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一种脊椎动物嗅觉上皮和嗅球的生物物理模型,展现出依赖缝隙连接的气味诱发的时空活动模式。

A biophysical model of vertebrate olfactory epithelium and bulb exhibiting gap junction dependent odor-evoked spatiotemporal patterns of activity.

作者信息

Simões-de-Souza Fábio M, Roque Antônio C

机构信息

Departmento de Psicologia e Educação, Setor de Psicobiologia, Faculdade de Filosofia Ciências e Letras de Ribeirão Preto, Universidade de São Paulo, Ribeirão Preto, Av. Bandeirantes 3900, 14040-901 São Paulo, Brazil.

出版信息

Biosystems. 2004 Jan;73(1):25-43. doi: 10.1016/j.biosystems.2003.08.002.

Abstract

This work describes a biophysical model of the initial stages of vertebrate olfactory system containing structures representing the olfactory epithelium and bulb. Its main novelty is the introduction of gap junctions connecting neurons both in the epithelium and bulb, and of biologically detailed dendrodendritic synapses between granule and mitral cells in the bulb. The model was used to simulate the effect of an odor presentation on the neural activity pattern in the epithelium and bulb. During the time for which an odor is presented with a constant concentration, there are spatiotemporal patterns in the epithelium and bulb generated by the couplings due to the gap junctions and/or dendrodendritic synapses. A study varying the strength of the gap junction coupling shows that the spatiotemporal patterns, both in the epithelium and bulb, are dependent of the coupling strength. It is also shown that the olfactory bulb's spatiotemporal pattern depends on the existence of the dendrodendritic connections between mitral and granule cells. If these spatiotemporal patterns really exist in the early processing stages of the olfactory system they may be used for odor coding and the gap junctions and dendrodendritic synapses might have a role on it.

摘要

这项工作描述了一个脊椎动物嗅觉系统初始阶段的生物物理模型,该模型包含代表嗅觉上皮和嗅球的结构。其主要新颖之处在于引入了连接上皮和嗅球中神经元的缝隙连接,以及嗅球中颗粒细胞和二尖瓣细胞之间具有生物学细节的树突-树突突触。该模型用于模拟气味呈现对上皮和嗅球中神经活动模式的影响。在以恒定浓度呈现气味的时间段内,由于缝隙连接和/或树突-树突突触的耦合,上皮和嗅球中会产生时空模式。一项改变缝隙连接耦合强度的研究表明,上皮和嗅球中的时空模式都取决于耦合强度。研究还表明,嗅球的时空模式取决于二尖瓣细胞和颗粒细胞之间树突-树突连接的存在。如果这些时空模式真的存在于嗅觉系统的早期处理阶段,它们可能用于气味编码,而缝隙连接和树突-树突突触可能在其中发挥作用。

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