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Titlebook: Handbook of diet, nutrition and the skin; Victor R. Preedy Book 2012 Wageningen Academic Publishers 2012

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P. Morgantiful approach for the analysis and design of complex biological systems. In this chapter we provide a control theoretic analysis of the osmoregulation system in . (see [., ., ., .]), where a complex biochemical signalling and regulatory network allows cells to maintain homeostasis in the face of osmotic shock.
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S. De Spirt,W. Stahl,U. Heinrichociated with numerical exploration of the parameter space. Application of this tool to a state-of-the-art model of circadian rhythms suggests that it can be useful and instrumental to biological investigations.
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K. Yamashitaions. We discuss examples relevant to enzymatic cell signaling and biological oscillators. From a systems biology perspective, the paper’s main contributions are unified verifiable relaxed conditions that guarantee spatial uniformity of biological processes.
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H. K. Bangash,A. Sethihe ratio of the protein lifetimes to the mRNA lifetimes. The frequency and the amplitude of at least one output (either mRNA or protein) can now be controlled arbitrarily. In addition, we characterize the . gain stability of this 3-node network and generalize it to the case of .-node networks.
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T. Hirobedemonstrate the applicability of our result by using it to address a problem in metabolic engineering: the genetic control of branched metabolic pathways. We conclude by providing guidelines on how to generalise our result to larger classes of networks.
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