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An inverse finite-element model of heel-pad indentation
Ahmet Erdemir
, Meredith L. Viveiros
, Jan S. Ulbrecht
, Peter R. Cavanagh
Biobehavioral Health
Research output
:
Contribution to journal
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Article
›
peer-review
150
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Dive into the research topics of 'An inverse finite-element model of heel-pad indentation'. Together they form a unique fingerprint.
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Engineering
Axisymmetric
100%
Peak Pressure
100%
Numerical Approach
100%
Finite Element Modeling
100%
Patient Specific
100%
Root Mean Square Error
100%
Combined System
100%
Prediction Error
100%
Material Level
100%
Initial Thickness
100%
Body Mass
100%
Finite Element Analysis
100%
Keyphrases
Indentation
100%
Finite Element Model
100%
Inverse Finite Element
100%
Heel Pad
100%
Non-diabetic
40%
Pre-diabetes (pre-DM)
40%
Soft Tissue
20%
Body Mass Index
20%
Peak Pressure
20%
Force Control
20%
Material Properties
20%
Ultrasound
20%
Foot Pathology
20%
Patient-specific
20%
Indentation Force
20%
M-mode Ultrasound
20%
Hyperelastic Behavior
20%
Tissue Deformation
20%
Calcaneus
20%
Pressure Prediction
20%
Inverse Finite Element Analysis
20%
Root Mean Square Error
20%
Tissue Thickness
20%
Surface Representation
20%
Prediction Error
20%
Pad Deformation
20%
Subject-specific Model
20%
Nonlinear Elasticity
20%
Nonlinear Material Properties
20%
Footwear Design
20%
Material Level
20%
Therapeutic Footwear
20%
Axisymmetric Model
20%
Experimental-numerical Approach
20%
Material Science
Finite Element Modeling
100%
Materials Property
100%
Finite Element Method
50%
Elastic Behavior
50%
Medicine and Dentistry
Heel
100%
Finite Element Analysis
100%
Body Mass Index
12%
Student T Test
12%
Calcaneus
12%
Foot Disease
12%
Nursing and Health Professions
Foot Disease
50%