Lin Chun-Liang, Liu Yuan-Wei, Chuang Chia-Hua
Department of Electrical Engineering, National Chung Hsing University, Taichung 402, Taiwan, ROC.
Bioinform Biol Insights. 2009 Feb 2;3:1-14. doi: 10.4137/bbi.s2116.
Signal transduction networks of biological systems are highly complex. How to mathematically describe a signal transduction network by systematic approaches to further develop an appropriate and effective control strategy is attractive to control engineers. In this paper, the synergism and saturation system (S-systems) representations are used to describe signal transduction networks and a control design idea is presented. For constructing mathematical models, a cascaded analysis model is first proposed. Dynamic analysis and controller design are simulated and verified.
生物系统的信号转导网络高度复杂。如何通过系统方法以数学方式描述信号转导网络,进而制定合适且有效的控制策略,这对控制工程师具有吸引力。本文采用协同饱和系统(S-系统)表示法来描述信号转导网络,并提出了一种控制设计思路。为构建数学模型,首先提出了一种级联分析模型。对动态分析和控制器设计进行了仿真与验证。