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Keyphrases
Nitric Oxide
100%
Ca2+
100%
Microvessels
100%
Shear Response
100%
Recapitulation
100%
Endothelial Cells
25%
Microfluidic Technology
25%
High-resolution
12%
Fluorescence Imaging
12%
Three-dimensional (3D)
12%
Shear Stress
12%
Biological Applications
12%
Network Structure
12%
In Vitro Study
12%
Venules
12%
Proliferative Response
12%
Knowledge Gaps
12%
Microfluidics
12%
Intracellular Ca2+
12%
Human Umbilical Vein Endothelial Cells (HUVECs)
12%
Physiologic Range
12%
Inner Surface
12%
Imaging Capability
12%
Nitric Oxide Production
12%
Cellular Level
12%
Shear Flow
12%
Existing Knowledge
12%
Morphological Response
12%
Real-time Imaging
12%
Endothelial Monolayer
12%
Biological Characteristics
12%
Dimension Structure
12%
In Vivo Validation
12%
Numerical Flow Simulation
12%
Micro-manufacturing
12%
Continuous Perfusion
12%
Microfluidic Model
12%
Flow Conditions
12%
Engineering
Microfluidic Technology
100%
High Resolution
50%
Bioengineering
50%
Induced Change
50%
Flow Condition
50%
Flow Model
50%
Constrains
50%
Microchannel
50%
Shear Flow
50%
Fluorescence Imaging
50%
Monolayers
50%
Cadherin
50%
Proliferative Response
50%
Immunology and Microbiology
In Vitro
100%
Endothelial Cells
66%
Agonist
33%
Perfusion
33%
Venule
33%
Umbilical Vein Endothelial Cell
33%
Morphology
33%
Cell Level
33%
Shear Stress
33%
VE-cadherin
33%
Staining
33%
Shear Flow
33%
Medicine and Dentistry
In Vitro
100%
Calcium Ion
100%
Nitric Oxide
100%
Microvessel
100%
Endothelial Cell
22%
Morphology
11%
Human Umbilical Vein Endothelial Cell
11%
Venule
11%
Vascular Endothelial Cadherin
11%
Knowledge Gap
11%
Material Science
Nitric Oxide
100%
Monolayers
50%
Morphology
50%
Shear Flow
50%
Cadherin
50%