David G. Miguez: Difference between revisions

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==Personal Info==
==Personal Info==


[[Image:davidgmiguez.jpg|160 px|left|David G. Míguez]]
[[Image:DGM-pic.JPG|350 px|left|David G. Míguez]]


Head of the [http://sysbio.openwetware.org/  Biophysics and Systems Biology Lab  ]
Head of the [http://sysbio.openwetware.org/  Biophysics and Systems Biology Lab  ]
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David G. Míguez
David G. Míguez


e-mail: david DOT gomez DOT miguez  ''AT'' uam DOT es
e-mail: david DOT miguez  ''AT'' uam DOT es


Depto. de Fisica de la Materia Condensada
Depto. de Fisica de la Materia Condensada
Facultad de Ciencias
Facultad de Ciencias, Mod 8, 4-13
Universidad Autonoma de Madrid
Universidad Autonoma de Madrid
Cantoblanco,
Cantoblanco,
28049 Madrid (SPAIN)
28049 Madrid (SPAIN)


phone (+34) 657-929-775
phone (+34) 717-711-470
work  (+34) 914-978-076
work  (+34) 914-978-076


==Publications==
==Publications==
# D. G. Míguez, “A Branching Process to Characterize the Dynamics of Stem Cell Differentiation”, Scientific Reports, (In press, 2015)
# M. Bernabé-Rubio, G. Andrés, J. Casares-Arias, J. Fernández-Barrera, L. Rangel, N. Reglero-Real, D.C. Gershlick, J.J. Fernández, J. Millán, I. Correas, D.G. Miguez,  M.A. Alonso, ''[http://jcb.rupress.org/content/214/3/259.long Novel role for the midbody in primary ciliogenesis by polarized epithelial cells]'', J. Cell Biology '''214''', 259–273 (2016)
# A. Valencia-Expósito*, I. Grosheva*, D. G. Míguez*, A. González-Reyes, M. D. Martín-Bermudo, ''[http://www.nature.com/ncomms/2016/160218/ncomms10746/full/ncomms10746.html The Myosin Light Chain Phosphatase is required in epithelial cells to control basal actomyosin oscillations governing tissue elongation]'', Nature Communications '''7''', 10746 (2016) (*shared 1st authorship)
# D. G. Míguez, ''[http://www.nature.com/articles/srep13265 A Branching Process to Characterize the Dynamics of Stem Cell Differentiation]'', Scientific Reports '''5''', 13265 (2015)
#  V. Doldán-Martelli & D. G. Míguez, ''[http://journals.plos.org/plosone/article?id=10.1371/journal.pone.0117558 Synergistic Interaction between Selective Drugs in Cell Populations Models], PloS one '''10''' (2), e0117558 (2015).
#  V. Doldán-Martelli & D. G. Míguez, ''[http://journals.plos.org/plosone/article?id=10.1371/journal.pone.0117558 Synergistic Interaction between Selective Drugs in Cell Populations Models], PloS one '''10''' (2), e0117558 (2015).
# A. L. Sanz & D. G. Míguez, ''[http://www.landesbioscience.com/journals/neurogenesis/article/29529/ Dual R-Smads interplay in the regulation of vertebrate neurogenesis]''.  Neurogenesis '''1''', e29529 (2014).
# A. L. Sanz & D. G. Míguez, ''[http://www.landesbioscience.com/journals/neurogenesis/article/29529/ Dual R-Smads interplay in the regulation of vertebrate neurogenesis]''.  Neurogenesis '''1''', e29529 (2014).
Line 70: Line 72:
# S. Rüdiger, D. G. Míguez, A. P. Muñuzuri, F. Sagués, J. Casademunt, ''[http://prl.aps.org/abstract/PRL/v90/i12/e128301 Dynamics of Turing Patterns under Spatiotemporal Forcing]'', Phys. Rev. Lett '''90''', 128301 (2003).
# S. Rüdiger, D. G. Míguez, A. P. Muñuzuri, F. Sagués, J. Casademunt, ''[http://prl.aps.org/abstract/PRL/v90/i12/e128301 Dynamics of Turing Patterns under Spatiotemporal Forcing]'', Phys. Rev. Lett '''90''', 128301 (2003).


