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海兔神经元通过使用θ节律来表示海马依赖任务的多个变量。

Subicular neurons represent multiple variables of a hippocampal-dependent task by using theta rhythm.

机构信息

Department of Brain and Cognitive Sciences, Seoul National University, Seoul, Korea.

出版信息

PLoS Biol. 2022 Jan 31;20(1):e3001546. doi: 10.1371/journal.pbio.3001546. eCollection 2022 Jan.

Abstract

The subiculum is positioned at a critical juncture at the interface of the hippocampus with the rest of the brain. However, the exact roles of the subiculum in most hippocampal-dependent memory tasks remain largely unknown. One obstacle to make comparisons of neural firing patterns between the subiculum and hippocampus is the broad firing fields of the subicular cells. Here, we used spiking phases in relation to theta rhythm to parse the broad firing field of a subicular neuron into multiple subfields to find the unique functional contribution of the subiculum while male rats performed a hippocampal-dependent visual scene memory task. Some of the broad firing fields of the subicular neurons were successfully divided into multiple subfields similar to those in the CA1 by using the theta phase precession cycle. The new paradigm significantly improved the detection of task-relevant information in subicular cells without affecting the information content represented by CA1 cells. Notably, we found that multiple fields of a single subicular neuron, unlike those in the CA1, carried heterogeneous task-related information such as visual context and choice response. Our findings suggest that the subicular cells integrate multiple task-related factors by using theta rhythm to associate environmental context with action.

摘要

下托位于海马体与大脑其他部分的交界处,处于关键位置。然而,下托在大多数海马体依赖的记忆任务中的具体作用在很大程度上仍然未知。一个障碍是,要比较下托和海马体之间的神经放电模式,下托细胞的宽放电场是一个问题。在这里,我们使用与 theta 节律相关的尖峰相位将下托神经元的宽放电场分为多个子场,以在雄性大鼠执行海马体依赖的视觉场景记忆任务时找到下托的独特功能贡献。通过使用 theta 相位进动周期,一些下托神经元的宽放电场成功地分为类似于 CA1 的多个子场。新的范式显著提高了在下托细胞中检测到与任务相关的信息的能力,而不会影响 CA1 细胞所代表的信息含量。值得注意的是,我们发现,与 CA1 中的情况不同,单个下托神经元的多个场域携带异构的与任务相关的信息,例如视觉环境和选择反应。我们的研究结果表明,下托细胞通过使用 theta 节律将环境上下文与动作联系起来,整合了多个与任务相关的因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2984/8830791/eb6595a7dc4d/pbio.3001546.g001.jpg

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