“Structure of Arnold Tongues and the f(α) Spectrum for Period Doubling: Experimental Results,” James A. Glazier, Mogens H. Jensen, Joel Stavans, and Albert Libchaber, Physical Review A34, 1621 (1986). More Information -
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“Dynamics of the Two-Dimensional Soap Froth,” James A. Glazier, S. P. Gross, and Joel Stavans, Physical Review A36, 306 (1987). More Information -
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“f(α) Curves: Experimental Results,” James A. Glazier, Gemunu H. Gunaratne, and Albert Libchaber, Physical Review A37, 523 (1988). More Information -
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“Quasiperiodicity and Dynamical Systems: An Experimentalists's View,” James A. Glazier and Albert Libchaber, IEEE Transactions on Circuits and Systems35, 790 (1988). Reprinted in Hao Bai-Lin, Chaos II, (World Scientific, 1990), 299. More Information -
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PS (4.911 MB)
“Trajectory Scaling Functions at the Onset of Chaos: Experimental Results,” Andrew L. Belmonte, Michael J. Vinson, James A. Glazier, Gemunu H. Gunaratne, and Brian Kenny, Physical Review Letters61, 539 (1988). More Information -
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“Soap Froth Revisited: Dynamical Scaling in the Two-Dimensional Froth,” Joel Stavans and James A. Glazier, Physical Review Letters62, 1318 (1989). More Information -
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“Chaos and the Analysis of Experimental Data,” James A. Glazier, in Nonlinear Dynamics, proceedings of a conference in Bologna Italy, May 1988 (World Scientific, 1989), 250. More Information -
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“Non-Ideal Effects in the Two-Dimensional Soap Froth,” James A. Glazier and Joel Stavans, Physical Review A40, 7398 (1989). More Information -
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PS (2.086 MB)
“Coarsening in the Two-Dimensional Soap Froth and the Large-Q Potts Model: A Detailed Comparison,” James A. Glazier, Michael P. Anderson and Gary S. Grest, Philosophical Magazine B62, 615 (1990). More Information -
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“Ideal Two-Dimensional Grain Growth,” James A. Glazier, Gary S. Grest, and Michael P. Anderson, in Simulation and Theory of Evolving Microstructures, Michael P. Anderson and Anthony D. Rollett, editors, (The Minerals, Metals and Materials Society, Warrendale, PA, 1990) 41. More Information -
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PS (1.541 MB)
“Dispersive Chaos in One-Dimensional Traveling-Wave Convection,” Paul R. Kolodner, James A. Glazier, and Hugh L. Williams, Physical Review Letters65, 1579 (1990). More Information -
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“Interaction of Localized Pulses of Travelling-Wave Convection with Propagating Disturbances,” Paul R. Kolodner and James A. Glazier, Physical Review A42, 7504 (1990). More Information -
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“Dispersive Chaos,” James A. Glazier, Paul R. Kolodner, and Hugh L. Williams, Journal of Statistical Physics64, 945 (1991). More Information -
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“Interaction of Nonlinear Pulses in Convection in Binary Fluids,” James A. Glazier and Paul R. Kolodner, Physical Review A43, 4269 (1991). More Information -
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“Effects of Lattice Anisotropy and Temperature on Domain Growth in the Two-Dimensional Potts Model,” Elizabeth A. Holm, James A. Glazier, David J. Srolovitz, and Gary S. Grest, Physical Review A43, 2662 (1991). More Information -
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PS (1.504 MB)
“Investigation of an Elementary Model for Magnetic Froth,” Denis Weaire, F. Bolton, Pierre Molho, and James A. Glazier, Journal of Physics: Condensed Matter3, 2101 (1991). More Information -
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PS (1.571 MB)
“Modelling Grain Growth and Soap Froth Coarsening: Past, Present and Future,” Denis Weaire and James A. Glazier, Materials Science Forum94-96, 27 (1992). More Information -
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“Comparison of Soap Froth and Simulation of Large-Q Potts Model,” S. Ling, Michael P. Anderson, Gary S. Grest and James A. Glazier, Materials Science Forum94-96, 39 (1992). More Information -
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“The Kinetics of Cellular Patterns,” James A. Glazier and Denis Weaire, Journal of Physics: Condensed Matter4, 1867 (1992). More Information -
