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A kinetic model of the transient phase in the response of olfactory receptor neurons

机译:嗅觉受体神经元反应的瞬态动力学模型

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A model is presented that predicts the instantaneous spike rate of an olfactory receptor neuron (ORN) in response to the quality and concentration of an odor stimulus. The model accounts for the chemical kinetics of ligand-receptor binding and activation processes, and implicitly the initiation of second messenger cascades that lead to depolarization and/or hyperpolarization of the ORN membrane. Both of these polarizinig processes are included in the most general form of the model, as well as a process that restores the voltage to its negative resting state. The spike rate is assumed to be linearly proportional to the level of voltage depolarization above a critical negative voltage level. The model includes the simplifying assumption that activation of bound ligand-receptor complexes by G-proteins and other enabling molecules follows a Monod function that has the ratio of enabling molecules to bound unactivated ligand-receptor complexes as its argument. Parameters are selected that provide an excellent fit of the model to previously published empirical data on the response of cockroach ORNs to pulsed 1-hexanol stimuli. The sensitivity of model output to various model parameters is investigated and changes to parameters are discussed that would improve the ability of ORNs to follow rapidly pulsed stimuli. [References: 55]
机译:提出了一种模型,该模型可预测嗅觉受体神经元(ORN)响应于气味刺激的质量和浓度的瞬时峰值速率。该模型考虑了配体-受体结合和激活过程的化学动力学,并且隐含了第二信使级联的引发,从而导致ORN膜去极化和/或超极化。这两种极化方法都包含在模型的最一般形式中,以及将电压恢复到其负静止状态的方法。假定尖峰速率与临界负电压电平以上的电压去极化电平成线性比例。该模型包括简化的假设,即G蛋白和其他使能分子对结合的配体-受体复合物的激活遵循一个Monod函数,该函数具有使分子与结合的未激活配体-受体复合物的比率作为其论据。选择的参数可以使模型与以前发表的有关蟑螂ORN对脉冲的1-己醇刺激的反应的经验数据非常吻合。研究了模型输出对各种模型参数的敏感性,并讨论了对参数的更改,这些更改将提高ORN跟随快速脉冲刺激的能力。 [参考:55]

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