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Mechanics and hydraulics of pollen tube growth
Jacques Dumais
Faculty of Engineering and Science
Research output
:
Contribution to journal
›
Review article
›
peer-review
31
Scopus citations
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Keyphrases
Growing Cells
100%
Turgor Pressure
100%
Pollen Tube Growth
100%
Morphogenetic Processes
100%
Hydraulics
100%
Complex Response
50%
Tip Growth
50%
Wall Mechanics
50%
Multiple Interactions
50%
Cellular Processes
50%
Fundamental Interactions
50%
Cargo
50%
Pulsatile
50%
Stress Relaxation
50%
Remote Target
50%
Chemical Stress
50%
Quantitative Model
50%
Cell Control
50%
Tip Velocity
50%
Passive Role
50%
Kingdoms of Life
50%
INIS
growth
100%
mechanics
100%
tubes
100%
hydraulics
100%
pollen
100%
interactions
33%
control
33%
environment
33%
increasing
33%
equations
33%
feedback
33%
reviews
33%
capture
33%
velocity
33%
mines
33%
walls
33%
fundamental interactions
33%
cargo
33%
stress relaxation
33%
chemical stress
33%
Immunology and Microbiology
Turgor Pressure
100%
Pollen Tube Growth
100%
Chemical Stress
50%
Engineering
Hydraulics
100%
Supporting Process
50%
Stress Relaxation
50%
Agricultural and Biological Sciences
Turgor Pressure
100%
Pollen Tube
100%