Keyphrases
Glottal Jet
100%
Aerodynamics
100%
Vocal Fold
69%
Energy Utilization
50%
Vocal Fold Vibration
35%
Phonation
35%
Clinical Measures
25%
Voice Function
25%
Aeroacoustics
20%
Unilateral Vocal Fold Paralysis
20%
Energy Efficiency
20%
Efficiency Measurement
20%
Volume Flow
20%
Scale Model
15%
Jitter
15%
Physical Model Experiment
15%
Air Stream
15%
Voice Disorders
15%
Aeroacoustic Source
10%
Self-oscillating
10%
Airflow
10%
Glottal Flow
10%
Energy Loss
10%
Energy Measurement
10%
Model-driven Development
10%
Jet Structure
10%
Limited Access
10%
Temporally Resolved
10%
Modeling Data
10%
Novel Measure
10%
Flow-induced Vibration
10%
Vocal
10%
Vocal Tract
10%
Simulation Data
10%
Aeroelasticity
10%
Experiment Development
10%
Computational Fluid Mechanics
10%
Physical Model
10%
Bowing
10%
Acoustics
10%
Computer Simulation Model
10%
Flow Velocity
10%
Digital Particle Image Velocimetry
10%
Flow Asymmetry
10%
Incomplete Understanding
10%
Vocal Fold Bowing
10%
Stiffness Asymmetry
10%
Physical Simulation
10%
Acoustic Efficiency
10%
Sound Field
10%
Spatially Resolved Measurements
10%
Power Transfer
10%
Clinical Significance
10%
Research-clinical
5%
Acoustic Energy
5%
Symmetric Model
5%
Voice Production
5%
Public Health
5%
Aperiodicity
5%
Experiment Modeling
5%
Energy Budget
5%
Aerodynamic Measurement
5%
Lumped Element Model
5%
Acoustic Pressure
5%
Theoretical Modeling
5%
Clinical Practice
5%
Asymmetric Model
5%
Aerodynamic Loss
5%
In Vitro Experiment
5%
Physical Mechanism
5%
Surgeons
5%
Aerodynamic Force
5%
Energy Transfer
5%
Acoustic Measures
5%
Mass Model
5%
Computation Modeling
5%
Engineering
Vortex
10%
Element Model
10%
Fluid Mechanics
10%
Particle Image Velocimetry
10%
Energy Dissipation
10%
Vortex Shedding
10%
Flow-Induced Vibrations
10%
Physical Model
5%
Acoustic Energy
5%
Airstream
5%
Model Experiment
5%