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PS (3.452 MB)
“Global Fractal Dimension of Human DNA Sequences Treated as Pseudorandom Walks,” C. Berthelsen, James A. Glazier, and Mark H. Skolnick, Physical Review A 45, 8902-8913 (1992). More Information -
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“Simulation of Biological Cell Sorting Using a Two-Dimensional Extended Potts Model,” François Graner and James A. Glazier, Physical Review Letters69, 2013-2016 (1992). More Information -
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“Coarsening in Two-Dimensional Soap Froths and the Large-Q Potts Model,” G. S. Grest, James A. Glazier, Michael P. Anderson, Elizabeth A. Holm, and David J. Srolovitz, Materials Research Society Symposium237, 101 (1992). More Information -
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PS (1.224 MB)
“Cellular Patterns,” James A. Glazier, Bussei Kenkyu 58, 608-612 (1993). More Information -
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“Simulation of the Differential Adhesion Driven Rearrangement of Biological Cells,” James A. Glazier and François Graner, Physical Review E47, 2128-2154 (1993). More Information -
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“Grain Growth in Three Dimensions Depends on Grain Topology,” James A. Glazier, Physical Review Letters70, 2170-2173 (1993). More Information -
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PS (7.500 MB)
“Relation between Volume, Number of Faces and Three-Dimensional Growth Laws in Coarsening Cellular Patterns,” Denis Weaire and James A. Glazier, Philosophical Magazine Letters68, 363-365 (1993). More Information -
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PS (387.3 KB)
“Effective Multifractal Spectrum of a Random Walk,” Cheryl L. Berthelsen, James A. Glazier, and Sridhar Raghavachari, Physical Review E 49(3), 1860-1864 (1994). More Information -
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PS (1.044 MB)
“Magnetic Resonance Images of Coarsening inside a Foam,” Constantinos P. Gonatas, Arjun G. Yodh, John S. Leigh, James A. Glazier and Burkhard Prause, Physical Review Letters75, 573-576 (1995). More Information -
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“The Energetics of Cell Sorting in Three Dimensions,” James A. Glazier, Richard C. Raphael, François Graner, and Yasuji Sawada, in Interplay of Genetic and Physical Processes in the Development of Biological Form, D. Beysens, G. Forgacs, F. Gaill, editors (World Scientific Publishing Company, Singapore, 1995) 54-61. More Information -
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“Construction of Candidate Minimal-Area Space-Filling Partitions,” James A. Glazier and Denis Weaire, Philosophical Magazine Letters70, 351-356 (1994). More Information -
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PS (704.8 KB)
“Reconstructing Phylogeny from the Multifractal Spectrum of Mitochondrial DNA Sequences,” James A. Glazier, Sridhar Raghavachari, Cheryl L. Berthelsen, and Mark H. Skolnick, Physical Review E51, 2665-2668 (1995). More Information -
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PS (830.1 KB)
“Spatially Coherent States in Fractally Coupled Map Lattices,” Sridhar Raghavachari and James A. Glazier, Physical Review Letters74, 3297-3300 (1995). More Information -
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PS (1.461 MB)
“Quantitative Comparison between Differential Adhesion Models and Cell Sorting in the Presence and Absence of Fluctuations,” Jose Carlos M. Mombach, James A. Glazier, Richard C. Raphael, and Mark Zajac, Physical Review Letters 75, 2244-2247 (1995). More Information -
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PS (1.960 MB)
“Magnetic Resonance Imaging of a Three-Dimensional Foam,” Burkhard Prause, James A. Glazier, Samuel Gravina and Carlo Montemagno, Journal of Physics: Condensed Matter7, L511-L516 (1995). More Information -
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PS (2.533 MB)
“Grain Growth from Homogeneous Initial Conditions: Anomalous Grain Growth and Special Scaling States,” Yi Jiang, Jose Carlos M. Mombach, James A. Glazier, Physical Review E52, 3333-3336 (1995). More Information -
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PS (2.089 MB)
“Thermal Turbulence in Mercury,” Tohru Takeshita, Takehiko Segawa, James A. Glazier and Masaki Sano, Physical Review Letters76, 1465-1468 (1996). More Information -
