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Neural Representation of Overlapping Path Segments and Reward Acquisitions in the Monkey Hippocampus

机译:猴子海马重叠路径段的神经表示和奖励获取

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摘要

Disambiguation of overlapping events is thought to be the hallmark of episodic memory. Recent rodent studies have reported that when navigating overlapping path segments in the different routes place cell activity in the same overlapping path segments were remapped according to different goal locations in different routes. However, it is unknown how hippocampal neurons disambiguate reward delivery in overlapping path segments in different routes. In the present study, we recorded monkey hippocampal neurons during performance of three virtual navigation (VN) tasks in which a monkey alternately navigated two different routes that included overlapping path segments (common central hallway) and acquired rewards in the same locations in overlapping path segments by manipulating a joystick. The results indicated that out of 106 hippocampal neurons, 57 displayed place-related activity (place-related neurons), and 18 neurons showed route-dependent activity in the overlapping path segments, consistent with a hippocampal role in the disambiguation of overlapping path segments. Moreover, 75 neurons showed neural correlates to reward delivery (reward-related neurons), whereas 56 of these 75 reward-related neurons showed route-dependent reward-related activity in the overlapping path segments. The ensemble activity of reward-related neurons represented reward delivery, locations, and routes in the overlapping path segments. In addition, ensemble activity patterns of hippocampal neurons more distinctly represented overlapping path segments than non-overlapping path segments. The present results provide neurophysiological evidence of disambiguation in the monkey hippocampus, consistent with a hippocampal role in episodic memory, and support a recent computational model of “neural differentiation,” in which overlapping items are better represented by repeated retrieval with competitive learning.
机译:重叠事件的消歧被认为是情节记忆的标志。最近的啮齿动物研究报告说,在不同路径中导航重叠路径段时,将根据不同路径中不同目标位置重新映射相同重叠路径段中的细胞活动。然而,未知海马神经元如何在不同路径的重叠路径段中消除奖励传递的歧义。在本研究中,我们在执行三个虚拟导航(VN)任务期间记录了猴子海马神经元,在该三个虚拟导航任务中,猴子交替导航了两条不同的路线,其中包括重叠的路径段(公共中央走廊),并且在重叠的路径段中的相同位置获得了奖励通过操纵操纵杆。结果表明,在106个海马神经元中,有57个显示出与位置相关的活动(与位置相关的神经元),而18个神经元在重叠的路径段中显示了路径依赖的活性,这与海马在消除重叠的路径段中的作用一致。此外,有75个神经元显示出与奖励传递相关的神经(奖励相关神经元),而这75个与奖励相关的神经元中有56个在重叠路径段中显示了与路径相关的与奖励相关的活动。奖励相关神经元的合奏活动代表了重叠路径段中的奖励交付,位置和路线。另外,海马神经元的集合活动模式比非重叠路径段更清楚地表示重叠路径段。本研究结果提供了猴子海马体消歧的神经生理证据,与海马在情节性记忆中的作用相一致,并支持“神经分化”的最新计算模型,其中重叠项可以通过竞争性学习的反复检索更好地表示。

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