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一种现象学的小鼠生物钟模型。

A Phenomenological Mouse Circadian Pacemaker Model.

机构信息

Department of Mathematics, University of Toronto, Toronto, ON, Canada.

Department of Psychology, University of Toronto, Toronto, ON, Canada.

出版信息

J Biol Rhythms. 2022 Jun;37(3):329-342. doi: 10.1177/07487304221085455. Epub 2022 Apr 29.

Abstract

Mathematical models have been used extensively in chronobiology to explore characteristics of biological clocks. In particular, for human circadian studies, the Kronauer model has been modified multiple times to describe rhythm production and responses to sensory input. This phenomenological model comprises a single set of parameters which can simulate circadian responses in humans under a variety of environmental conditions. However, corresponding models for nocturnal rodents commonly used in circadian rhythm studies are not available and may require new parameter values for different species and even strains. Moreover, due to a considerable variation in experimental data collected from mice of the same strain, within and across laboratories, a range of valid parameters is essential. This study develops a Kronauer-like model for mice by re-fitting relevant parameters to published phase response curve and period data using total least squares. Local parameter sensitivity analysis and parameter distributions determine the parameter ranges that give a near-identical model and data distribution of periods. However, the model required further parameter adjustments to match characteristics of other mouse strains, implying that the model itself detects changes in the core processes of rhythm generation and control. The model is a useful tool to understand and interpret future mouse circadian clock experiments.

摘要

数学模型在时间生物学中被广泛用于探索生物钟的特征。特别是对于人类的昼夜节律研究,Kronauer 模型已经多次被修改,以描述节律的产生和对感官输入的反应。这个现象学模型由一组单一的参数组成,可以模拟各种环境条件下人类的昼夜节律反应。然而,常用于昼夜节律研究的夜间啮齿动物的相应模型并不存在,并且可能需要针对不同物种甚至不同品系的新参数值。此外,由于在同一品系的小鼠中从不同实验室收集的实验数据存在相当大的差异,因此需要一系列有效的参数。本研究通过使用总体最小二乘法重新拟合已发表的相位反应曲线和周期数据,为小鼠开发了一个类似于 Kronauer 的模型。局部参数敏感性分析和参数分布确定了参数范围,使模型和周期数据分布几乎相同。然而,该模型需要进一步的参数调整,以匹配其他小鼠品系的特征,这意味着该模型本身可以检测到节律产生和控制的核心过程的变化。该模型是理解和解释未来小鼠昼夜节律时钟实验的有用工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2ad4/9160958/0a2017f1871f/10.1177_07487304221085455-fig1.jpg

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