Computational simulation of medial versus anteromedial tibial tuberosity transfer for patellar instability

ABSTRACT The study utilizes dynamic simulation of knee function to determine how tibial tuberosity medialization and anteromedialization influence patellar tracking and contact pressures for knees with patellar instability. Dual limb squatting was simulated with six multibody dynamic simulation mode...

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Veröffentlicht in:Journal of orthopaedic research 2018-12, Vol.36 (12), p.3231-3238
Hauptverfasser: Elias, John J., Jones, Kerwyn C., Copa, Andrew J., Cosgarea, Andrew J.
Format: Artikel
Sprache:eng
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Zusammenfassung:ABSTRACT The study utilizes dynamic simulation of knee function to determine how tibial tuberosity medialization and anteromedialization influence patellar tracking and contact pressures for knees with patellar instability. Dual limb squatting was simulated with six multibody dynamic simulation models representing knees being treated for patellar instability. Each knee exhibited lateral patellar maltracking in the pre‐operative condition based on the bisect offset index. The patellar tendon attachment points on the tibia were medialized by 10 mm to represent tibial tuberosity medialization, with an additional 5 mm of anteriorization applied for anteromedialization. The patellofemoral contact pressure distribution was quantified using discrete element analysis. Data were analyzed with repeated measures analysis of variance with post‐hoc tests and linear regressions. Tibial tuberosity medialization and anteromedialization significantly (p 
ISSN:0736-0266
1554-527X
DOI:10.1002/jor.24108