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Philippe Tracqui [7]P. Tracqui [5]
  1. Hyperstructures, genome analysis and I-cells.Patrick Amar, Pascal Ballet, Georgia Barlovatz-Meimon, Arndt Benecke, Gilles Bernot, Yves Bouligand, Paul Bourguine, Franck Delaplace, Jean-Marc Delosme, Maurice Demarty, Itzhak Fishov, Jean Fourmentin-Guilbert, Joe Fralick, Jean-Louis Giavitto, Bernard Gleyse, Christophe Godin, Roberto Incitti, François Képès, Catherine Lange, Lois Le Sceller, Corinne Loutellier, Olivier Michel, Franck Molina, Chantal Monnier, René Natowicz, Vic Norris, Nicole Orange, Helene Pollard, Derek Raine, Camille Ripoll, Josette Rouviere-Yaniv, Milton Saier, Paul Soler, Pierre Tambourin, Michel Thellier, Philippe Tracqui, Dave Ussery, Jean-Claude Vincent, Jean-Pierre Vannier, Philippa Wiggins & Abdallah Zemirline - 2002 - Acta Biotheoretica 50 (4):357-373.
    New concepts may prove necessary to profit from the avalanche of sequence data on the genome, transcriptome, proteome and interactome and to relate this information to cell physiology. Here, we focus on the concept of large activity-based structures, or hyperstructures, in which a variety of types of molecules are brought together to perform a function. We review the evidence for the existence of hyperstructures responsible for the initiation of DNA replication, the sequestration of newly replicated origins of replication, cell division (...)
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  2.  48
    Proceedings of the XXXIth Seminar of the French-Speaking Society for Theoretical Biology.Eric Fanchon & Philippe Tracqui - 2013 - Acta Biotheoretica 61 (1):1-2.
  3.  18
    Modelling biological gel contraction by cells: Mechanocellular formulation and cell traction force quantification.I. Ferrenq, L. Tranqui, B. Vailhé, P. Y. Gumery & P. Tracqui - 1997 - Acta Biotheoretica 45 (3-4):267-293.
    Traction forces developed by most cell types play a significant role in the spatial organisation of biological tissues. However, due to the complexity of cell-extracellular matrix interactions, these forces are quantitatively difficult to estimate without explicitly considering cell properties and extracellular mechanical matrix responses. Recent experimental devices elaborated for measuring cell traction on extracellular matrix use cell deposits on a piece of gel placed between one fixed and one moving holder. We formulate here a mathematical model describing the dynamic behaviour (...)
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  4.  49
    Modelling of in vivo calcium metabolism. I. optimal cooperation between constant and rhythmic behaviours.A. M. Perault-Staub, P. Tracqui & J. F. Staub - 1992 - Acta Biotheoretica 40 (2-3):95-102.
    The relevance of nonlinear dynamics to calcium metabolism led us to reevaluate the role of Ca-regulating hormones in Ca homeostasis. We suggest that, firstly, the main Ca metabolic functions in rat-bone and gut - are organized as dynamic entities able to generate various temporal expressions, including self-oscillating patterns and, secondly, Ca homeostasis results from interaction between both metabolic and hormonal oscillators. Following this schema, a major role for the hormonal system, with its circadian pattern, could be to act directly on (...)
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  5.  36
    An integrative model of the self-sustained oscillating contractions of cardiac myocytes.Audrey Pustoc'H., Jacques Ohayon, Yves Usson, Alain Kamgoue & Philippe Tracqui - 2005 - Acta Biotheoretica 53 (4):277-293.
    Computational cell models appear as necessary tools for handling the complexity of intracellular cell dynamics, especially calcium dynamics. However, while oscillating intracellular calcium oscillations are well documented and modelled, a simple enough virtual cell taking into account the mechano-chemical coupling between calcium oscillations and cell mechanical properties is still lacking. Considering the spontaneous periodic contraction of isolated cardiac myocytes, we propose here a virtual cardiac cell model in which the cellular contraction is modelled using an hyperelastic description of the cell (...)
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  6.  42
    Model driven quantification of individual and collective cell migration.Caroline Rosello, Pascal Ballet, Emmanuelle Planus & Philippe Tracqui - 2004 - Acta Biotheoretica 52 (4):343-363.
