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Investigating the properties of adaptation in a computational model of the olfactory sensory neuron

机译:在嗅觉感觉神经元的计算模型中研究适应性

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We developed a detailed computational model of an olfactory sensory neuron to investigate the functional properties of the sensory adaptation in the peripheral olfactory system. The model consists of a system of first-order differential equations that describes the time course of the different components considered, including the biochemical pathways in the cilia and the electrical compartments that represent the cilia, the dendrite, dendritic knob, the cell body and the initial segment of the axon. We used different protocols of stimulation to investigate the response of the model to constant or transient stimuli. In this way, it was possible to explore the occurrence of two types of adaptation mediated by distinct processes in the same cell. The results of the model suggest that different respiratory frequencies during sniffing behavior could be used by animals as a mechanism to avoid adaptation to odorants at the receptor cell level.
机译:我们开发了嗅觉感觉神经元的详细计算模型,以研究外周嗅觉系统中感觉适应的功能特性。该模型由一阶微分方程系统组成,该系统描述了所考虑的不同成分的时间过程,包括纤毛和代表纤毛,树枝状,树突状突起,细胞体和细胞的电气部分中的生化途径。轴突的初始部分。我们使用了不同的刺激方案来研究模型对恒定或瞬时刺激的响应。以此方式,有可能探索由同一细胞中不同过程介导的两种类型适应的发生。该模型的结果表明,在嗅探行为中,不同的呼吸频率可被动物用作避免在受体细胞水平上适应气味的机制。

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