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PS (1.683 MB)
“Thermodynamics of Cell Sorting,” James A. Glazier, Bussei Kenkyu65, 691-700 (1996). More Information
“Single Cell Motion in Aggregates of Embryonic Cells,” Jose Carlos M. Mombach and James A. Glazier, Physical Review Letters76, 3032-3035 (1996). More Information -
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“Extended Large-Q Potts Model Simulation of Foam Drainage,” Yi Jiang and James A. Glazier, Philosophical Magazine Letters74, 119-128 (1996). More Information -
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PS (2.165 MB)
“High Rayleigh Number Turbulence in a Low Prandtl Number Fluid,” T. Segawa, Masaki Sano, Antoine Naert, and James A. Glazier, in Flow at Ultra-High Reynolds and Rayleigh Numbers, A Status Report, R. J. Donnelly and K. R. Sreenivasan editors (Springer Verlag, New York, NY, 1998), 247-257. More Information -
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“Foam Drainage: Extended Large-Q Potts Model Simulation,” Yi Jiang and James A. Glazier, Materials Research Society Symposium Proceedings463, 307-312 (1997). More Information -
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“First Steps Towards a Comprehensive Model of Tissues, or: A Physicist Looks at Development,” James A. Glazier and Arpita Uphadyaya, in Dynamical Networks in Physics and Biology: At the Frontier of Physics and Biology, D. Beysens and G. Forgacs editors (EDP Sciences/Springer Verlag, Berlin, Germany, 1998), 149-160. More Information -
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“Networks of Droplets Induce by Coalescence: Application to Cell Sorting,” Daniel A. Beysens, Gabor Forgacs and James A. Glazier, in Dynamical Networks in Physics and Biology: At the Frontier of Physics and Biology, D. Beysens and G. Forgacs editors (EDP Sciences/Springer Verlag, Berlin, Germany, 1998), 161-169. More Information
“Possible Cooperation of Differential Adhesion and Chemotaxis in Mound Formation of Dictyostelium,” Yi Jiang, Herbert Levine and James A. Glazier, Biophysical Journal75, 2615-2625 (1998). More Information -
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“Hysteresis and Avalanches in Two-Dimensional Foam Rheology Simulations,” Yi Jiang, Pieter J. Swart, Avadh Saxena, M. Asipauskas and James A. Glazier, Physical Review E 59, 5819-5832 (1999). More Information -
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PS (5.391 MB)
“Waves in Diffusively Coupled Bursting Cells,” Sridhar Raghavachari and James A. Glazier, Physical Review Letters82, 2991-2994 (1999). More Information -
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PS (2.009 MB)
“Magnetic Resonance Imaging of Structure and Coarsening in Three-Dimensional Foams,” Burkhard Prause and James A. Glazier, in Proceedings of the 5th Experimental Chaos Conference Orlando, Florida 28 June - 1 July 1999, M. Ding, W. L. Ditto, L. M. Pecora and M. L. Spano editors (World Scientific, Singapore, 2001) 427-436. More Information -
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PS (1.958 MB)
“Stochastic Simulation of Benign Avascular Tumor Growth Using the Potts Model,” Emma Stott, N. F. Britton, James A. Glazier and Mark Zajac, Mathematical and Computer Modelling30, 183-198 (1999). More Information
“Evidence against ‘Ultrahard’ Thermal Turbulence at Very High Rayleigh Numbers,” James A. Glazier, Takehiko Segawa, Antoine Naert and Masaki Sano, Nature398, 307-310 (1999). More Information -
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“Foams Out of Stable Equilibrium: Cell Elongation and Side Swapping,” Florence Elias, Cyrille Flament, James A. Glazier, François Graner and Yi Jiang, Philosophical Magazine B79, 729-751 (1999). More Information -
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“Bursting in Neurons with Fast and Slow Inhibition,” Sridhar Raghavachari and James A. Glazier, preprint (1999). More Information -
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PS (398.4 KB)
“Diffusion and Deformations of Single Hydra Cells in Cellular Aggregates,” Jean Paul Rieu, Arpita Upadhyaya, James A. Glazier, Noryuki Bob Ouchi and Yasuji Sawada, Biophysical Journal79, 1903-1914 (2000). More Information -
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“Bursts and Cavity Formation in Hydra Cell Aggregates: Experiments and Simulations,” Jose C. M. Mombach, Rita M. C. de Almeida, Gilberto L. Thomas, Arpita Upadhyaya and James A. Glazier, Physica A297, 495-508 (2001). More Information -
