Keyphrases
Trabecular Bone
100%
Bone Microdamage
100%
Low Cycle Fatigue
100%
Microdamage
75%
High Density
50%
Modulus Reduction
50%
Damage Criteria
50%
MR Model
50%
Strut Fracture
50%
Tissue Level
25%
Mechanical Properties
25%
Finite Element Model
25%
Apparent Modulus
25%
Fatigue Failure
25%
Simulation-based
25%
Underlining
25%
Power Law
25%
Monotonic Compression
25%
Pre-fatigue Damage
25%
Fatigue Simulation
25%
Bone Failure
25%
Effective Strain
25%
Cycles to Failure
25%
Microdamage Accumulation
25%
Microcrack Propagation
25%
Bone Element
25%
Bone Mechanical Properties
25%
Compression Test
25%
Large Specimen
25%
Power-law Nonlinearity
25%
Variable Amplitude Loading
25%
Load Scenarios
25%
Microcrack Initiation
25%
Microcracks
25%
Diffuse Microdamage
25%
Finite Element Algorithm
25%
Constant Amplitude Loading
25%
Rapid Failure
25%
Engineering
Microdamage
100%
Low Cycle Fatigue
100%
Fatigue Failure
33%
Damage Criterion
33%
Finite Element Modeling
16%
Experimental Finding
16%
Single Cycle
16%
Fatigue Behavior
16%
Effective Strain
16%
Finite Element Analysis
16%
Material Science
Low-Cycle Fatigue
100%
Density
50%
Finite Element Method
25%
Finite Element Modeling
25%
Fatigue Behavior
25%
Strength of Materials
25%
Earth and Planetary Sciences
Variable Amplitude Loading
100%
Power Law
100%