Synchronized Control for Circadian Rhythm Based on the Central Clock Model of Drosophila

Y. Katakura, H. Ohmori
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引用次数: 1

Abstract

Circadian rhythm governed by an oscillating set of genes called the central clock has become an important concern in biology, and it is said that to restore an altered rhythm is a goal of cancer therapy beyond the destruction of tumor cells. In this paper, we study the central clock model of drosophila, which is a nonlinear oscillator model. We propose a close-loop control based on flatness-based adaptive control, an open-loop control, to achieve circadian rhythm restoration
基于果蝇中心时钟模型的昼夜节律同步控制
昼夜节律是由一组被称为“中央时钟”的振荡基因控制的,这已经成为生物学中一个重要的问题。据说,除了摧毁肿瘤细胞之外,恢复改变的节律是癌症治疗的一个目标。本文研究了果蝇的中心时钟模型,这是一个非线性振荡器模型。我们提出了一种基于平面度自适应控制的闭环控制,一种开环控制,以实现昼夜节律恢复
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