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“ Anomalous Diffusion in Two-Dimensional Hydra Cell Aggregates ,” Arpita Upadhyaya, Jean Paul Rieu, James A. Glazier, and Yasuji Sawada, Physica A293 , 549-558 (2001). More Information -
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“Thermal Hard Turbulence in Mercury,” Takehiko Segawa, Antoine Naert, James A. Glazier and Masaki Sano, preprint (2000). More Information -
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“Current Status of Three-Dimensional Growth Laws,” James A. Glazier and Burkhard Prause, in Foams, Emulsions and their Applications, P. Zitha, J. Banhart and G. Verbist editors (Verlag MIT Publishing, Bremen, Germany, 2000), 120-127. More Information -
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“Energy Landscape of 2D Fluid Foams,” Yi Jiang, Eric Jainaud, Cyril Flament, James A. Glazier and Francois Graner, in Foams, Emulsions and their Applications, P. Zitha, J. Banhart and G. Verbist editors (Verlag MIT Publishing, Bremen, Germany, 2000), 321-327. More Information -
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“Embryonic Tissues Are Viscoelastic Materials,” Daniel Beysens, Gabor Forgacs and James A. Glazier, Canadian Journal of Physics78, 243-251 (2000). More Information -
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“Cell Sorting is Analogous to Phase Ordering in Fluids,” Daniel A. Beysens, Gabor Forgacs and James A. Glazier, Proceedings of the National Academy of Sciences (USA)97, 9467-9471 (2000). More Information -
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“Model of Convergent Extension in Animal Morphogenesis,” Mark Zajac, Gerald L. Jones, and James A. Glazier, Physical Review Letters85, 2022-2025 (2000). More Information -
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“Ab Initio Derivation of Stress and Strain in Fluid Foams,” Yi Jiang, Marius Asipauskas, James A. Glazier, M. Aubouy and Francois Graner, in Foams, Emulsions and their Applications, P. Zitha, J. Banhart and G. Verbist editors (Verlag MIT Publishing, Bremen, Germany, 2000), 297-304. More Information -
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“The Fractal Structure of the Mitochondrial Genomes,” Nestor Oiwa and James A. Glazier, Physica A311, 221-230 (2002). More Information -
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“On Cellular Automaton Approaches to Modeling Biological Cells,” Mark S. Alber, Maria A. Kiskowski, James A. Glazier and Yi Jiang, in Mathematical Systems Theory in Biology, Communication, and Finance, J. Rosenthal, and D. S. Gilliam, editors (IMA142, Springer-Verlag, New York, 2002), 1-40. More Information -
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“Multi-model Simulations of Chicken Limb Morphogenesis,” Rajiv Chaturvedi, Jesus A. Izaguirre, ChengBang Huang, Trevor Cickovski, Patrick Virtue, Gilberto Thomas, Gabor Forgacs, Mark Alber, George Hentschel, Stuart A. Newman, and James A. Glazier, in Computational Science – ICCS 2003: International Conference Melbourne, Australia and St. Petersburg, Russia, June 2-4, 2003. Proceedings, Part III, P. M. A. Sloot, D. Abramson, A. V. Bogdanov, J. J. Dongarra, A. Y. Zomaya and Y. E. Gorbachev editors (LNCS2659, Springer-Verlag, New York, 2003), 39-49. More Information -
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“A Texture Tensor to Qualify Deformations,” Miguel Aubouy, Yi Jiang, James A. Glazier, and François Granner, Granular Matter5, 67-70 (2003). More Information -
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“A Texture Tensor to Qualify Deformations: The Example of Two-Dimensional Flowing Foams,” Marius Asipauskas, Miguel Aubouy, James A. Glazier, François Granner and Yi Jiang, Granular Matter5, 71-74 (2003). More Information -
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“A Novel Mechanism for Mesenchymal Condensation during Limb Chondrogenesis in Vitro,” Wei Zeng, Gilberto L. Thomas, Stuart A. Newman and James A. Glazier, in Mathematical Modelling and Computing in Biology and Medicine, 5th ESMTB Conference 2002, V. Capasso editor (Società Editrice Esculapio, Bologna, 2003), 80-86. More Information -
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“Improving the Realism of the Cellular Potts Model in Simulations of Biological Cells,” Noriyuki Bob Ouchi, James A. Glazier, Jean-Paul Rieu, Arpita Upadhyaya and Yasuji Sawada, Physica A329, 451–458 (2003). More Information -
