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Titlebook: Systems Biology; The Challenge of Com Shigetada Nakanishi,Ryoichiro Kageyama,Dai Watanab Conference proceedings 2009 Springer-Verlag Tokyo

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978-4-431-99858-7Springer-Verlag Tokyo 2009
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The Molecular and Cellular Design of Networks in Motiong [1–3]. The organization of the locomotor system is to a large extent conserved through vertebrate phylogeny, and it is therefore also pertinent to explore to what extent this knowledge can be applied to the more complex mammalian nervous system. The overall aim is to account for this complex set o
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Bacterial Complexity: More Is Different on All Levelsf biological systems (systemic or systems biology). Some exciting observations of complex cooperative behavior of bacteria in colonies are presented, guided by the assumption that they might shed new light on the foundations and evolution of biocomplexity in general. The chapter is aimed at research
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How Animals Get Their Skin Patterns: Fish Pigment Pattern as a Live Turing Waveble in the biological system is the reaction-diffusion (RD) mechanism, which was first presented by A. Turing in 1952. and mathematically refined by mathematical biologists.. In the model, the spatial pattern is made as stationary waves generated by the interactive RD of putative chemical substances
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Toward Understanding How the Immune System Establishes a Diverse Yet Self-Tolerant T-Cell Repertoireled thymocytes, the majority of which belong to the T-lymphoid lineage, and various stromal cells including thymic epithelial cells (TEC) (2). Thymic stromal cells provide multiple signals to support manifold processes of thymocyte development that are essential for the supply of circulating T lymph
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