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Disconnection of the Hippocampal–Perirhinal Cortical Circuits Severely Disrupts Object–Place Paired Associative Memory

机译:海马-周围神经皮质回路的断开严重破坏了对象-位置配对记忆

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摘要

The hippocampus and the perirhinal cortex (PR) are reciprocally connected both directly and indirectly via the entorhinal cortex. Although it has been hypothesized that the two regions should have intimate functional interactions with each other on the basis of the anatomical connectivity, many lesion studies have demonstrated functional dissociations instead between the hippocampus and PR. To show a tight functional relationship between the two regions, we used reversible inactivation techniques targeting both the hippocampus and PR within subjects, combined with a biconditional memory task in which the rat must consider information about objects and their locations. Specifically, rats were implanted with two sets of bilateral cannulas into the hippocampus and PR, and were tested in an object–place paired-associate task in a radial maze. While alternating between two arms, the rats were required to choose one of the objects exclusively associated with a given arm for food. Bilateral muscimol (MUS) injections into either the hippocampus or PR equally produced chance level performance. When a functional disconnection procedure was used to disrupt the interaction between the hippocampus and PR, contralateral MUS injections into the hippocampus and PR resulted in severe impairment in performance. However, inactivating the hippocampus and PR ipsilaterally did not affect the performance. In a simple object discrimination task, the same functional disconnection protocol with MUS did not affect the performance. The results powerfully demonstrate that the hippocampus, the PR, and their functional interactions are all indispensable when objects and their spatial locations must be processed at the same time.
机译:海马和周围神经皮层(PR)通过内脏皮质直接和间接地相互连接。尽管已经假设这两个区域应在解剖学连通性的基础上相互之间具有紧密的功能相互作用,但许多病变研究已证明,海马体与PR之间存在功能分离。为了显示两个区域之间紧密的功能关系,我们使用了针对受试者内海马和PR的可逆灭活技术,并结合了双条件记忆任务,其中老鼠必须考虑有关对象及其位置的信息。具体来说,将大鼠的两组双侧插管植入海马和PR中,并在径向迷宫中的对象-位置配对相关任务中进行了测试。在两只手臂之间交替进行时,要求大鼠选择专门与给定手臂相关的食物之一。向海马或PR注射双侧麝香酚(MUS)同样可以提高机率。当使用功能性断开程序破坏海马与PR之间的相互作用时,向海马和PR对侧MUS注射会导致性能严重受损。但是,同侧灭活海马和PR不会影响性能。在简单的对象识别任务中,具有MUS的相同功能断开协议不会影响性能。结果有力地证明,当必须同时处理物体及其空间位置时,海马,PR及其功能相互作用都是必不可少的。

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