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PERTURBATION OF A CIRCADIAN RHYTHM BY SINGLE AND PERIODIC SIGNALS AND ITS MATHEMATICAL SIMULATION

机译:单周期和周期信号摄动拍打节律及其数学模拟

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摘要

Adaptive characteristics of circadian rhythm are based on their capacity to be synchronized by external signals, particularly light signals. The effect of both single and periodic light signals on the electroretinogram (ERG) circadian rhythm in crayfish is studied. In a previous work (Lara-Aparicio et al., Bull. math. Biol. 55, 97-110, 1993) we developed a mathematical model simulating the emergence of the ERG circadian rhythm during the ontogeny of the crayfish. In the present work we have tested the familiar wave-shift behaviour of an oscillator with a single limit cycle. Two new facts, not present in a simpler model, now appear, which simulate adequately the experimental results, i.e. the presence of a transient stage and the shape of the perturbed wave which changes according to the characteristics of the external light signals.
机译:昼夜节律的自适应特征是基于它们被外部信号(尤其是光信号)同步的能力。研究了单一和周期性光信号对小龙虾的视网膜电图(ERG)昼夜节律的影响。在先前的工作中(Lara-Aparicio等人,Bull。math。Biol。55,97-110,1993),我们开发了一个数学模型来模拟小龙虾个体发育期间ERG昼夜节律的出现。在目前的工作中,我们已经测试了一个具有单个极限周期的振荡器的熟悉的波动特性。现在出现了两个新的事实,它们没有出现在更简单的模型中,它们充分地模拟了实验结果,即存在一个过渡阶段,并且随外部光信号的特性而变化的扰动波的形状也随之变化。

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