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Fractal properties of macrophage membrane studied by AFM
A. Bitler, R. Dover, Y. Shai
Weizmann Institute of Science
Research output
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Contribution to journal
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Article
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peer-review
20
Scopus citations
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Keyphrases
Fractal Properties
100%
Atomic Force Microscope
100%
Macrophage Membrane
100%
Cell Membrane
75%
Fractal Dimension
75%
Morphological Changes
50%
Microscope Image
50%
Cell Proliferation
25%
Track Changes
25%
Taxol
25%
Macrophages
25%
Colchicine
25%
Nanomechanics
25%
Peak Force
25%
RAW264.7 Macrophages
25%
Cell Damage
25%
Glutaraldehyde
25%
Microtubule-stabilizing Agents
25%
Microtubule Polymerization
25%
Neuroscience
Macrophage
100%
Cell Membrane
100%
Microtubule
33%
Paclitaxel
33%
Cell Proliferation
33%
Microtubule Assembly
33%
Colchicine
33%
Cell Damage
33%
Engineering
Atomic Force Microscope
100%
Macrophage
100%
Fractal Dimension
75%
Model System
25%
Polymerization
25%
Nanomechanics
25%
Material Science
Cell Membrane
100%
Macrophage
100%
Polymerization
33%
Cell Proliferation
33%
Nanomechanics
33%
Chemical Engineering
Polymerization
100%
Nanomechanics
100%