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没有完整的隔区回路,位置细胞的放电活动无法支持导航。

Place cell firing cannot support navigation without intact septal circuits.

机构信息

Department of Physiology and Pharmacology, State University of New York, Downstate Medical Center, Brooklyn, New York.

Department of Neurobiology, Duke University Medical School, Durham, North Carolina.

出版信息

Hippocampus. 2020 Mar;30(3):175-191. doi: 10.1002/hipo.23136. Epub 2019 Jul 13.

Abstract

Though it has been known for over half a century that interference with the normal activity of septohippocampal neurons can abolish hippocampal theta rhythmicity, a definitive answer to the question of its function has remained elusive. To clarify the role of septal circuits and theta in location-specific activity of place cells and spatial behavior, three drugs were delivered to the medial septum of rats: Tetracaine, a local anesthetic; muscimol, a GABA-A agonist; and gabazine, a GABA-A antagonist. All three drugs disrupted normal oscillatory activity in the hippocampus. However, tetracaine and muscimol both reduced spatial firing and interfered with the rat's ability to navigate to a hidden goal. After gabazine, location-specific firing was preserved in the absence of theta, but rats were unable to accurately locate the hidden goal. These results indicate that theta is unnecessary for location-specific firing of hippocampal cells, and that place cell activity cannot support accurate navigation when septal circuits are disrupted.

摘要

尽管半个多世纪以来人们已经知道,干扰隔海马神经元的正常活动可以消除海马θ节律,但对于其功能的明确答案仍然难以捉摸。为了阐明隔区回路和θ在位置细胞的位置特异性活动和空间行为中的作用,三种药物被递送至大鼠的内侧隔区:Tetracaine,一种局部麻醉剂;muscimol,一种 GABA-A 激动剂;gabazine,一种 GABA-A 拮抗剂。这三种药物都破坏了海马体的正常振荡活动。然而,Tetracaine 和 muscimol 都降低了空间发射,并干扰了大鼠到达隐藏目标的能力。gabazine 之后,在没有θ的情况下保留了位置特异性发射,但大鼠无法准确定位隐藏的目标。这些结果表明,θ对于海马细胞的位置特异性发射不是必需的,并且当隔区回路被破坏时,位置细胞活动不能支持准确的导航。

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