    While the control of cell migration by biochemical and biophysical factors is largely documented, a precise quantification of cell migration parameters in different experimental contexts is still questionable. Indeed, these phenomenological parameters can be evaluated from data obtained either at the cell population level or at the individual cell level. However, the range within which both characterizations of cell migration are equivalent remains unclear. We analyse here to which extent both sources of data could be integrated within a unified description (...)
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  7.  38
    From passive diffusion to active cellular migration in mathematical models of tumour invasion.Philippe Tracqui - 1995 - Acta Biotheoretica 43 (4):443-464.
    Mathematical models of tumour invasion appear as interesting tools for connecting the information extracted from medical imaging techniques and the large amount of data collected at the cellular and molecular levels. Most of the recent studies have used stochastic models of cell translocation for the comparison of computer simulations with histological solid tumour sections in order to discriminate and characterise expansive growth and active cell movements during host tissue invasion. This paper describes how a deterministic approach based on reaction-diffusion models (...)
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  8.  42
    Modelling of in vivo calcium metabolism. II. minimal structure or maximum dynamic diversity: The interplay of biological constraints.P. Tracqui, J. F. Staub & A. M. Perault-Staub - 1992 - Acta Biotheoretica 40 (2-3):103-111.
    The temporal behaviour of the nonlinear compartmental model we have developed for rat calcium metabolism is discussed with respect to the theoretical properties of the self-oscillating autocatalytic subunit around which the model is constructed. Depending on the approximations made, this subunit is described by a minimal two-variable model, SU2, or by a three-variable one, SU3. The diversity of the theoretical dynamic behaviours possible with SU2 is greatly increased with SU3. But the identification of SU3 parameter values in three different experimental (...)
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  9.  36
    Organizing centres and symbolic dynamic in the study of mixed-mode oscillations generated by models of biological autocatalytic processes.P. Tracqui - 1994 - Acta Biotheoretica 42 (2-3):147-166.
    The organization of the complex mixed-mode oscillations generated, in a three-dimensional variable space, by an autocatalytic process formalized as a cubic monomial is analyzed. The generation of the temporal patterns is elucidated by complementary approaches dealing with the three-variable differential continuous system itself and with successive discrete applications modelling its first return map. The extent to which the underlying bifurcation structures could constitute a fingerprint of autocatalytic processes is discussed in connection with the modelling of biological systems.
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  10.  14
    Preface.P. Tracqui - 1995 - Acta Biotheoretica 43 (4):283-283.
  11.  25
    Transmission of mechanical stresses within the cytoskeleton of adherent cells: A theoretical analysis based on a multi-component cell model.Philippe Tracqui & Jacques Ohayon - 2004 - Acta Biotheoretica 52 (4):323-341.
    How environmental mechanical forces affect cellular functions is a central problem in cell biology. Theoretical models of cellular biomechanics provide relevant tools for understanding how the contributions of deformable intracellular components and specific adhesion conditions at the cell interface are integrated for determining the overall balance of mechanical forces within the cell. We investigate here the spatial distributions of intracellular stresses when adherent cells are probed by magnetic twisting cytometry. The influence of the cell nucleus stiffness on the simulated nonlinear (...)
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  12.  72
    Investigating Metalloproteinases MMP-2 and MMP-9 Mechanosensitivity to Feedback Loops Involved in the Regulation of In Vitro Angiogenesis by Endogenous Mechanical Stresses. [REVIEW]Minh-Uyen Dao Thi, Candice Trocmé, Marie-Paule Montmasson, Eric Fanchon, Bertrand Toussaint & Philippe Tracqui - 2012 - Acta Biotheoretica 60 (1):21-40.
    Angiogenesis is a complex morphogenetic process regulated by growth factors, but also by the force balance between endothelial cells traction stresses and extracellular matrix viscoelastic resistance. Studies conducted with in vitro angiogenesis assays demonstrated that decreasing ECM stiffness triggers an angiogenic switch that promotes organization of EC into tubular cords or pseudo-capillaries. Thus, mechano-sensitivity of EC with regard to proteases secretion, and notably matrix metalloproteinases, should likely play a pivotal role in this switching mechanism. While most studies analysing strain regulation (...)
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