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SPATIAL LEARNING WITH A MINISLAB IN THE DORSAL HIPPOCAMPUS

机译:背侧海马MINISLAB的空间学习

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We have determined the volume and location of hippocampal tissue required for normal acquisition of a spatial memory task. Ibotenic acid was used to make bilateral symmetric lesions of 20-100% of hippocampal volume. Even a small transverse block (minislab) of the hippocampus (down to 26% of the total) could support spatial learning in a water maze, provided it was at the septal (dorsal) pole of the hippocampus. Lesions of the septal pole, leaving 60% of the hippocampi intact, caused a learning deficit, although normal electrophysiological responses, synaptic plasticity, and preserved acetylcholinesterase staining argue for adequate function of the remaining tissue. Thus, with an otherwise normal brain, hippocampal-dependent spatial learning only requires a minislab of dorsal hippocampal tissue. [References: 48]
机译:我们确定了正常获取空间记忆任务所需的海马组织的体积和位置。伊波烯酸被用于制造海马体积的20-100%的双侧对称病变。即使是海马的一小块横向横断面(占总数的26%)也可以在水迷宫中支持空间学习,前提是它位于海马的中隔(背侧)极。尽管正常的电生理反应,突触可塑性和保留的乙酰胆碱酯酶染色表明剩余组织的功能正常,但隔垫极的病变保留了60%的海马完整,导致了学习障碍。因此,对于其他正常的大脑,依赖海马的空间学习仅需要背海马组织的小板。 [参考:48]

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