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外侧缰状回核团中细胞组合的处理。

Processing of cell assemblies in the lateral entorhinal cortex.

机构信息

AI Foundations, IBM T.J. Watson Research Center, Yorktown Heights, NY 10598, USA.

Department of Neuroscience, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA 19104, USA.

出版信息

Rev Neurosci. 2022 Apr 22;33(8):829-847. doi: 10.1515/revneuro-2022-0011. Print 2022 Dec 16.

Abstract

There is evidence that olfactory cortex responds to its afferent input with the generation of cell assemblies: collections of principal neurons that fire together over a time scale of tens of ms. If such assemblies form an odor representation, then a fundamental question is how each assembly then induces neuronal activity in downstream structures. We have addressed this question in a detailed model of superficial layers of lateral entorhinal cortex, a recipient of input from olfactory cortex and olfactory bulb. Our results predict that the response of the fan cell subpopulation can be approximated by a relatively simple Boolean process, somewhat along the lines of the McCulloch/Pitts scheme; this is the case because of the sparsity of recurrent excitation amongst fan cells. However, because of recurrent excitatory connections between layer 2 and layer 3 pyramidal cells, synaptic and probably also gap junctional, the response of pyramidal cell subnetworks cannot be so approximated. Because of the highly structured anatomy of entorhinal output projections, our model suggests that downstream targets of entorhinal cortex (dentate gyrus, hippocampal CA3, CA1, piriform cortex, olfactory bulb) receive differentially processed information.

摘要

有证据表明,嗅觉皮层通过产生细胞集合来对其传入输入做出反应:这些细胞集合是在几十毫秒的时间尺度上一起发射的主要神经元的集合。如果这些集合构成了气味的表示,那么一个基本问题是每个集合如何随后诱导下游结构中的神经元活动。我们在外侧缰状回浅层的详细模型中解决了这个问题,该模型接收来自嗅觉皮层和嗅球的输入。我们的结果预测,扇区细胞亚群的反应可以通过相对简单的布尔过程来近似,这有点类似于 McCulloch/Pitts 方案;之所以如此,是因为扇区细胞之间的递归兴奋稀疏。然而,由于层 2 和层 3 锥体细胞之间存在兴奋性连接,包括突触和可能的缝隙连接,因此锥体细胞子网的反应不能如此近似。由于缰状回输出投射具有高度结构化的解剖结构,我们的模型表明,缰状回皮层的下游靶标(齿状回、海马 CA3、CA1、梨状皮层、嗅球)接收到经过不同处理的信息。

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