischemia.

作者信息

Conger K A, Halsey J H, Luo K L, Tan M J, Pohost G M, Hetherington H P

机构信息

Department of Neurology, University of Alabama at Birmingham.

出版信息

J Cereb Blood Flow Metab. 1995 Jan;15(1):26-32. doi: 10.1038/jcbfm.1995.3.

Abstract

Pilots of high-performance aircraft are subject to transient loss of consciousness due to cerebral ischemia resulting from sudden high gravitational stress. To assess the effects of gravitational stress-induced blackout on cerebral metabolism and electrical function, we developed an animal model in which global cerebral ischemia is produced repeatedly at short intervals. Rats were prepared by ligation of subclavian and external carotid arteries and the right carotid artery was cannulated bidirectionally to measure circle of Willis and systemic pressures. Ischemia was induced by inflation of an occluder about the left carotid artery. Interleaved 31P and 1H NMR spectra were acquired on a 4.7-T Biospec system simultaneously with EEG recordings. We report results from 20 experiments of 30-min duration in which rats were subject to 30 1-min ischemia:reflow cycles of 10I:50R, 20I:40R, 30I:30R, and 40I:20R [numbers are seconds of ischemia (I) and reflow (R) during each 1-min cycle]. During ischemia the graded delivery of the ischemic insult permitted direct correlations between 2- to 5- and 7- to 20-Hz EEG activity and progressive changes in pH, lactate, ATP, phosphocreatine (PCr) and Pi. The best correlations were found between EEG activity and pH and PCr; correlation coefficients ranged from 0.93 to 0.95. A loss of EEG activity was observed without significant sustained energy loss in all but the most severe cycle.

摘要

高性能飞机飞行员可能会因突然的高重力应激导致脑缺血而出现短暂意识丧失。为了评估重力应激引起的昏厥对脑代谢和电功能的影响,我们开发了一种动物模型,在该模型中,每隔很短时间就会反复发生全脑缺血。通过结扎锁骨下动脉和颈外动脉来制备大鼠,右颈动脉双向插管以测量 Willis 环和全身压力。通过在左颈动脉周围充气封堵器来诱导缺血。在 4.7-T Biospec 系统上同时采集 31P 和 1H NMR 谱,并记录脑电图。我们报告了 20 个持续 30 分钟的实验结果,在这些实验中,大鼠经历了 30 个 1 分钟的缺血:再灌注循环,即 10I:50R、20I:40R、30I:30R 和 40I:20R[数字分别表示每个 1 分钟循环中的缺血(I)和再灌注(R)时间(秒)]。在缺血期间,分级施加缺血性损伤使得能够直接关联 2 至 5 赫兹和 7 至 20 赫兹的脑电图活动与 pH、乳酸、ATP、磷酸肌酸(PCr)和无机磷(Pi)的渐进变化。脑电图活动与 pH 和 PCr 之间的相关性最佳;相关系数范围为 0.93 至 0.95。除了最严重的循环外,在所有循环中均观察到脑电图活动丧失,但没有明显的持续能量损失。

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