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海马切除术对大鼠习惯化、探究行为和空间记忆的影响。

Influence of hippocampectomy on habituation, exploratory behavior, and spatial memory in rats.

作者信息

Wright John W, Murphy Eric S, Elijah Itoro E, Holtfreter Kelby L, Davis Chris J, Olson Mikel L, Muhunthan Kalyani, Harding Joseph W

机构信息

Department of Psychology, Washington State University, Pullman, WA 99164-4820, USA.

出版信息

Brain Res. 2004 Oct 8;1023(1):1-14. doi: 10.1016/j.brainres.2004.06.083.

Abstract

Two frequently cited functions of the hippocampus are mediation of spatial memories and habituation. The present investigation employed head-shake response (HSR) as the habituated behavior in intact and bilaterally hippocampectomized rats. This HSR appears to be minimally influenced by spatial cues. These rats were further tested on two behavioral paradigms that make use of spatial cues, namely open field object exploration, and the Morris water maze. The results indicate that hippocampectomized rats revealed habituation of the HSR, but not to objects within the open field. In agreement with previous reports, hippocampectomized rats were severely impaired both in acquiring and recalling the location of the submerged platform in the Morris water maze task. In a separate experiment independent groups of rats were trained on one of these three paradigms, and tissues were collected from hippocampal, prefrontal, and piriform cortices for the measurement of matrix metalloproteinases (MMPs) as markers of neural plasticity. There were significant MMP-9 elevations in the prefrontal and piriform cortices of rats tested using the object exploration task, in the prefrontal and hippocampal cortices of rats that solved the Morris water maze task, but minimal MMP changes in any tissues taken from HSR habituated rats. These results question the hypothesis that habituation is solely mediated by the hippocampus in favor of a process that utilizes different brain structures and degrees of neural plasticity dependent upon task requirements.

摘要

海马体的两个经常被提及的功能是介导空间记忆和习惯化。本研究采用摇头反应(HSR)作为完整和双侧海马切除大鼠的习惯化行为。这种HSR似乎受空间线索的影响最小。这些大鼠在两种利用空间线索的行为范式上进一步接受测试,即旷场物体探索和莫里斯水迷宫。结果表明,海马切除大鼠表现出HSR的习惯化,但对旷场内的物体没有习惯化。与先前的报道一致,海马切除大鼠在莫里斯水迷宫任务中获取和回忆水下平台位置方面均严重受损。在一项单独的实验中,将独立的大鼠组训练于这三种范式之一,并从海马、前额叶和梨状皮质收集组织,用于测量基质金属蛋白酶(MMPs)作为神经可塑性的标志物。在使用物体探索任务测试的大鼠的前额叶和梨状皮质中,在解决莫里斯水迷宫任务的大鼠的前额叶和海马皮质中,MMP-9有显著升高,但在HSR习惯化大鼠获取的任何组织中MMP变化最小。这些结果对习惯化仅由海马体介导的假设提出了质疑,支持了一种利用不同脑结构和取决于任务要求的神经可塑性程度的过程。

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