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患有小发作样癫痫的大鼠的局部脑葡萄糖利用情况

Local cerebral glucose utilization in rats with petit mal-like seizures.

作者信息

Nehlig A, Vergnes M, Marescaux C, Boyet S, Lannes B

机构信息

INSERM U272, Université de Nancy I, France.

出版信息

Ann Neurol. 1991 Jan;29(1):72-7. doi: 10.1002/ana.410290113.

Abstract

The quantitative 2-[14C]deoxyglucose autoradiographic method was applied to the measurement of local cerebral metabolic rates for glucose in a model of genetic petit mal-like seizures in a strain of Wistar rats. During the experimental period, epileptic rats exhibited synchronous spike-and-wave discharges recorded from the cerebral cortex, whereas the electroencephalographic pattern of control animals was normal. An overall consistent increase in local cerebral metabolic rates for glucose was observed in epileptic rats as compared to nonepileptic control rats. This increase was statistically significant in 52 of the 59 cerebral structures studied and concerned all cerebral functional systems. These results are in accordance with positron emission tomography measurements in humans with typical childhood absence epilepsy. There is a lack of anatomical correlation between areas demonstrating hypermetabolism and areas where spike-and-wave discharges are recorded. Thus, the diffuse increase in cerebral energy metabolism in epileptic rats as compared to controls is not directly related to the occurrence of spike and wave discharges.

摘要

采用定量2-[14C]脱氧葡萄糖放射自显影法,对Wistar大鼠遗传性失神样癫痫模型的局部脑葡萄糖代谢率进行测量。实验期间,癫痫大鼠大脑皮层记录到同步棘慢波放电,而对照动物的脑电图模式正常。与非癫痫对照大鼠相比,癫痫大鼠局部脑葡萄糖代谢率总体上持续升高。在所研究的59个脑结构中,有52个结构的这种升高具有统计学意义,且涉及所有脑功能系统。这些结果与典型儿童失神癫痫患者的正电子发射断层扫描测量结果一致。代谢亢进区域与棘慢波放电记录区域之间缺乏解剖学相关性。因此,与对照组相比,癫痫大鼠脑能量代谢的弥漫性增加与棘慢波放电的发生没有直接关系。

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