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Simplified models of neocortical pyramidal cells preserving somatodendritic voltage attenuation

机译:保留体树突状细胞电压衰减的新皮质锥体细胞的简化模型

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摘要

Simplified models are needed for performing large-scale network simulations involving thousands of cells. Ideally, these models should be as simple as possible, but still capture important electronic properties, such as voltage attenuation. Here, we propose a method to design simplified models with correct voltage attenuation, based on camera-lucida reconstruc- tions of neurons. The simplified model geometry is fit to the detailed model such that it preserves: (I) total membrane area, (ii) input resistance, (iii) time constant and (iv) voltage attenuation for current injection in the soma. Using the three dimensional reconstruction of a layer VI pyramidal cell, we show that this procedure leads to an efficient simplified model which preserves voltage attenuation for somatic current injection as well as for distributed synaptic inputs in dendrites. Attenuation was also correctly captured in the presence of synaptic background activity. These simplified models should be useful for performing network simula- tions of neurons with electronic properties consistent with detailed morphologies.
机译:需要简化的模型来执行涉及数千个单元的大规模网络仿真。理想情况下,这些模型应尽可能简单,但仍应具有重要的电子特性,例如电压衰减。在此,我们提出了一种基于神经元的相机-路达法重构来设计具有正确电压衰减的简化模型的方法。简化的模型几何形状适合于详细模型,因此可以保留:(I)总膜面积,(ii)输入电阻,(iii)时间常数和(iv)电流注入体中的电压衰减。使用VI层锥体细胞的三维重建,我们表明该程序导致了一个有效的简化模型,该模型保留了体细胞电流注入以及树突状细胞中分布的突触输入的电压衰减。在突触背景活动的存在下也可以正确捕获衰减。这些简化的模型对于执行具有与详细形态一致的电子特性的神经元的网络仿真应该是有用的。

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