Christina Hamlet
Christina Hamlet
Mathematics Department, Bucknell University
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Capillary microextraction on sol–gel dendrimer coatings
A Kabir, C Hamlet, KS Yoo, GR Newkome, A Malik
Journal of Chromatography A 1034 (1-2), 1-11, 2004
Role of body stiffness in undulatory swimming: insights from robotic and computational models
ED Tytell, MC Leftwich, CY Hsu, BE Griffith, AH Cohen, AJ Smits, ...
Physical Review Fluids 1 (7), 073202, 2016
Parts per quadrillion level ultra-trace determination of polar and nonpolar compounds via solvent-free capillary microextraction on surface-bonded sol–gel polytetrahydrofuran …
A Kabir, C Hamlet, A Malik
Journal of Chromatography A 1047 (1), 1-13, 2004
A numerical study of the effects of bell pulsation dynamics and oral arms on the exchange currents generated by the upside-down jellyfish Cassiopea xamachana
C Hamlet, A Santhanakrishnan, LA Miller
Journal of Experimental Biology 214 (11), 1911-1921, 2011
Reconfiguration and the reduction of vortex-induced vibrations in broad leaves
LA Miller, A Santhanakrishnan, S Jones, C Hamlet, K Mertens, L Zhu
Journal of Experimental Biology 215 (15), 2716-2727, 2012
Flow structure and transport characteristics of feeding and exchange currents generated by upside-down Cassiopea jellyfish
A Santhanakrishnan, M Dollinger, CL Hamlet, SP Colin, LA Miller
Journal of Experimental Biology 215 (14), 2369-2381, 2012
The effect of intrinsic muscular nonlinearities on the energetics of locomotion in a computational model of an anguilliform swimmer
C Hamlet, LJ Fauci, ED Tytell
Journal of theoretical biology 385, 119-129, 2015
The role of curvature feedback in the energetics and dynamics of lamprey swimming: A closed-loop model
CL Hamlet, KA Hoffman, ED Tytell, LJ Fauci
PLOS Computational Biology 14 (8), e1006324, 2018
Feeding currents of the upside down jellyfish in the presence of background flow
CL Hamlet, LA Miller
Bulletin of mathematical biology 74, 2547-2569, 2012
Fluid dynamics of ballistic strategies in nematocyst firing
C Hamlet, W Strychalski, L Miller
Fluids 5 (1), 20, 2020
Three-dimensional low Reynolds number flows near biological filtering and protective layers
C Strickland, L Miller, A Santhanakrishnan, C Hamlet, NA Battista, ...
Fluids 2 (4), 62, 2017
The fluid dynamics of feeding in the upside-down jellyfish
C Hamlet, LA Miller, T Rodriguez, A Santhanakrishnan
Natural Locomotion in Fluids and on Surfaces: Swimming, Flying, and Sliding …, 2012
The presence of a substrate strengthens the jet generated by upside-down jellyfish
N Battista, MG Gaddam, CL Hamlet, AP Hoover, LA Miller, ...
Frontiers in Marine Science 9, 847061, 2022
Proprioceptive feedback amplification restores effective locomotion in a neuromechanical model of lampreys with spinal injuries
C Hamlet, L Fauci, JR Morgan, ED Tytell
Proceedings of the National Academy of Sciences 120 (11), e2213302120, 2023
Effects of grouping behavior, pulse timing, and organism size on fluid flow around the upside-down jellyfish, Cassiopea xamachana
C Hamlet, L Miller
Contemporary Mathematics 628, 173, 2014
Mathematical Modeling, Immersed Boundary Simulation, and Experimental Validation of the Fluid Flow around the Upside-Down Jellyfish Cassiopea xamachana
C Hamlet
The University of North Carolina at Chapel Hill, 2011
Mechanosensory feedback in lamprey swimming models and applications in the field of spinal cord regeneration
HR Katz, CL Hamlet
Integrative and Comparative Biology 63 (2), 464-473, 2023
An Integrative, Multi-Scale Computational Model of a Swimming Lamprey Fully Coupled to Its Fluid Environment and Incorporating Proprioceptive Feedback
CL Hamlet, K Hoffman, L Fauci, E Tytell
American Geophysical Union 2016, ME24B-0704, 2016
Threedimensional viscous flow through arrays of cylinders with applications to the endothelial surface layer
LA Miller, A Santhanakrishnan, R Ortiz, A Keng, J Cox, K Leiderman, ...
review Bull of Math Bio, 0
Computational modeling of the effects of mechanosensory feedback on the locomotion of lampreys with spinal injuries
C Hamlet, L Fauci, J Morgan, E Tytell
Bulletin of the American Physical Society, 2023
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