*'''[[User:DavidMiguez|David]] 05:58, 27 February 2015 (EST)''':
*'''[[User:DavidMiguez|David]] 08:26, 1 September 2015 (EDT)'''

Revision as of 06:17, 29 August 2016

Personal Info

David G. Míguez
David G. Míguez

Head of the Biophysics and Systems Biology Lab

Departamento de Física de la Materia Condensada, Universidad Autónoma de Madrid, 28049 Madrid


Previous Research Institutions:

  • 2001-2005 PhD Thesis at Group of Nonlinear Physics at Santiago de Compostela (Galicia, Spain),
  • 2005-2006 Group of Complex Systems, Brandeis University (MA)
  • 2006-2009 Department of Systems Biology, Harvard Medical School (MA),
  • 2009-2011 Instituto de Biología Molecular de Barcelona (CSIC, Spain)

Background: Nonlinear Dynamics, reaction-diffusion, autocatalitic and bistable systems, feedback, pH oscillators, Turing Patterns, Enzyme kinetics, Systems Biology in Cancer, Signaling pathways.

Interests: Systems Biology, Biophysics, Developmental Systems Biology

Editor of In Silico Biology

Contact

David G. Míguez

e-mail: david DOT miguez AT uam DOT es

Depto. de Fisica de la Materia Condensada Facultad de Ciencias, Mod 8, 4-13 Universidad Autonoma de Madrid Cantoblanco, 28049 Madrid (SPAIN)

