Finite element analysis of femoral component sagittal alignment in mobile-bearing total knee arthroplasty

Author:

Koh Yong-Gon1,Lee Jin-Ah2,Lee Hwa-Yong2,Suh Dong-Suk1,Park Joon-Hee3,Kang Kyoung-Tak2

Affiliation:

1. , , , , Republic of Korea

2. , Yonsei University, , Republic of Korea

3. , , Hallym University College of Medicine, , Republic of Korea

Abstract

BACKGROUND: Recently, there has been an increasing interest in mobile-bearing total knee arthroplasty (TKA). However, changes in biomechanics for femoral component alignment in mobile-bearing TKA have not been explored in depth. OBJECTIVE: This study aims to evaluate the biomechanical effect of sagittal alignment of the femoral component in mobile-bearing TKA. METHODS: We developed femoral sagittal alignment models with −3°, 0°, 3°, 5°, and 7° flexion. We also examine the kinematics of the tibiofemoral (TF) joint, contact point on the TF joint, contact stress on the patellofemoral (PF) joint, collateral ligament force, and quadriceps force using a validated computational model under a deep-knee-bend condition. RESULTS: Posterior kinematics of the TF joint increases as the femoral component flexes. The contact stress on the PF joint, collateral ligament force, and the quadriceps force decreases as the femoral component flexes. CONCLUSIONS: Our results show that a slight, approximately 0°∼3°, flexion of the implantation could be an effective substitute technique. However, excessive flexion should be avoided because of the potential loosening of the TF joint.

Publisher

IOS Press

Subject

Biomedical Engineering,Biomaterials,General Medicine

Reference62 articles.

1. Polyethylene wear in meniscal knee replacement. A one to nine-year retrieval analysis of the Oxford knee;Argenson;J Bone Joint Surg Br,1992

2. The New Jersey low-contact-stress knee replacement system: Biomechanical rationale and review of the first 123 cemented cases;Buechel;Arch Orthop Trauma Surg,1986

3. New Jersey low contact stress knee replacement system. Ten-year evaluation of meniscal bearings;Buechel;Orthop Clin North Am,1989

4. In vivo kinematics of mobile-bearing knee arthroplasty in deep knee bending motion;Watanabe;J Orthop Res,2004

5. Dynamic in-vivo tibio-femoral and bearing motions in mobile bearing knee arthroplasty;Fantozzi;Knee Surg Sports Traumatol Arthrosc,2004

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