Stress Effect in the Knee Joint Based on the Fibular Osteotomy Level and Varus Deformity: A Finite Element Analysis Study

Author:

Kang Yeokyung1,Kim Jungsung1,Sim Jae Ang2,Moon Myeong3,Park Jong-Chul4ORCID,Cho Sung Ha2,Lee Byung Hoon2

Affiliation:

1. Central Research & Development Center, Corentec Company Co., Ltd., 33-2, Banpo-daero 20-gil, Seocho-gu, Seoul 06649, Republic of Korea

2. Department of Orthopedic Surgery, Gachon University College of Medicine, Namdong-gu, Incheon 21565, Republic of Korea

3. Medical School, Gachon University College of Medicine, