Skip to main navigation
Skip to search
Skip to main content
University of Birmingham Home
Help & FAQ
Home
Research output
Profiles
Research units
Projects
Activities
Datasets
Equipment
Prizes
Press/Media
Search by expertise, name or affiliation
Mathematical embryology: the fluid mechanics of nodal cilia
David Smith
, Andrew Smith
, John Blake
Mathematics
Research output
:
Contribution to journal
›
Article
27
Citations (Scopus)
Overview
Fingerprint
Fingerprint
Dive into the research topics of 'Mathematical embryology: the fluid mechanics of nodal cilia'. Together they form a unique fingerprint.
Sort by
Weight
Alphabetically
Keyphrases
Fluid Mechanics
100%
Cilia
100%
Embryology
100%
Nodal Cilia
100%
Epithelium
60%
Point Forces
40%
Morphogen
40%
Bidirectional Flow
40%
Cilia Length
40%
Stresslet
40%
Three-dimensional (3D)
20%
Theory Analysis
20%
Role of Water
20%
Chaotic Advection
20%
Stokeslet
20%
Time Dependence
20%
Vertebrates
20%
Advection
20%
Velocity Field
20%
Image Analysis
20%
Accurate Simulation
20%
Slender Body Theory
20%
Embryonic Development
20%
Counterflow
20%
Particle Paths
20%
Flow Reversal
20%
Flow Time
20%
Flow Profile
20%
Cilia Tip
20%
Rotlet
20%
Particle Transport
20%
Developmental Processes
20%
Reverse Flow
20%
Time-dependent Flow
20%
Cilia-driven Flow
20%
Regularized Stokeslets
20%
Nodal Flow
20%
Whirl
20%
Reichert's Membrane
20%
Asymmetric Development
20%
Left-right Symmetry Breaking
20%
Membrane-less
20%
Torque Model
20%
Detour
20%
Drift Motion
20%
Effective Transport
20%
Surface Tilt
20%
Extreme Edge
20%
Membrane Model
20%
Image Singularities
20%
No-slip Condition
20%
Efficient Simulation
20%
Engineering
Fluid Mechanics
100%
Nodes
100%
Advection
40%
Singularities
40%
Directional
40%
Velocity Field
20%
Accurate Simulation
20%
Reverse Flow
20%
Driven Flow
20%
Slender Body Theory
20%
Flow Time
20%
Drift Motion
20%
No Slip Condition
20%
Begin Process
20%