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Keyphrases
Intervertebral Disc
100%
Cervical Spine
73%
Disk Failure
53%
Numerical Investigation
40%
Post-traumatic
40%
Posterior Ligamentous Complex
40%
Traumatic Instability
40%
Central Cord Syndrome
40%
Ligamentum Flavum Hypertrophy
40%
Relative Effect
40%
Disc Bulging
40%
Disk Complex
40%
Head Impact
40%
Injury Response
40%
Trauma Simulation
40%
Impact Biomechanics
40%
Cervical Spine Injury
40%
Cerebrospinal Fluid
40%
Failure Model
40%
Camera pipeline
40%
Flexion
33%
C2-C3
33%
Flexion-distraction Injury
30%
Osteophyte
30%
Smoothed Particle Hydrodynamics
28%
Hyperextension
26%
Range of Motion
23%
Finite Element Model
22%
Vertebral Osteophytes
20%
Cadaver
20%
Central Nervous System
17%
Posterior Displacement
16%
Anteroposterior
16%
Peak Velocity
16%
Von Mises Stress
13%
Stenotic Lesion
13%
Flexion Moment
13%
Human Surrogate
13%
Vertebral Laminae
13%
Peak Impact Force
13%
Physiological Thresholds
13%
Motor Vehicle Accident
13%
Human Body Model
13%
Maximal Acceleration
13%
Spatial Descriptions
13%
Surgical Fusion
13%
Spinal Cord
12%
Energy Error
12%
Spinal Cord Injury
11%
Traumatic Spinal Cord Injury
11%
Medicine and Dentistry
Finite Element Analysis
61%
Cervical Spine
59%
Intervertebral Disk
57%
Cervical Spine Injury
42%
Ligamentum flavum
40%
Central Cord Syndrome
40%
Osteophyte
40%
Adolescent Idiopathic Scoliosis
40%
Cervical Collar
40%
Pedicle
40%
Bone Maturation
40%
Bone Density
40%
Spine Malformation
23%
Hyperextension
22%
Range of Motion
22%
Scoliosis
20%
Orthopedist
20%
Cadaver
13%
Cancellous Bone
13%
Three-Dimensional Reconstruction
10%
Orthopedics
10%
Prospective Cohort Study
10%
Intervertebral Disk Hernia
8%
Soft Tissue Injury
8%
Clinical Management
6%
Stress Concentration
6%
Stereoradiography
6%
Sternum
6%
Human Subject
6%
X-Ray Computed Tomography
6%
Subluxation
6%
Sports Injury
6%
Accelerometer
6%
Neck
6%
Head Movement
6%
Mouth
6%
Horn
5%
Engineering
Patient Specific
40%
Disruption
40%
Failure Model
40%
Optoelectronics
40%
Hydrodynamics
40%
Fem Model
40%
Pearsons Linear Correlation Coefficient
40%
Impact Biomechanics
40%
Finite Element Modeling
39%
Rupture Disc
26%
Finite Element Analysis
26%
Boundary Condition
20%
Human Body Model
20%
Spatial Description
20%
Energy Error
16%
Biomechanical Performance
13%
Simulation Result
10%
Hydrodynamic Model
10%
Computational Time
10%
Tensile Force
10%