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N-甲基-D-天冬氨酸(NMDA)阻断抑制丘脑前头部方向细胞的经验依赖性修饰。

NMDA blockade inhibits experience-dependent modification of anterior thalamic head direction cells.

作者信息

Berkowitz Laura E, Ybarra Isaac, Jones Jessicah A, Amato Michele E, Rodriguez Annette M, Calton Jeffrey L

机构信息

Department of Psychology, California State University-Sacramento.

出版信息

Behav Neurosci. 2015 Apr;129(2):113-28. doi: 10.1037/bne0000047.

Abstract

Head Direction (HD) cells of the rodent Papez circuit are thought to reflect the spatial orientation of the animal. Because NMDA transmission is important for spatial behavior, we sought to determine the effects of NMDA blockade on the basic directional signal carried by HD cells and on experience-dependent modification of this system. In Experiment 1, HD cells were recorded from the anterior dorsal thalamus in female Long-Evans rats while they foraged in a familiar enclosure following administration of the NMDA antagonist CPP or saline. While the drug produced a significant decrease in peak firing rates, it failed to affect the overall directional specificity and landmark control of HD cells. Experiment 2 took place over 2 days and assessed whether the NMDA antagonist would interfere with the stabilization of the HD network in a novel environment. On Day 1 the animal was administered CPP or saline and placed in a novel enclosure to allow the stabilization of the HD signal relative to the new environmental landmarks. On Day 2 the animal was returned to the formerly novel enclosure to determine if the enclosure specific direction-dependent activity established on Day 1 was maintained. In contrast to HD cells from control animals, cells from animals receiving CPP during the initial exposure to the novel enclosure did not maintain the same direction-dependent activity relative to the enclosure in the subsequent drug-free exposure. These findings demonstrate that plasticity in the HD system is dependent on NMDA transmission similar to many other forms of spatial learning.

摘要

啮齿动物帕佩兹回路的头部方向(HD)细胞被认为反映了动物的空间方位。由于NMDA传递对空间行为很重要,我们试图确定NMDA阻断对HD细胞携带的基本方向信号以及该系统的经验依赖性修饰的影响。在实验1中,在雌性Long-Evans大鼠服用NMDA拮抗剂CPP或生理盐水后,在熟悉的围栏中觅食时,从前背丘脑记录HD细胞。虽然药物使峰值放电率显著降低,但它并未影响HD细胞的整体方向特异性和地标控制。实验2持续2天,评估NMDA拮抗剂是否会在新环境中干扰HD网络的稳定。在第1天,给动物服用CPP或生理盐水,并将其置于新围栏中,以使HD信号相对于新的环境地标稳定下来。在第2天,将动物放回先前的新围栏中,以确定在第1天建立的围栏特定方向依赖性活动是否得以维持。与对照动物的HD细胞不同,在最初接触新围栏期间接受CPP的动物的细胞在随后的无药物暴露中相对于围栏并未维持相同的方向依赖性活动。这些发现表明,HD系统中的可塑性依赖于NMDA传递,这与许多其他形式的空间学习类似。

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