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“Dynamics and Topological Aspects of a Reconstructed Two-Dimensional Foam Time Series Using Potts Model on a Pinned Lattice,” Igor F. Vasconcelos, Isabelle Cantat, James A. Glazier, Journal of Computational Physics192, 1-20 (2003). More Information -
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PS (5 MB)
“CompuCell, a Multi-model Framework for Simulation of Morphogenesis,” J. A. Izaguirre, R. Chaturvedi, C. Huang, T. Cickovski, J. Coffland, G. Thomas, G. Forgacs, M. Alber, G. Hentschel, S. A. Newman and J. A. Glazier, Bioinformatics20, 1129-1137 (2004). More Information -
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“Interplay between Activator–Inhibitor Coupling and Cell-Matrix Adhesion in a Cellular Automaton Model for Chondrogenic Patterning,” M.A. Kiskowski et al. Developmental Biology271 (2004) 372–387. More Information -
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PS (2.62 MB)
“Dynamical Mechanisms for Skeletal Pattern Formation in the Vertebrate Limb,” H. George. E. Hentschel, Tilmann Glimm, James A. Glazier and Stuart A. Newman, Proceedings of the Royal Society London B271, 1713-1722 (2004). More Information -
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PS (3.87 MB)
“Self-Similar Mitochondrial DNA,” Nestor N. Oiwa and James A. Glazier, Cell Biochemistry and Biophysics41, 41-62 (2004). More Information -
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PS (2.17 MB)
“Non-Turing Stripes and Spots: A Novel Mechanism for Biological Cell Clustering,” Wei Zeng, Gilberto L. Thomas and James A. Glazier, Physica A341, 482-494. More Information -
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PS (2.91 MB)
“Cell-Oriented Modeling of in Vitro Capillary Development,” Roeland M.H. Merks, Stuart A. Newman and James A. Glazier, in Cellular Automata: 6th International Conference on Cellular Automata for Research and Industry, ACRI 2004, Amsterdam, The Netherlands, October 25-28, 2004. Proceedings, P. M. A. Sloot, B. Chopard and A. G. Hoekstra editors (Lecture Notes in Computer Science3305, Springer-Verlag Heidelberg, 2004), 425-434. More Information -
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“A Hybrid Discrete-Continuum Model for 3-D Skeletogenesis of the Vertebrate Limb,” R. Chaturvedi, et al., ed. P.M.A. Sloot, B. Chopard, and A.G. Hoekstra: ACRI 2004, LNCS 3305, 543-552 (2004). More Information -
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“The Rheology of Two-Dimensional Foams,” Simon Cox, Denis Weaire and James A. Glazier, Rheol. Acta43, 442-448 (2004). More Information -
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PS (1.53 MB)
“Simulating Convergent Extension by Way of Anisotropic Differential Adhesion,” Zajac M, Jones GL, and Glazier JA, Journal of Theoretical Biology222 (2), 247-259 (May 21 2003). More Information -
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“Introduction to Special Issue on Multiscale Modeling in Biology,” Mark Alber, Thomas Hou, James A. Glazier, Yi Jiang, Multiscale Modeling and Simulation: A SIAM Interdisciplinary Journal3, xii-xiii (2005).
“A Cell-centered Approach to Developmental Biology,” Roeland H. M. Merks and James A. Glazier, Physica A352, 113-130 (2005). More Information -
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“On Multiscale Approaches to Three-dimensional Modeling of Morphogenesis,” Rajiv Chaturvedi, ChengBang Huang, Bogdan Kazmierczak, Terry Schneider, Jesus A. Izaguirre, Tilmann Glimm, H. George E. Hentschel, James A. Glazier, Stuart A. Newman, Mark S. Alber, Journal of the Royal Society Interface2, 237-253 (2005). More Information -
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PS (4.17 MB)
“Extraction of Relevant Physical Parameters from 3D Images of Foams Obtained by X-ray Tomography,” Jérôme Lambert, Isabelle Cantat, Renaud Delannay, Anne Renault, François Graner, James A. Glazier, Igor Veretennikov, Peter Cloetens, Colloids and Surfaces A: Physicochem. Eng. Aspects263, 295-302 (2005). More Information -
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PS (1.10 MB)
“A Framework for Three-Dimensional Simulation of Morphogenesis,” Trevor M. Cickovski, Chengbang Huang, Rajiv Chaturvedi, Tilmann Glimm, H. George E. Hentschel, Mark S. Alber, James A. Glazier, Stuart A. Newman, and Jesús A. Izaguirre, IEEE/ACM Transactions on Computational Biology and Bioinformatics2, 1-16 (2005). More Information -
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PS (6.14 MB)
