Manoj Gopalakrishnan
Manoj Gopalakrishnan
Department of Physics, IIT Madras
Verified email at - Homepage
TitleCited byYear
A catalytic role of heparin within the extracellular matrix
M Mitsi, K Forsten-Williams, M Gopalakrishnan, MA Nugent
Journal of Biological Chemistry 283 (50), 34796-34807, 2008
Effects of receptor clustering on ligand dissociation kinetics: theory and simulations
M Gopalakrishnan, K Forsten-Williams, MA Nugent, UC Täuber
Biophysical journal 89 (6), 3686-3700, 2005
Persistence in higher dimensions: a finite size scaling study
G Manoj, P Ray
Physical Review E 62 (6), 7755, 2000
Ligand rebinding: self-consistent mean-field theory and numerical simulations applied to surface plasmon resonance studies
M Gopalakrishnan, K Forsten-Williams, TR Cassino, L Padro, TE Ryan, ...
European Biophysics Journal 34 (7), 943-958, 2005
Spatial distribution of persistent sites
G Manoj, P Ray
Journal of Physics A: Mathematical and General 33 (31), 5489, 2000
Length control of microtubules by depolymerizing motor proteins
BS Govindan, M Gopalakrishnan, D Chowdhury
EPL (Europhysics Letters) 83 (4), 40006, 2008
A first-passage-time theory for search and capture of chromosomes by microtubules in mitosis
M Gopalakrishnan, BS Govindan
Bulletin of mathematical biology 73 (10), 2483-2506, 2011
Effectiveness of a dynein team in a tug of war helped by reduced load sensitivity of detachment: evidence from the study of bidirectional endosome transport in D. discoideum
D Bhat, M Gopalakrishnan
Physical biology 9 (4), 046003, 2012
Scaling and fractal formation in persistence
G Manoj, P Ray
Journal of Physics A: Mathematical and General 33 (12), L109, 2000
Theoretical results for chemotactic response and drift of E. coli in a weak attractant gradient
M Reneaux, M Gopalakrishnan
Journal of theoretical biology 266 (1), 99-106, 2010
Microtubule catastrophe from protofilament dynamics
V Jemseena, M Gopalakrishnan
Physical Review E 88 (3), 032717, 2013
Dynamics of a passive sliding particle on a randomly fluctuating surface
M Gopalakrishnan
Physical Review E 69 (1), 011105, 2004
Phase separation driven by a fluctuating two-dimensional self-affine potential field
G Manoj, M Barma
Journal of statistical physics 110 (3-6), 1305-1316, 2003
Memory, bias, and correlations in bidirectional transport of molecular-motor-driven cargoes
D Bhat, M Gopalakrishnan
Physical Review E 88 (4), 042702, 2013
Ligand-induced coupling versus receptor pre-association: cellular automaton simulations of FGF-2 binding
M Gopalakrishnan, K Forsten-Williams, UC Täuber
Journal of theoretical biology 227 (2), 239-251, 2004
Transport of organelles by elastically coupled motor proteins
D Bhat, M Gopalakrishnan
The European Physical Journal E 39 (7), 71, 2016
Self-consistent theory of reversible ligand binding to a spherical cell
S Ghosh, M Gopalakrishnan, K Forsten-Williams
Physical Biology 4 (4), 344, 2008
Gas permeation through a polymer network
B Schmittmann, M Gopalakrishnan, RKP Zia
Journal of Physics: Condensed Matter 17 (20), S1817, 2005
Bond percolation of polymers
M Gopalakrishnan, B Schmittmann, RKP Zia
Journal of Physics A: Mathematical and General 37 (29), L337, 2004
Polymerisation force of a rigid filament bundle: diffusive interaction leads to sublinear force-number scaling
J Valiyakath, M Gopalakrishnan
Scientific reports 8 (1), 1-13, 2018
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