Patient-specific hip geometry has greater effect on THA wear than femoral head size

Abstract In vivo linear penetration in total hip arthroplasty (THA) exhibits similar values for 28 mm and 32 mm femoral head diameter with considerable variations between and within the studies. It indicates factors other than femoral head diameter influence polyethylene wear. This study is intended...

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Published in:Journal of biomechanics Vol. 49; no. 16; pp. 3996 - 4001
Main Authors: Daniel, Matej, Rijavec, Boris, Dolinar, Drago, Pokorný, David, Iglič, Aleš, Kralj-Iglič, Veronika
Format: Journal Article
Language:English
Published: United States Elsevier Ltd 08-12-2016
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Abstract Abstract In vivo linear penetration in total hip arthroplasty (THA) exhibits similar values for 28 mm and 32 mm femoral head diameter with considerable variations between and within the studies. It indicates factors other than femoral head diameter influence polyethylene wear. This study is intended to test the effect of patient׳s individual geometry of musculoskeletal system, acetabular cup orientation, and radius of femoral head on wear. Variation in patient׳s musculoskeletal geometry and acetabular cup placement is evaluated in two groups of patients implanted with 28 mm and 32 mm THA heads. Linear wear rate estimated by mathematical model is 0.165–0.185 mm/year and 0.157–0.205 mm/year for 28 and 32 mm THA heads, respectively. Simulations show little influence femoral head size has on the estimated annual wear rate. Predicted annual linear wear depends mostly on the abduction angle of the acetabular cup and individual geometry of the musculoskeletal system of the hip, with the latter having the greatest affect on variation in linear wear rate.
AbstractList In vivo linear penetration in total hip arthroplasty (THA) exhibits similar values for 28mm and 32mm femoral head diameter with considerable variations between and within the studies. It indicates factors other than femoral head diameter influence polyethylene wear. This study is intended to test the effect of patient's individual geometry of musculoskeletal system, acetabular cup orientation, and radius of femoral head on wear. Variation in patient's musculoskeletal geometry and acetabular cup placement is evaluated in two groups of patients implanted with 28mm and 32mm THA heads. Linear wear rate estimated by mathematical model is 0.165-0.185mm/year and 0.157-0.205mm/year for 28 and 32mm THA heads, respectively. Simulations show little influence femoral head size has on the estimated annual wear rate. Predicted annual linear wear depends mostly on the abduction angle of the acetabular cup and individual geometry of the musculoskeletal system of the hip, with the latter having the greatest affect on variation in linear wear rate.
In vivo linear penetration in total hip arthroplasty (THA) exhibits similar values for 28mm and 32mm femoral head diameter with considerable variations between and within the studies. It indicates factors other than femoral head diameter influence polyethylene wear. This study is intended to test the effect of patient׳s individual geometry of musculoskeletal system, acetabular cup orientation, and radius of femoral head on wear. Variation in patient׳s musculoskeletal geometry and acetabular cup placement is evaluated in two groups of patients implanted with 28mm and 32mm THA heads. Linear wear rate estimated by mathematical model is 0.165-0.185mm/year and 0.157-0.205mm/year for 28 and 32mm THA heads, respectively. Simulations show little influence femoral head size has on the estimated annual wear rate. Predicted annual linear wear depends mostly on the abduction angle of the acetabular cup and individual geometry of the musculoskeletal system of the hip, with the latter having the greatest affect on variation in linear wear rate.
Abstract In vivo linear penetration in total hip arthroplasty (THA) exhibits similar values for 28 mm and 32 mm femoral head diameter with considerable variations between and within the studies. It indicates factors other than femoral head diameter influence polyethylene wear. This study is intended to test the effect of patient׳s individual geometry of musculoskeletal system, acetabular cup orientation, and radius of femoral head on wear. Variation in patient׳s musculoskeletal geometry and acetabular cup placement is evaluated in two groups of patients implanted with 28 mm and 32 mm THA heads. Linear wear rate estimated by mathematical model is 0.165–0.185 mm/year and 0.157–0.205 mm/year for 28 and 32 mm THA heads, respectively. Simulations show little influence femoral head size has on the estimated annual wear rate. Predicted annual linear wear depends mostly on the abduction angle of the acetabular cup and individual geometry of the musculoskeletal system of the hip, with the latter having the greatest affect on variation in linear wear rate.
Author Kralj-Iglič, Veronika
Daniel, Matej
Dolinar, Drago
Iglič, Aleš
Rijavec, Boris
Pokorný, David
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  fullname: Iglič, Aleš
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Keywords Design
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Linear penetration
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Snippet Abstract In vivo linear penetration in total hip arthroplasty (THA) exhibits similar values for 28 mm and 32 mm femoral head diameter with considerable...
In vivo linear penetration in total hip arthroplasty (THA) exhibits similar values for 28mm and 32mm femoral head diameter with considerable variations between...
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SubjectTerms Acetabulum - anatomy & histology
Acetabulum - physiology
Aged
Angles (geometry)
Arthroplasty, Replacement, Hip
Biomedical materials
Contact pressure
Design
Female
Femur Head - anatomy & histology
Femur Head - physiology
Geometry
Hip joint
Hip Prosthesis
Humans
Hypotheses
In vivo methods and tests
Joint surgery
Kinematics
Linear penetration
Male
Mathematical models
Middle Aged
Muscle, Skeletal - anatomy & histology
Muscle, Skeletal - physiology
Musculoskeletal system
Patient-Specific Modeling
Patients
Physical Medicine and Rehabilitation
Polyethylene
Purchasing groups
Studies
Surgical implants
UHMWPE
Wear
Wear rate
Title Patient-specific hip geometry has greater effect on THA wear than femoral head size
URI https://www.clinicalkey.es/playcontent/1-s2.0-S0021929016311307
https://dx.doi.org/10.1016/j.jbiomech.2016.10.030
https://www.ncbi.nlm.nih.gov/pubmed/27842781
https://www.proquest.com/docview/1852979615
https://search.proquest.com/docview/1839738874
https://search.proquest.com/docview/1859482101
https://search.proquest.com/docview/1880019936
Volume 49
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