“Solving the Advection-diffusion Equations in Biological Contexts Using the Cellular Potts Model,” Debasis Dan, Christopher Mueller, Kun Chen, and James A. Glazier, Physical Review E72, 041909 (2005). More Information -
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PS (2.22 MB)
“Dynamic Mechanisms of Blood Vessel Growth,” Roeland MH Merks and James A. Glazier, Nonlinearity19, C1-C10 (2006). More Information -
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PS (1.63 MB)
“Cell Elongation Is Key to in silico Replication of in vitro Vasculogenesis and Subsequent Remodeling,” Roeland M.H. Merks, Sergey V. Brodsky, Michael S. Goligorksy, Stuart A. Newman and James A. Glazier, Developmental Biology289, 44-54 (2006). More Information -
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PS (3.05 MB)
“A Parallel Implementation of the Cellular Potts Model for Simulation of Cell-Based Morphogenesis,” Nan Chen, James A. Glazier, and Mark S. Alber, in Cellular Automata: 7th International Conference on Cellular Automata, for Research and Industry, ACRI 2006, Perpignan, France, September 20-23, 2006 Proceedings, S. El Yacoubi, B. Chopard and S. Bandini, eds. (Lecture Notes in Computer Science) 4173, Springer-Verlag, Heidelberg, 2006), 58-67. More Information -
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PS (2.00 MB)
“Adhesion between cells, diffusion of growth factors, and elasticity of the AER produce the paddle shape of the chick limb,” Nikodem J. Poplawski, Maciej Swat, J. Scott Gens and James A. Glazier, Physica A373C, 521-532 (2007). More Information -
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PS (2.08 MB)
“Cell movement during chick primitive streak formation,” Manli Chuai, Wei Zeng, Xuesong Yang, Veromka Boychenko, James A. Glazier, Cornelis J. Weijer, Developmental Biology296: 137-149 (2006). More Information -
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PS (3.7 MB)
“Analysis of tissue flow patterns during primitive streak formation in the chick embryo,” Cheng Cui, Xuesong Yang, ManLi Chuai, James A. Glazier, Corneljis J. Weijer, Developmental Biology284, 37-47 (2005). More Information -
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PS (4.31 MB)
“Viscous Instabilities in Flowing Foams: a Cellular Potts Model Approach,” Soma Sanyal and James A Glazier, J. Stat. Mech. P10008 (2006). More Information -
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PS (1.37 MB)
“A parallel implementation of the Cellular Potts Model for simulation of cell-based morphogenesis,” Nan Chen, James A. Glazier, Jesús A. Izaguirre and Mark S. Alber, Computer Physics Communications176: 670-681 (2007). More Information -
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PS (2.41 MB)
“Experimental Growth Law for Bubbles in a Moderately "Wet" 3D Liquid Foam,”Jerome Lambert, Isabelle Cantat, Renaud Delannay, Rajmund Mokso, Peter Cloetens, James A. Glazier, and Francois Graner, Physical Review Letters99: 058304 (2007) . More Information -
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PS (2.6 MB)
“Magnetization to Morphogenesis: A Brief History of the
Glazier-Graner-Hogeweg Model,”James A. Glazier, Ariel Balter, Nikodem
J. Poplawski, Single-Cell-Based Models in Biology and Medicine A.
R. A. Anderson, M. A. J. Chaplain and K. A. Rejniak, editors
(Birkhäuser, Basel, Boston and Berlin, 2007), 79-106. PDF (1.4 MB)
“The Glazier-Graner-Hogeweg Model: Extensions, Future Directions and
Opportunities for Further Study,”Ariel Balter, Roeland M. H. Merks,
Nikodem J. Poplawski, Maciej Swat and James A. Glazier,Single-Cell-Based Models in Biology and Medicine A.
R. A. Anderson, M. A. J. Chaplain and K. A. Rejniak, editors
(Birkhäuser, Basel, Boston and Berlin, 2007), 151-168. PDF (892 KB)
“Coordinated Action of N-CAM, N-cadherin, EphA4, and ephrinB2 Translates
Genetic Prepatterns into Structure during Somitogenesis in Chick,”James
A. Glazier, Ying Zhang, Maciej Swat, Benjamin Zaitlen, and Santiago
Schnell, Current Topics in Developmental Biology81: 205-247 (2008). More Information -
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PS (2.3 MB)
“Compact Microfluidic Structures for Generating Spatial and Temporal Gradients”Dragos Amarie, James A. Glazier, and Stephen C. Jacobson, Analytical Chemistry79: 471 -9477 (2007). More Information -
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PS (866 KB)
“Simulation of Single-species Bacterial-Biofilm Growth using the
Glazier-Graner-Hogeweg Model and the CompuCell3D Modeling Environment,”
Nikodem J. Poplawski, Abbas Shirinifard, Maciej Swat and James A.
