G. Wayne Brodland
G. Wayne Brodland
Professor of Engineering, University of Waterloo
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Cited by
Cited by
Forces driving epithelial wound healing
A Brugués, E Anon, V Conte, JH Veldhuis, M Gupta, J Colombelli, ...
Nature physics 10 (9), 683-690, 2014
The differential interfacial tension hypothesis (DITH): a comprehensive theory for the self-rearrangement of embryonic cells and tissues
GW Brodland
J. Biomech. Eng. 124 (2), 188-197, 2002
How computational models can help unlock biological systems
GW Brodland
Seminars in cell & developmental biology 47, 62-73, 2015
Control of the mitotic cleavage plane by local epithelial topology
WT Gibson, JH Veldhuis, B Rubinstein, HN Cartwright, N Perrimon, ...
Cell 144 (3), 427-438, 2011
Video force microscopy reveals the mechanics of ventral furrow invagination in Drosophila
GW Brodland, V Conte, PG Cranston, J Veldhuis, S Narasimhan, ...
Proceedings of the National Academy of Sciences 107 (51), 22111-22116, 2010
High strain rate compressive properties of bovine muscle tissue determined using a split Hopkinson bar apparatus
C Van Sligtenhorst, DS Cronin, GW Brodland
Journal of biomechanics 39 (10), 1852-1858, 2006
Biaxial mechanical testing of human sclera
A Eilaghi, JG Flanagan, I Tertinegg, CA Simmons, GW Brodland, ...
Journal of biomechanics 43 (9), 1696-1701, 2010
Cell-level finite element studies of viscous cells in planar aggregates
HH Chen, GW Brodland
J. Biomech. Eng. 122 (4), 394-401, 2000
CellFIT: a cellular force-inference toolkit using curvilinear cell boundaries
GW Brodland, JH Veldhuis, S Kim, M Perrone, D Mashburn, MS Hutson
PloS one 9 (6), e99116, 2014
Tensile properties of embryonic epithelia measured using a novel instrument
C Wiebe, GW Brodland
Journal of biomechanics 38 (10), 2087-2094, 2005
Computational modeling of cell sorting, tissue engulfment, and related phenomena: A review
GW Brodland
Appl. Mech. Rev. 57 (1), 47-76, 2004
Strain uniformity in biaxial specimens is highly sensitive to attachment details
A Eilaghi, JG Flanagan, GW Brodland, CR Ethier
Mechanical evaluation of theories of neurulation using computer simulations
DA Clausi, GW Brodland
Development 118 (3), 1013-1023, 1993
The mechanics of heterotypic cell aggregates: insights from computer simulations
GW Brodland, HH Chen
J. Biomech. Eng. 122 (4), 402-407, 2000
Embryonic tissue morphogenesis modeled by FEM
GW Brodland, DA Clausi
Intermediate filaments may prevent buckling of compressively loaded microtubules
GW Brodland, R Gordon
Combining laser microsurgery and finite element modeling to assess cell-level epithelial mechanics
MS Hutson, J Veldhuis, X Ma, HE Lynch, PG Cranston, GW Brodland
Biophysical journal 97 (12), 3075-3085, 2009
Multi-scale finite element modeling allows the mechanics of amphibian neurulation to be elucidated
X Chen, GW Brodland
Physical Biology 5 (1), 015003, 2008
The mechanics of cell sorting and envelopment
GW Brodland, HH Chen
Journal of Biomechanics 33 (7), 845-851, 2000
A cell-based constitutive model for embryonic epithelia and other planar aggregates of biological cells
GW Brodland, I Daniel, L Chen, JH Veldhuis
International journal of plasticity 22 (6), 965-995, 2006
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