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Low-dimensional maps encoding dynamics in entorhinal cortex and hippocampus

机译:编码内嗅皮质和海马体动力学的低维图

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Cells that produce intrinsic theta oscillations often contain the hyperpolarization-activated current I-h,. In this article, we use models and dynamic clamp experiments to investigate the synchronization properties of two such cells (stellate cells of the entorhinal cortex and O-LM cells of the hippocampus) in networks with fast-spiking (FS) interneurons. The model we use for stellate cells and O-LM cells is the same, but the stellate cells are excitatory and the O-LM cells are inhibitory, with inhibitory postsynaptic potential considerably longer than those from FS interneurons. We use spike time response curve methods (STRC), expanding that technique to three-cell networks and giving two different ways in which the analysis of the three-cell network reduces to that of a two-cell network. We show that adding FS cells to a network of stellate cells can desynchronize the stellate cells, while adding them to a network of O-LM cells can synchronize the O-LM cells. These synchronization and desynchronization properties critically depend on I-h. The analysis of the deterministic system allows us to understand some effects of noise on the phase relationships in the stellate networks. The dynamic clamp experiments use biophysical stellate cells and in silico FS cells, with connections that mimic excitation or inhibition, the latter with decay times associated with FS cells or O-LM cells. The results obtained in the dynamic clamp experiments are in a good agreement with the analytical framework.
机译:产生固有θ振荡的细胞通常包含超极化激活电流I-h。在本文中,我们使用模型和动态钳制实验研究具有快速加标(FS)中神经元的网络中的两个此类细胞(内嗅皮质的星状细胞和海马的O-LM细胞)的同步特性。我们用于星状细胞和O-LM细胞的模型是相同的,但是星状细胞具有兴奋性,O-LM细胞具有抑制作用,其抑制突触后电位的时间比FS中神经元更长。我们使用尖峰时间响应曲线方法(STRC),将该技术扩展到三单元网络,并给出了两种不同的方式来将三单元网络的分析简化为两单元网络的分析。我们表明,将FS细胞添加到星状细胞网络可以使星状细胞不同步,而将它们添加到O-LM细胞网络可以同步O-LM细胞。这些同步和去同步属性严重取决于I-h。对确定性系统的分析使我们能够了解噪声对星状网络中相位关系的某些影响。动态钳制实验使用生物物理星状细胞和计算机模拟的FS细胞,并模拟刺激或抑制,后者的衰变时间与FS细胞或O-LM细胞相关。动态钳制实验中获得的结果与分析框架非常吻合。

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