Glazier, Mathematical Biosciences and Engineering , 5: 355-388 (2008). More Information -
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PS (55 MB)
“From Genes to Organisms Via the Cell: A Problem-Solving Environment for
Multicellular Development,” Trevor Cickovski, Kedar Aras, Maciej Swat,
Roeland M. H. Merks, Tilmann Glimm, H. George E. Hentschel, Mark S.
Alber, James A. Glazier, Stuart A. Newman and Jesus A. Izaguirre,, Computing in Science and Engineering, 9: 50-60 (2007). More Information -
PDF (448 KB) -
PS (997 KB)
“Contact-Inhibited Chemotaxis in De Novo and Sprouting Blood-Vessel Growth,“ Roeland M. H. Merks, Erica D. Perryn, Abbas Shirinifard, James A. Glazier, PLoS Computational Biology, 4: e1000163 (2008) PDF (1.75 MB)
Ph.D. Theses Supervised:
“Fractal Analysis of DNA Sequence Data (Chaos Theory),” Cheryl L. Berthelsen, Ph.D. University of Utah, Department of Medical Informatics, March 1993 (supervised with Prof. Mark H. Skolnick). More Information -
PDF (5.16 MB) -
PS (6.58 MB)
“Cellular Pattern Formation,” Yi Jiang, Ph.D. University of Notre Dame, Department of Physics, November, 1998. More Information -
PDF (6.33 MB) -
PS (84.91 MB)
“Synchrony and Chaos in Coupled Oscillators and Neural Networks,” Sridhar Raghavachari, Ph.D. University of Notre Dame, Department of Physics, April, 1999. More Information -
PDF (2.74 MB) -
PS (18.00 MB)
“Magnetic Resonance Imaging of Structure and Coarsening in Three-Dimensional Foams,” Burkhard A. Prause, Ph.D. University of Notre Dame, Department of Physics, March, 2000. More Information -
PDF (1.27 MB) -
PS (11.79 MB)
“Thermodynamic and Fluid Properties of Cells, Tissues, and Membranes,” Upadaya, Arpita, Ph.D. University of Notre Dame, Department of Physics, April, 2000. More Information -
PDF (7.01 MB) -
PS (60.51 MB)
“Modeling Convergent Extension by Way of Anisotropic Differential Adhesion,” Mark Zajac, Ph.D. University of Notre Dame, Department of Physics, May, 2002 (supervised with Prof. Gerald L. Jones).
“Living Matter: Generic Mechanisms in Embryonic Tissue Morphogenesis,” Wei, Zeng, Ph.D. Indiana University, Department of Physics, December, 2004. PDF (7.20 MB)
“A Cursory Study of the Thermodynamic and Mechanical Properties of Monte-Carlo Simulations of the Ising Model,” Seng Kai Wong, Ph.D. University of Notre Dame, Department of Physics, April, 2005 (supervised with Prof. Kathie E. Newman).Wong, Seng Kai. PDF (2.88 MB) -
Source Code (300 KB)
“Dynamics of Cell Movement and Tissue Motion in Gastrulation and Micromass Cell Culture,” Cheng Cui, Ph.D. Indiana University, Department of Physics, July 2005. PDF (9.89 MB)
“Dynamic Spatio-Temporal Interaction of Morphogens, Forces and Growth in Embryonic Morphogenesis,” Ying, Zhang, Ph.D. Indiana University, Department of Physics, August, 2007. More Information -
PDF (8.8 MB) -
PS (16 MB)
“An Object-Oriented Modeling Framework for the Arterial Wall,” Manuel
Ignacio Balaguera Jiménez, Ph.D. University of Los Andes, Department of
Mechanical Engineering (supervised with Juan Carlos Briceño), September,
2007. PDF (2.7 MB) -
PS (35 MB)
Undergraduat Theses Supervised:
“Cell Based Modeling of Arteriosclerosis,” Megan Knapp
Undergraduate Thesis, University of Rochester,
(supervised with Roeland merks and Stepen Teitel).
PDF (621 KB) -
PS (788 KB)
Popular Write Ups:
“Soap Bubbles Make Serious Physics,” J. Maddox, Nature338 , 293 (1989).
