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[记忆机制的解剖功能研究方法:通过脱氧葡萄糖分析电刺激小鼠内嗅皮层所诱导的边缘系统激活]

[Anatomico-functional approach to the mechanisms of memory: analysis by deoxyglucose of the limbic activation induced by electric stimulation of the mouse entorhinal cortex].

作者信息

Sif J, Gauthier M, Destrade C

出版信息

C R Acad Sci III. 1986;302(11):423-8.

PMID:2424577
Abstract

Previous behavioral studies using post-training electrical stimulation of the brain have suggested that the lateral entorhinal cortex (LEC) is involved in mnemonic processes. In an attempt to characterize in vivo the neural pathways activated by LEC stimulation, regional patterns of uptake of 14C-2-deoxy-D-glucose (2-DG) were assessed in BALB/c mouse brain. The animals were implanted with a bipolar electrode in the LEC and a catheter in the jugular vein. In addition, four animals received an electrolytic lesion of the perforant path (PP) in order to disconnect the LEC from the hippocampus. The LEC was stimulated at subconvulsive intensity for 5 min. before and 30 min. after an injection of 2-DG. Stimulation of the LEC produced significant increases in 2-DG radioactivity in the hippocampus (dentate gyrus, CA3, CA1), subiculum and pre-subiculum. Demonstrable labelling was found in brain areas, beyond the hippocampal formation: piriform cortex, amygdala, cingulate cortex, Diagonal Band of Broca, the medial and lateral septal nuclei and the medial forebrain bundle. After PP lesion, the metabolic activity disappeared ipsilaterally in subiculum, dorsal part of the hippocampus, in some thalamic nuclei and in mammillary bodies, but all other extra-hippocampal labelling was unchanged. These data considered along with our previous behavioral results, suggest that LEC stimulation may act on mnemonic processes by the recruitment of cortical and subcortical extra-hippocampal structures (e.g. amygdala and cingulate cortex) directly or indirectly connected to the entorhinal cortex.

摘要

以往利用训练后脑部电刺激进行的行为学研究表明,外侧内嗅皮质(LEC)参与记忆过程。为了在体内表征由LEC刺激激活的神经通路,在BALB/c小鼠脑内评估了14C-2-脱氧-D-葡萄糖(2-DG)的摄取区域模式。给动物在LEC植入双极电极,并在颈静脉植入导管。此外,为了切断LEC与海马体的联系,对四只动物进行了穿通通路(PP)的电解损伤。在注射2-DG前5分钟和注射后30分钟,以亚惊厥强度刺激LEC。刺激LEC导致海马体(齿状回、CA3、CA1)、下托和前下托的2-DG放射性显著增加。在海马结构以外的脑区也发现了明显的标记:梨状皮质、杏仁核、扣带回皮质、布洛卡斜带、内侧和外侧隔核以及内侧前脑束。PP损伤后,下托、海马体背侧部分、一些丘脑核和乳头体的代谢活动同侧消失,但所有其他海马体外标记均未改变。结合我们之前的行为学结果来看,这些数据表明,LEC刺激可能通过募集与内嗅皮质直接或间接相连的皮质和皮质下海马体外结构(如杏仁核和扣带回皮质)来作用于记忆过程。

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