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Neural Firing Patterns Are More Schematic and Less Sensitive to Changes in Background Visual Scenes in the Subiculum than in the Hippocampus

机译:与海马区相比神经放电模式对下丘脑背景视觉场景的变化更具有示意图对背景的视觉敏感度更低

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摘要

Literature suggests that the hippocampus is central to processing visual scenes to remember contextual information, but the roles of its downstream structure, subiculum, remain unknown. Here, single units were recorded simultaneously in the dorsal CA1 and subiculum while male rats made spatial choices using visual scenes as cues in a T-maze. The firing fields of subicular neurons were schematically organized following the task structure, largely divided into pre-choice and post-choice epochs, whereas those of CA1 cells were more punctate and bound to specific locations. When the rats were tested with highly familiar scenes, neurons in the CA1 and subiculum were indistinguishable in coding the task-related information (e.g., scene, choice) through rate remapping. However, when the familiar scenes were blurred parametrically, the neurons in the CA1 responded sensitively to the novelty in task demand and changed its representations parametrically following the physical changes of the stimuli, whereas these functional characteristics were absent in the subiculum. These results suggest that the unique function of the hippocampus is to acquire contextual representations in association with discrete positions in space, especially when facing new and ambiguous scenes, whereas the subiculum may translate the position-bound visual contextual information of the hippocampus into schematic codes once learning is established.>SIGNIFICANCE STATEMENT Although the potential functional significance has been recognized for decades for the subiculum, its exact roles in a goal-directed memory task still remain elusive. In the current study, we present experimental evidence that may indicate that the neural population in the subiculum could translate the location-bound spatial representations of the hippocampus into more schematic representations of task demands. Our findings also imply that the visual scene-based codes conveyed by the hippocampus and subiculum may be identical in a well learned task, whereas the hippocampus may be more specialized in representing altered visual scenes than the subiculum.
机译:文献表明,海马在处理视觉场景以记住上下文信息方面至关重要,但其下游结构下丘脑的作用仍然未知。在这里,同时在背侧CA1和下丘脑中记录了单个单位,而雄性大鼠则使用视觉场景作为T型迷宫的线索来进行空间选择。根据任务结构示意性地组织了亚层神经元的发射场,主要分为选择前期和选择后期,而CA1细胞的点状更集中于特定位置。当用高度熟悉的场景对大鼠进行测试时,CA1和下丘脑中的神经元在通过速率重新映射来编码与任务相关的信息(例如场景,选择)时是无法区分的。但是,当熟悉的场景在参数上变得模糊时,CA1中的神经元会对任务需求的新颖性做出敏感的响应,并随着刺激物的物理变化而在参数上改变其表示形式,而这些功能特性在下丘脑中却不存在。这些结果表明,海马的独特功能是与空间中的离散位置相关联地获取上下文表示,尤其是在面对新的和模棱两可的场景时,而下颌可以将海马位置绑定的视觉上下文信息一次转换为示意图代码建立学习。>意义声明尽管几十年来人们已经认识到了亚学科的潜在功能意义,但其在目标记忆任务中的确切作用仍然难以捉摸。在当前的研究中,我们提供实验证据,可能表明下丘脑中的神经种群可以将海马体的位置约束空间表示转化为任务需求的更多示意图表示。我们的发现还暗示,海马和下丘脑传达的基于视觉场景的代码在学识渊博的任务中可能是相同的,而海马可能比下丘脑更擅长表示变化的视觉场景。

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