“Frothy Physics,” F. Flam, Science News 136 , 72 (1989).
“Humble Froth Offers Clues to New Materials,” M. W. Browne, New York Times C1 (March 20, 1990).
Book Review of Chaos: the Making of a New Science, by J. Gleick, James A. Glazier and Gemunu H. Gunaratne, Physics Today 41, 79 (February 1988).
“Probing the Interior of a Coarsening Foam,” I. Peterson, Science News 148, 68 (1995).
“Whipping up an Image of a Foam's Interior,” I. Peterson, Science News 148, 231 (1995).
“Physicists Advance Into Biology,” J. Glanz, Science272, 646-648 (1996).
“At the End of Pfalsgraf there is Chaos: An Assessment of Proximate Cause in the Light of Chaos Theory,” Edward S. Adams, Gordon B. Brumwell and James A. Glazier, University of Pittsburgh Law Review 59 (Spring), 507-555 (1998).
“The elusive ‘ultimate state’ of thermal convection,” Joël Sommeria, Nature398 , 294-295 (1999).
“Transitions Still to be Made,” Philip Ball, Nature supplement to 402, C73-C76 (1999).
“Biophysics: Science in Motion,” Philip Ball, Nature406, 244-245 (2000).
“Ramping up to Multiscale: Taking Biomedical Modeling to a New Level,” Dana Mackenzie, Biomedical Computation Review 19-26 (Spring 2006). [PDF]
Edited Volumes:
Special Issue on Multiscale Modeling in Biology, Mark Alber, Thomas Hou, James A. Glazier, Yi Jiang, Guest Editors, Multiscale Modeling and Simulation: A SIAM Interdisciplinary Journal3 (2), 245-475 (2005).
Proceedings of the Workshop “Biocomplexity VI: Complex Behavior in Unicellular Organisms”, James A. Glazier, Clay Fuqua, Yves Brun and Mark S. Alber, Biofilms1 (4), 227-391 (2004).
Meetings Organized
Biophysics Workshop, “Biocomplexity I: Modeling Limb Development,” University of Notre Dame, 2/24/01-2/25/01 (with Mark Alber).
Biophysics Workshop, “Biocomplexity II: Structure and Function of the Cytoskeleton,” University of Notre Dame, 11/9/01-11/12/01 (with Mark Alber).
Minisymposium, “Towards a Comprehensive Modelling of Organogenesis,” ECMTB 2002, Milan, Italy, 7/2/02-7/6/02 (with George Hentschel).
Biophysics Workshop, “Biocomplexity III, Biomechanics,” University of Notre Dame, 11/7/02-11/10/02 (with Glen Niebur and Charles Turner).
Biophysics Workshop, “Biocomplexity IV, Regenerative Medicine and Biology,” Indiana University, 5/14/03-5/18/03 (with David Stocum, Anton Neff, Anthony Mescher, and Mark Alber).
Biophysics Workshop, “Biocomplexity V, Multiscale Modeling in Biology,” University of Notre Dame, 8/13/03-8/17/03 (with Mark Alber and Yi Jiang).
Biophysics Workshop, “Biocomplexity VI, Complex Behavior in Unicellular Organisms,” Indiana University, Bloomington, 5/12/04-5/16/04 (with Clay Fuqua, Yves Brun, and Mark Alber).
Biophysics Workshop, “Biocomplexity VII, “Unraveling the Function and Kinetics of Biochemical Networks,” Indiana University, Bloomington, 5/9/05-5/12/05 (with Santiago Schnell).
Minisymposium, “Cell-Oriented Models of Biological Development,” SIAM Conference on Applications of Dynamical Systems, Snowbird, UT, 5/22/05-5/27/05 (with Roeland Merks).
Biophysics Workshop, “Biocomplexity VIII, Applications of Methods of Stochastic Systems and Statistical Physics in Biology,” University of Notre Dame, 10/28/05-10/30/05 (with Mark Alber, Yi Jiang and Laszlo Barabasi).
Biophysics Workshop, “Biocomplexity IX, Multiscale Modeling of Multicellular Systems,” Indiana University, 5/8/06-5/10/06 (with Santiago Schnell, Timothy Newman and Philip Maini).
Institute of Pure and Applied Mathematics Workshop, “Workshop IV: Systems Biology and Molecular Modeling,” 5/22/06-5/26/06, University of California Los Angeles (with Dan Kamei).