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An AFM Dynamic Contact Model with Finite Thickness Correction to Study Micro-Rheology of Biological Cells
V. Managuli
, S. Roy
Department of Mechanical & Industrial Engineering Manipal Institute of Technology, Manipal
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peer-review
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INIS
thickness
100%
dynamics
100%
corrections
100%
afm
100%
rheology
100%
cancer
33%
stem cells
33%
errors
33%
comparative evaluations
16%
depth
16%
humans
16%
geometry
16%
power
16%
atomic force microscopy
16%
substrates
16%
bone marrow
16%
damping
16%
drag
16%
hydrodynamics
16%
frequency dependence
16%
Physics
Model
100%
Correction
100%
Rheology
100%
Rheological Property
25%
Frequencies
16%
Substrates
8%
Statics
8%
Estimates
8%
Yaw
8%
Atomic Force Microscopy
8%
Bandwidth
8%
Drag
8%
Hydrodynamics
8%
Bone Marrow
8%
Material Science
Cell
100%
Rheology
100%
Hydrodynamics
16%
Materials Property
8%
Bone
8%
Engineering
Thickness Correction
100%
Contact Model
100%
Dependent Material
8%
Frequency Bandwidth
8%