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Morris 水迷宫:一种用于评估空间学习和记忆的多功能且相关的工具。

Morris water maze: a versatile and pertinent tool for assessing spatial learning and memory.

机构信息

Department of Neurosciences, School of Medical Sciences Universiti Sains Malaysia, Kampus Kesihatan, Kubang Kerian, 16150 Kota Bharu, Kelantan, Malaysia.

Centre for Drug Research, Universiti Sains Malaysia, 11800, Penang, Malaysia.

出版信息

Exp Anim. 2022 Aug 5;71(3):264-280. doi: 10.1538/expanim.21-0120. Epub 2022 Mar 18.

Abstract

Since its development about 40 years ago (1981-2021), Morris water maze has turned into a very popular tool for assessing spatial learning and memory. Its many advantages have ensured its pertinence to date. These include its effectiveness in evaluating hippocampal-dependent learning and memory, exemption from motivational differences across diverse experimental manipulations, reliability in various cross-species studies, and adaptability to many experimental conditions with various test protocols. Nonetheless, throughout its establishment, several experimental and analysis loopholes have galvanized researchers to assess ways in which it could be improved and adapted to fill this gap. Therefore, in this review, we briefly summarize these developments since the early years of its establishment through to the most recent advancements in computerized analysis, offering more comprehensive analysis paradigms. In addition, we discuss the adaptability of the Morris water maze across different test versions and analysis paradigms, providing suggestions with regard to the best paradigms for particular experimental conditions. Hence, the proper selection of the experimental protocols, analysis paradigms, and consideration of the assay's limitations should be carefully considered. Given that appropriate measures are taken, with various adaptations made, the Morris water maze will likely remain a relevant tool to assess the mechanisms of spatial learning and memory.

摘要

自 40 年前(1981-2021 年)开发以来,水迷宫已成为评估空间学习和记忆的一种非常流行的工具。其诸多优势确保了它至今仍具有相关性。这些优势包括其评估海马依赖型学习和记忆的有效性、排除了不同实验操作之间的动机差异、在各种跨物种研究中的可靠性,以及对各种具有不同测试方案的实验条件的适应性。尽管如此,在其建立过程中,一些实验和分析漏洞促使研究人员评估可以改进和适应水迷宫的方法,以填补这一空白。因此,在这篇综述中,我们通过最近在计算机化分析方面的进展,简要总结了自其建立早期以来的这些发展,提供了更全面的分析范式。此外,我们讨论了水迷宫在不同测试版本和分析范式中的适应性,就特定实验条件下的最佳范式提供了建议。因此,应仔细考虑实验方案、分析范式的选择,并考虑测定法的局限性。只要采取适当的措施并进行适当的调整,水迷宫仍可能是评估空间学习和记忆机制的相关工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8a90/9388345/2fdfa9995cb3/expanim-71-264-g001.jpg

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