phone (+34) 717-711-470 work (+34) 914-978-076

Publications

  1. M. Bernabé-Rubio, G. Andrés, J. Casares-Arias, J. Fernández-Barrera, L. Rangel, N. Reglero-Real, D.C. Gershlick, J.J. Fernández, J. Millán, I. Correas, D.G. Miguez, M.A. Alonso, Novel role for the midbody in primary ciliogenesis by polarized epithelial cells, J. Cell Biology 214, 259–273 (2016)
  2. A. Valencia-Expósito*, I. Grosheva*, D. G. Míguez*, A. González-Reyes, M. D. Martín-Bermudo, The Myosin Light Chain Phosphatase is required in epithelial cells to control basal actomyosin oscillations governing tissue elongation, Nature Communications 7, 10746 (2016) (*shared 1st authorship)
  3. D. G. Míguez, A Branching Process to Characterize the Dynamics of Stem Cell Differentiation, Scientific Reports 5, 13265 (2015)
  4. V. Doldán-Martelli & D. G. Míguez, Synergistic Interaction between Selective Drugs in Cell Populations Models, PloS one 10 (2), e0117558 (2015).
  5. A. L. Sanz & D. G. Míguez, Dual R-Smads interplay in the regulation of vertebrate neurogenesis. Neurogenesis 1, e29529 (2014).
  6. T. Ruiz-Herrero, J. Estrada, R. Guantes, D. G. Miguez, A tunable coarse-grained model for ligand-receptor interaction, PLOS Computational Biology 9, e1003274.(2013).
  7. D. G. Míguez*, E. Gil-Guiñón, S. Pons and E. Martí Smad2 and Smad3 cooperate and antagonize simultaneously in vertebrate neurogenesis, Journal Of Cell Science 126, 5335 (2013). (*First and corresponding authorship)
  8. M. Saade, I. Gutiérrez-Vallejo, G. Le Dréau, M. A. Rabadán, D. G. Miguez, J. Buceta, E. Martí Sonic hedgehog signaling switches the mode of division in the developing nervous system, Cell Reports 4,492 (2013).
  9. D. G. Míguez, Network Nonlinearities in Drug Treatment, Interdisciplinary Sciences: Computational Life Sciences 5,85 (2013).
  10. P. Gregorio-Godoy, D. G. Míguez, Synthetic approaches to study transcriptional networks and noise in mammalian systems, IET Systems Biology 7,11 (2013).
  11. V. Doldán-Martelli, R. Guantes, D. G. Míguez, A Mathematical Model for the Rational Design of Chimeric Ligands in Selective Drug Therapies, CPT: Pharmacometrics & Systems Pharmacology 2, e26 (2013).
  12. V. Doldán-Martelli, D. G. Míguez, Theoretical Approaches to Growth Hormone Signaling, in 'Growth Hormones: Synthesis, Regulation and Health Implications', Eds. A. Andersdtr and J. Anderssen Nova Publishers ISBN 9781619426818 (2012).
  13. D. G. Míguez, Milos Dolnik, Irving Epstein and Alberto P. Muñuzuri, Interaction Of Chemical Patterns in Coupled Layers, Phys. Rev. E, 84, 046210 (2011).
  14. D. G. Míguez, The role of asymmetric binding in ligand-receptor systems with 1:2 interaction ratio Biophys Chem 148, 74-81 (2010)
  15. D.G. Míguez, Forcing of Nonlinear Pattern Formation Systems, Lambert Academic Publishing, ISBN 9783838364223 (2010) Book.
  16. D. G. Míguez, P. McGraw, A. P. Muñuzuri and M. Menzinger, Selection of Flow-Distributed Oscillation and Turing Patterns by Boundary Forcing in a Linearly Growing, Oscillating Medium, Phys. Rev. E, 80, 026208 (2009).
  17. I. A. Swinburne, D. G. Míguez, D. Landgraf, and P. A. Silver, Intron length increases oscillatory periods of gene expression in animal cells, Genes & Dev., 22 2008, 2342-2346 (2008).
  18. S. Alonso, D. G. Míguez, F. Sagués, Differential susceptibility to noise of mixed Turing and Hopf modes in a photosensitive chemical medium, Europhys. Lett, 81, 30006 (2008).
  19. D. G. Míguez, V. K. Vanag, I. R. Epstein, Fronts and pulses in an enzymatic reaction with glucose oxidase P.N.A.S. 104, 6992 (2007).
  20. V. K. Vanag, D.G. Míguez, I. R. Epstein, Designing an Enzymatic Oscillator: Bistability and Feedback Control led Oscillations with Glucose Oxidase in a CSTR, J. Phys. Chem. 125, 194515 (2006).
  21. D.G. Míguez, S. Alonso, A.P. Muñuzuri, F. Sagués, Experimental evidence of localized oscillations in the photosensitive chlorine dioxide-iodine-malonic acid reaction, Phys. Rev. Lett, 97, 178301 (2006).
  22. D. G. Míguez, A. P. Muñuzuri, On the orientation of stripes in fish skin patterning, Biophys. Chem. 124, 161 (2006).
  23. D. G. Míguez, R. A. Satnoianu, A. P. Muñuzuri, Experimental steady pattern formation in reaction-diffusion-advection systems, Phys. Rev. E 73, 025201 (R) (2006).
  24. D. G. Míguez, M. Dolnik, A. P. Muñuzuri, L. Kramer, Effect of Axial Growth on Turing Pattern Formation. Phys. Rev. Lett 96, 048304 (2006).
  25. D. G. Míguez, G. Izús, A. P. Muñuzuri, Robustness and Stability of Flow-and-Diffusion Structures, Phys. Rev. E 73, 016207 (2006).
  26. D. G. Miguez, V. Perez-Villar, and A. P. Munuzuri, Turing instability controlled by spatiotemporal imposed dynamics, Phys. Rev. E 71, 066217 (2005).
  27. F. Sagués, D. G. Míguez, E. M. Nicola, A. P. Muñuzuri, J. Casademunt, L. Kramer, Travelling-stripe forcing of Turing patterns, Physica D 199, 235 (2004).
  28. D. G. Míguez, E. M. Nicola, A. P. Muñuzuri, J. Casademunt, F. Sagués, L. Kramer, Traveling-Stripe Forcing Generates Hexagonal Patterns, Phys. Rev. Lett. 93, 048303 (2004).
  29. M. Kærn*, D. G. Míguez*, A. P. Muñuzuri, M. Menzinger, Control of chemical pattern formation by a clock-and-wavefront type mechanism, Biophys. Chem. 110, 231 (2004). *Shared 1st authorship.
  30. B. Peña, C. Pérez-García, A. Sanz-Anchelergues, D. G. Míguez, A. P. Muñuzuri, Transverse instabilities in chemical Turing patterns of stripes, Phys. Rev. E 68, 056206 (2003).
  31. S. Rüdiger, D. G. Míguez, A. P. Muñuzuri, F. Sagués, J. Casademunt, Dynamics of Turing Patterns under Spatiotemporal Forcing, Phys. Rev. Lett 90, 128301 (2003).
  • David 08:26, 1 September 2015 (EDT)