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Mechanobiology of dynamic enzyme systems
Peter J. Butler
College of Engineering
Biomedical Engineering
Huck Institutes of the Life Sciences
Research output
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Contribution to journal
›
Review article
›
peer-review
4
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Scopus citations
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Keyphrases
Endothelial Cells
100%
Enzyme System
100%
Mechanobiology
100%
Chemical Kinetics
50%
Shear Stress
50%
Force Application
50%
Cell Membrane
50%
Rate of Change
50%
Physiological Condition
50%
Rheology
50%
Enzyme Activity
50%
Complex Interplay
50%
Cell Biology
50%
Physiological Changes
50%
System Level
50%
Nonequilibrium Steady State
50%
Spatial Data
50%
Dynamic Properties
50%
Integrin
50%
Pathophysiological Changes
50%
Fluid Shear Stress
50%
Cellular Mechanotransduction
50%
Cytoskeletal Structure
50%
External Force
50%
Cellular Level
50%
External Fluid
50%
Temporal Data
50%
Cell Cytoplasm
50%
Cellular Systems
50%
Crowd-powered System
50%
System Tools
50%
Mechanobiological
50%
Mechanosensation
50%
Non-static
50%
Engineering
Enzymatic Activity
100%
Dynamic Property
100%
Fluid Shear Stress
100%
Rheology
100%
Change Rate
100%
Driven System
100%
Nonequilibrium State
100%
Medicine and Dentistry
Endothelial Cell
100%
Enzymes
100%
Mechanobiology
100%
Cell Membrane
50%
Enzyme Activity
50%
Physiological State
50%
Cytotechnology
50%
Mechanotransduction
50%
Integrin
50%
Mechanosensation
50%
Biochemistry, Genetics and Molecular Biology
Enzyme
100%
Dynamics
100%
Shear Stress
100%
Cell Membrane
50%
Enzyme Activity
50%
Mechanotransduction
50%
Chemical Reaction Kinetics
50%
Flow Kinetics
50%
Mechanosensation
50%
Integrin
50%
Neuroscience
Enzymes
100%
Cell Membrane
50%
Enzyme Activity
50%
Integrin
50%
Mechanotransduction
50%
Chemical Kinetics
50%