Ajay Gopinathan
Ajay Gopinathan
Professor of Physics, UC Merced
Verified email at
Cited by
Cited by
A bimodal distribution of two distinct categories of intrinsically disordered structures with separate functions in FG nucleoporins
J Yamada, JL Phillips, S Patel, G Goldfien, A Calestagne-Morelli, ...
Molecular & Cellular Proteomics 9 (10), 2205-2224, 2010
Tunable nanowrinkles on shape memory polymer sheets
CC Fu, A Grimes, M Long, CGL Ferri, BD Rich, S Ghosh, S Ghosh, LP Lee, ...
Advanced Materials 21 (44), 4472-4476, 2009
Measuring the stiffness of bacterial cells from growth rates in hydrogels of tunable elasticity
HH Tuson, GK Auer, LD Renner, M Hasebe, C Tropini, M Salick, ...
Molecular microbiology 84 (5), 874-891, 2012
Dynamics of membranes driven by actin polymerization
NS Gov, A Gopinathan
Biophysical journal 90 (2), 454-469, 2006
Shrink-film configurable multiscale wrinkles for functional alignment of human embryonic stem cells and their cardiac derivatives.
A Chen, DK Lieu, L Freschauf, V Lew, H Sharma, J Wang, D Nguyen, ...
Advanced materials (Deerfield Beach, Fla.) 23 (48), 5785-5791, 2011
Cylindrical luminescent solar concentrators with near-infrared quantum dots
RH Inman, GV Shcherbatyuk, D Medvedko, A Gopinathan, S Ghosh
Optics express 19 (24), 24308-24313, 2011
Statistically locked-in transport through periodic potential landscapes
A Gopinathan, DG Grier
Physical review letters 92 (13), 130602, 2004
Polymer translocation in crowded environments
A Gopinathan, YW Kim
Physical Review Letters 99 (22), 228106, 2007
Nucleotide-dependent conformations of FtsZ dimers and force generation observed through molecular dynamics simulations
J Hsin, A Gopinathan, KC Huang
Proceedings of the National Academy of Sciences 109 (24), 9432-9437, 2012
Mechanical consequences of cell-wall turnover in the elongation of a Gram-positive bacterium
G Misra, ER Rojas, A Gopinathan, KC Huang
Biophysical journal 104 (11), 2342-2352, 2013
Nanostructure of the interpenetrating networks in poly (3‐hexylthiophene)/fullerene bulk heterojunction materials: Implications for charge transport
W Ma, A Gopinathan, AJ Heeger
Advanced Materials 19 (21), 3656-3659, 2007
Bimetallic nanopetals for thousand-fold fluorescence enhancements
CC Fu, G Ossato, M Long, MA Digman, A Gopinathan, LP Lee, E Gratton, ...
Applied Physics Letters 97 (20), 2010
Cytoskeletal network morphology regulates intracellular transport dynamics
D Ando, N Korabel, KC Huang, A Gopinathan
Biophysical journal 109 (8), 1574-1582, 2015
Nuclear pore complex protein sequences determine overall copolymer brush structure and function
D Ando, R Zandi, YW Kim, M Colvin, M Rexach, A Gopinathan
Biophysical journal 106 (9), 1997-2007, 2014
Out-of-equilibrium behavior of Casimir-type fluctuation-induced forces for free classical fields
DS Dean, A Gopinathan
Physical Review E 81 (4), 041126, 2010
Microtubule defects influence kinesin-based transport in vitro
WH Liang, Q Li, KMR Faysal, SJ King, A Gopinathan, J Xu
Biophysical journal 110 (10), 2229-2240, 2016
Physical motif clustering within intrinsically disordered nucleoporin sequences reveals universal functional features
D Ando, M Colvin, M Rexach, A Gopinathan
PloS one 8 (9), e73831, 2013
Frustration-induced phases in migrating cell clusters
K Copenhagen, G Malet-Engra, W Yu, G Scita, N Gov, A Gopinathan
Science advances 4 (9), eaar8483, 2018
Topologically induced swarming phase transition on a 2D percolated lattice
DA Quint, A Gopinathan
Physical Biology 12 (4), 046008, 2015
Self-organized sorting limits behavioral variability in swarms
K Copenhagen, DA Quint, A Gopinathan
Scientific reports 6 (1), 31808, 2016
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