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Titlebook: Applications of Membrane Computing in Systems and Synthetic Biology; Pierluigi Frisco,Marian Gheorghe,Mario J. Pérez-Ji Book 2014 Springer

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期刊全稱Applications of Membrane Computing in Systems and Synthetic Biology
影響因子2023Pierluigi Frisco,Marian Gheorghe,Mario J. Pérez-Ji
視頻videohttp://file.papertrans.cn/160/159502/159502.mp4
發(fā)行地址Presents applications of membrane computing in systems and synthetic biology.Collects in an organic way, different facets of the membrane computing paradigm.Shows the full potential of the membrane co
學(xué)科分類Emergence, Complexity and Computation
圖書封面Titlebook: Applications of Membrane Computing in Systems and Synthetic Biology;  Pierluigi Frisco,Marian Gheorghe,Mario J. Pérez-Ji Book 2014 Springer
影響因子.Membrane Computing was introduced as a computational paradigm in Natural Computing. The models introduced, called Membrane (or P) Systems, provide a coherent platform to describe and study living cells as computational systems. Membrane Systems have been investigated for their computational aspects and employed to model problems in other fields, like: Computer Science, Linguistics, Biology, Economy, Computer Graphics, Robotics, etc. Their inherent parallelism, heterogeneity and intrinsic versatility?allow them to model a broad range of processes and phenomena, being also an efficient means to solve and analyze problems in a novel way..Membrane Computing has been used to model biological systems, becoming with time a thorough modeling paradigm comparable, in its modeling and predicting capabilities, to more established models in this area. This book is the result of the need to collect, in an organic way, different facets of this paradigm..The chapters of this book, together with the web pages accompanying them, present different applications of Membrane Systems to Biology. Deterministic, non-deterministic and stochastic systems paired with different algorithms and methodologies sh
Pindex Book 2014
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Brian Wong M.D.,J. Stone Doggett M.D.g, analysing and optimising large spatially discrete and stochastic models of multicellular systems makes it a useful, coherent and comprehensive in silico tool in systems and synthetic biology research.
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Infobiotics Workbench: A P Systems Based Tool for Systems and Synthetic Biology,g, analysing and optimising large spatially discrete and stochastic models of multicellular systems makes it a useful, coherent and comprehensive in silico tool in systems and synthetic biology research.
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Book 2014coherent platform to describe and study living cells as computational systems. Membrane Systems have been investigated for their computational aspects and employed to model problems in other fields, like: Computer Science, Linguistics, Biology, Economy, Computer Graphics, Robotics, etc. Their inhere
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Clemens Bergwitz,Harald Jüppnere processes that give rise to the formation of concentration gradients throughout the bacterial cytoplasm. The outcome of stochastic simulations of both models are exploited to analyze the process of synchronization of flagella, in order to evaluate the running and tumbling time intervals of bacterial cells.
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