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用于客体永久性认知任务解决的小鼠选择。

Selection of Mice for Object Permanence Cognitive Task Solution.

作者信息

Perepelkina Olga Viktorovna, Poletaeva Inga Igorevna

机构信息

Biology Department, Moscow State University, Vorobieby Gori, 1, Build. 12, 119234 Moscow, Russia.

出版信息

Neurol Int. 2022 Aug 29;14(3):696-706. doi: 10.3390/neurolint14030058.

Abstract

The selection of mice for high ("plus") and low ("minus") scores in the puzzle-box test was performed over five generations. This test evaluates the success (or failure) in finding the underpass, leading to the dark part of the box, when it is blocked. This means that the mouse is either able or unable to operate the "object permanence rule" (one of the index's cognitive abilities). For the "+" strain, animals were bred who solved the test when the underpass test blocked with a plug; the "-" strain comprised those who were unable to solve this task. In mice of the "+" strain, the proportion of animals that was able to solve "plug" stages of the test was higher than in the "-" strain and in the non-selected genetically heterogeneous population. The "+" mice ate significantly more new food in the hyponeophagia test. Animals of both strains demonstrated the ability to "manipulate" the plug blocking the underpass, touching the plug with their paws and muzzle, although the majority of "-" mice were unable to open the underpass effectively. Thus, mice of both selected strains demonstrated that they were able to understand that the underpass does exist, but only "+"-strain animals (at least the majority of them) were able to realize the solution. The selection for plug-stage solution success affected the mouse's ability to open the hidden underpass.

摘要

在迷宫箱测试中,对小鼠进行了五代高(“+”)分和低(“-”)分的选择。该测试评估当通往箱子黑暗部分的地下通道被堵住时,小鼠找到地下通道的成功(或失败)情况。这意味着小鼠要么能够运用“客体永久性规则”(该指标的认知能力之一),要么不能。对于“+”品系,选择那些在地下通道被塞子堵住的测试中能解决问题的动物进行繁殖;“-”品系则包括那些无法解决此任务的动物。在“+”品系的小鼠中,能够解决测试“塞子”阶段问题的动物比例高于“-”品系和未经过选择的遗传异质群体。在新食物偏好测试中,“+”小鼠吃的新食物明显更多。两个品系的动物都表现出“操纵”堵住地下通道的塞子的能力,用爪子和口鼻触碰塞子,尽管大多数“-”小鼠无法有效地打开地下通道。因此,两个选择品系的小鼠都表明它们能够理解地下通道确实存在,但只有“+”品系的动物(至少大多数)能够找到解决办法。对塞子阶段解决问题成功与否的选择影响了小鼠打开隐藏地下通道的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e09/9502561/e1c5a0641e5c/neurolint-14-00058-g001.jpg

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