Current Preclinical Testing of New Hip Arthroplasty Technologies Does Not Reflect Real-World Loadings: Capturing Patient-Specific and Activity-Related Variation in Hip Contact Forces

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Date
2020-03Type
- Journal Article
Citations
Cited 14 times in
Web of Science
Cited 15 times in
Scopus
ETH Bibliography
yes
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Abstract
Background
Total hip arthroplasty (THA) implants are routinely tested for their tribological performance through regulatory preclinical wear testing (eg, ISO-14242). The standardized loading conditions defined in these tests consist of simplified waveforms, which do not specifically represent in vivo loads in different groups of patients. The aim of this study is to investigate, through musculoskeletal modeling, patient-specific and activity-related variation in hip contact forces (HCFs) in a large cohort of THA patients during common activities of daily living (ADLs).
Methods
A total of 132 THA patients participated in a motion-capture analysis while performing different ADLs, including walk, fast walk, stair ascent, and descent (locomotor); sit to stand, stand to sit, squat, and lunge (nonlocomotor). HCFs were then calculated using the AnyBody Modeling System and qualitatively compared across all activities. The influence of gender on HCFs was analyzed through statistical parametric mapping analysis.
Results
Systematic differences were found in HCF magnitudes and individual components in both locomotor and nonlocomotor ADLs. The qualitative analysis of the ADLs revealed a large range and a large variability in forces experienced at the hip during different activities. Significant differences in the 3-dimensional loading patterns were observed between males and females across most activities.
Conclusion
THA patients present a large variability in the forces experienced at the hip joint during their daily life. The interpatient variation might partially explain the heterogeneity observed in implant survival rates. A more extensive preclinical implant testing standard under clinically relevant loading conditions has been advocated to better predict and avoid clinical wear problems. Show more
Permanent link
https://doi.org/10.3929/ethz-b-000399756Publication status
publishedExternal links
Journal / series
The Journal of ArthroplastyVolume
Pages / Article No.
Publisher
ElsevierSubject
total hip arthroplasty; hip contact force; functional outcomes; activities of daily living; biomechanicsOrganisational unit
03915 - Ferguson, Stephen / Ferguson, Stephen
More
Show all metadata
Citations
Cited 14 times in
Web of Science
Cited 15 times in
Scopus
ETH Bibliography
yes
Altmetrics