10 found
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  1.  32
    SMT or TOFT? How the Two Main Theories of Carcinogenesis are Made Incompatible.Angélique Stéphanou & Nicolas Glade - 2015 - Acta Biotheoretica 63 (3):257-267.
    The building of a global model of carcinogenesis is one of modern biology’s greatest challenges. The traditional somatic mutation theory is now supplemented by a new approach, called the Tissue Organization Field Theory. According to TOFT, the original source of cancer is loss of tissue organization rather than genetic mutations. In this paper, we study the argumentative strategy used by the advocates of TOFT to impose their view. In particular, we criticize their claim of incompatibility used to justify the necessity (...)
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  2.  26
    A Conceptual Model of Morphogenesis and Regeneration.Angélique Stéphanou & Nicolas Glade - 2015 - Acta Biotheoretica 63 (3):283-294.
    This paper is devoted to computer modelling of the development and regeneration of multicellular biological structures. Some species are able to regenerate parts of their body after amputation damage, but the global rules governing cooperative cell behaviour during morphogenesis are not known. Here, we consider a simplified model organism, which consists of tissues formed around special cells that can be interpreted as stem cells. We assume that stem cells communicate with each other by a set of signals, and that the (...)
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  3.  41
    Systems Biology, Systems Medicine, Systems Pharmacology: The What and The Why.Angélique Stéphanou, Eric Fanchon, Pasquale F. Innominato & Annabelle Ballesta - 2018 - Acta Biotheoretica 66 (4):345-365.
    Systems biology is today such a widespread discipline that it becomes difficult to propose a clear definition of what it really is. For some, it remains restricted to the genomic field. For many, it designates the integrated approach or the corpus of computational methods employed to handle the vast amount of biological or medical data and investigate the complexity of the living. Although defining systems biology might be difficult, on the other hand its purpose is clear: systems biology, with its (...)
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  4.  20
    Computing with Synthetic Protocells.Angélique Stéphanou & Nicolas Glade - 2015 - Acta Biotheoretica 63 (3):309-323.
    In this article we present a new kind of computing device that uses biochemical reactions networks as building blocks to implement logic gates. The architecture of a computing machine relies on these generic and composable building blocks, computation units, that can be used in multiple instances to perform complex boolean functions. Standard logical operations are implemented by biochemical networks, encapsulated and insulated within synthetic vesicles called protocells. These protocells are capable of exchanging energy and information with each other through transmembrane (...)
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  5.  25
    Modeling the Enzyme Kinetic Reaction.Angélique Stéphanou & Nicolas Glade - 2015 - Acta Biotheoretica 63 (3):239-256.
    The Enzymatic control reactions model was presented within the scope of fractional calculus. In order to accommodate the usual initial conditions, the fractional derivative used is in Caputo sense. The methodologies of the three analytical methods were used to derive approximate solution of the fractional nonlinear system of differential equations. Two methods use integral operator and the other one uses just an integral. Numerical results obtained exhibit biological behavior of real world problem.
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  6.  17
    Towards a Behavioral-Matching Based Compilation of Synthetic Biology Functions.Angélique Stéphanou & Nicolas Glade - 2015 - Acta Biotheoretica 63 (3):325-339.
    The field of synthetic biology is looking forward engineering framework for safely designing reliable de-novo biological functions. In this undertaking, Computer-Aided-Design environments should play a central role for facilitating the design. Although, CAD environment is widely used to engineer artificial systems the application in synthetic biology is still in its infancy. In this article we address the problem of the design of a high level language which at the core of CAD environment. More specifically the Gubs language is a specification (...)
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  7.  37
    Programming the Emergence in Morphogenetically Architected Complex Systems.Angélique Stéphanou & Nicolas Glade - 2015 - Acta Biotheoretica 63 (3):295-308.
    Large sets of elements interacting locally and producing specific architectures reliably form a category that transcends the usual dividing line between biological and engineered systems. We propose to call them morphogenetically architected complex systems. While taking the emergence of properties seriously, the notion of MACS enables at the same time the design of operational means that allow controlling and even, paradoxically, programming this emergence. To demonstrate our claim, we first show that among all the self-organized systems studied in the field (...)
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  8.  14
    XXXIVth Seminar of the French-Speaking Society for Theoretical Biology: Saint-Flour , France, 26–28 May, 2014.Angélique Stéphanou & Nicolas Glade - 2015 - Acta Biotheoretica 63 (3):237-238.
  9.  20
    Implementation of a Model of Bodily Fluids Regulation.Angélique Stéphanou & Nicolas Glade - 2015 - Acta Biotheoretica 63 (3):269-282.
    The classic model of blood pressure regulation by Guyton et al. set a new standard for quantitative exploration of physiological function and led to important new insights, some of which still remain the focus of debate, such as whether the kidney plays the primary role in the genesis of hypertension. Key to the success of this model was the fact that the authors made the computer code freely available and eventually provided a convivial user interface for exploration of model behavior (...)
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  10.  7
    Proceedings of the XXXIInd Seminar of the French-Speaking Society for Theoretical Biology; Saint-Flour (Cantal), France, 10–13 June, 2012. [REVIEW]Nicolas Glade & Angélique Stéphanou - 2013 - Acta Biotheoretica 61 (3):289-290.