Charles Eggleton
Charles Eggleton
Professor of Mechanical Engineering, UMBC
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Cited by
Cited by
Large deformation of red blood cell ghosts in a simple shear flow
CD Eggleton, AS Popel
Physics of fluids 10 (8), 1834-1845, 1998
A 3-D computational model predicts that cell deformation affects selectin-mediated leukocyte rolling
S Jadhav, CD Eggleton, K Konstantopoulos
Biophysical journal 88 (1), 96-104, 2005
Tip streaming from a drop in the presence of surfactants
CD Eggleton, TM Tsai, KJ Stebe
Physical review letters 87 (4), 048302, 2001
Insoluble surfactants on a drop in an extensional flow: a generalization of the stagnated surface limit to deforming interfaces
CD Eggleton, YP Pawar, KJ Stebe
Journal of Fluid Mechanics 385, 79-99, 1999
Evaluating the mechanical behavior of arterial tissue using digital image correlation
D Zhang, CD Eggleton, DD Arola
Experimental mechanics 42, 409-416, 2002
An adsorption–desorption-controlled surfactant on a deforming droplet
CD Eggleton, KJ Stebe
Journal of colloid and interface science 208 (1), 68-80, 1998
Cell deformation cytometry using diode-bar optical stretchers
I Sraj, CD Eggleton, R Jimenez, E Hoover, J Squier, J Chichester, ...
Journal of biomedical optics 15 (4), 047010-047010-7, 2010
Theoretical investigation of the role of choriocapillaris blood flow in treatment of subfoveal choroidal neovascularization associated with age-related macular degeneration
RW Flower, C Von Kerczek, L Zhu, A Ernest, C Eggleton, LDT Topoleski
American journal of ophthalmology 132 (1), 85-93, 2001
Calculations of intracapillary oxygen tension distributions in muscle
CD Eggleton, A Vadapalli, TK Roy, AS Popel
Mathematical biosciences 167 (2), 123-143, 2000
Roles of cell and microvillus deformation and receptor-ligand binding kinetics in cell rolling
P Pawar, S Jadhav, CD Eggleton, K Konstantopoulos
American Journal of Physiology-Heart and Circulatory Physiology 295 (4 …, 2008
Viscoelasticity as a biomarker for high-throughput flow cytometry
T Sawetzki, CD Eggleton, SA Desai, DWM Marr
Biophysical journal 105 (10), 2281-2288, 2013
Dynamic ray tracing for modeling optical cell manipulation
I Sraj, AC Szatmary, DWM Marr, CD Eggleton
Optics Express 18 (16), 16702-16714, 2010
Fluid shear contributions to bacteria cell detachment initiated by a monoclonal antibody
L Mascari, P Ymele‐Leki, CD Eggleton, P Speziale, JM Ross
Biotechnology and bioengineering 83 (1), 65-74, 2003
Using computational fluid dynamics software to estimate circulation time distributions in bioreactors
KM Davidson, S Sushil, CD Eggleton, MR Marten
Biotechnology progress 19 (5), 1480-1486, 2003
Measuring cell mechanics by optical alignment compression cytometry
KB Roth, CD Eggleton, KB Neeves, DWM Marr
Lab on a Chip 13 (8), 1571-1577, 2013
Mathematical modeling of cell adhesion in shear flow: application to targeted drug delivery in inflammation and cancer metastasis
S Jadhav, CD Eggleton, K Konstantopoulos
Current pharmaceutical design 13 (15), 1511-1526, 2007
Predictions of capillary oxygen transport in the presence of fluorocarbon additives
CD Eggleton, TK Roy, AS Popel
American Journal of Physiology-Heart and Circulatory Physiology 275 (6 …, 1998
Single-cell isolation using a DVD optical pickup
A Kasukurti, M Potcoava, SA Desai, C Eggleton, DWM Marr
Optics express 19 (11), 10377-10386, 2011
Shear modulation of intercellular contact area between two deformable cells colliding under flow
S Jadhav, KY Chan, K Konstantopoulos, CD Eggleton
Journal of biomechanics 40 (13), 2891-2897, 2007
Multi-scale simulation of L-selectin–PSGL-1-dependent homotypic leukocyte binding and rupture
VK Gupta, IA Sraj, K Konstantopoulos, CD Eggleton
Biomechanics and modeling in mechanobiology 9, 613-627, 2010
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