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解剖重建技术的变异性对树突突触整合模型的影响:三个互联网档案库的比较

Effects of variability in anatomical reconstruction techniques on models of synaptic integration by dendrites: a comparison of three Internet archives.

作者信息

Szilágyi Tibor, De Schutter Erik

机构信息

Department of Physiology, University of Medicine and Pharmacy, Str Marinescu 38, 540139 Tg Mures, Romania.

出版信息

Eur J Neurosci. 2004 Mar;19(5):1257-66. doi: 10.1111/j.1460-9568.2004.03222.x.

Abstract

The first step in building a realistic computational neuron model is to produce a passive electrical skeleton on to which active conductances can be grafted. For this, anatomically accurate morphological reconstructions of the desired cell type are required. In this study compartmental models were used to compare from a functional perspective three on-line archives of rat hippocampal CA1 pyramidal cell morphologies. The topological organization of cells was found to be similar for all archives, but several morphometric differences were observed. The three-dimensional size of the cells, the diameter and tortuosity of dendrites, and the electrotonic length of the main apical dendrite and of the branches in stratum lacunosum moleculare were dissimilar. The experimentally measured kinetics of somatically recorded inhibitory postsynaptic currents evoked in the stratum lacunosum moleculare (data from the literature) could be reproduced only using the archives that contained cells with an electrotonically short main apical dendrite. In the amplitude attenuation of the simulated postsynaptic currents and the voltage escape from the command potential under voltage clamp conditions, a two- to three-fold difference was observed among archives. Upon activation of a single model synapse on distal branches, cells with low dendritic diameter showed a voltage escape larger than 15 mV. The diameter of the dendrites influenced greatly the results, emphasizing the importance of methods that allow an accurate measurement of this parameter. Our results indicate that there are functionally significant differences in the morphometric data available in different archives even if the cell type, brain region and species are the same.

摘要

构建逼真的计算神经元模型的第一步是生成一个被动电骨架,以便能够嫁接主动电导。为此,需要对所需细胞类型进行解剖学上精确的形态重建。在本研究中,使用了房室模型从功能角度比较大鼠海马CA1锥体细胞形态的三个在线档案。发现所有档案中细胞的拓扑组织相似,但观察到了一些形态测量学差异。细胞的三维大小、树突的直径和曲折度,以及主要顶端树突和分子层空泡层中分支的电紧张长度都不相同。只有使用包含电紧张长度短的主要顶端树突的细胞的档案,才能重现文献中分子层记录到的体细胞诱发抑制性突触后电流的实验测量动力学。在模拟突触后电流的幅度衰减和电压钳制条件下从指令电位的电压逃逸方面,各档案之间观察到两到三倍的差异。在远端分支上激活单个模型突触时,树突直径小的细胞显示出大于15 mV的电压逃逸。树突直径对结果有很大影响,强调了能够准确测量该参数的方法的重要性。我们的结果表明,即使细胞类型、脑区和物种相同,不同档案中可用的形态测量数据在功能上也存在显著差异。

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