Effects of Bone Deformation on Patient-Specific Finite Element Predictions of Hip Chondrolabral Mechanics
Creators
- 1. University of Utah
Description
This repository contains a set of finite element models used to evaluate how different bone material representations influence patient-specific finite element predictions of hip chondrolabral mechanics during physiological activities. Subject-specific models with rigid, homogeneous deformable, and CT-derived heterogeneous bone properties were compared to determine their effects on cartilage and labral contact mechanics, including contact pressure, strain, and contact area. For a detailed description of participant selection, data collection, data processing methods, finite element model creation, and study findings, please refer to the associated publication: https://doi.org/10.1016/j.jmbbm.2026.107445.
Files
ANDERSON_readme20260513.txt
Files
(1.5 GB)
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Additional details
Identifiers
Related works
- Continues
- Journal article: 10.1002/jor.24509 (DOI)
- Dataset: 10.7278/S5d-btv7-ztpw (DOI)
- Is supplement to
- Journal article: 10.1016/j.jmbbm.2026.107445 (DOI)
- Is version of
- Dataset: https://repo.febio.org/permalink/project/138 (Other)
Funding
- National Institutes of Health
- R01-AR077636
- National Institutes of Health
- R56-AR074416
- National Institutes of Health
- R21-AR063844
- National Institutes of Health
- F32-AR067075
- National Institutes of Health
- F32-AR078019
- National Institutes of Health
- S10-RR026565
- National Institutes of Health
- R01-GM083925
- University of Utah Health Care
- L.S. Peery Discovery Program in Musculoskeletal Restoration
Dates
- Collected
-
2014/2016
Additional information
- Contact Email
- andrew.anderson@hsc.utah.edu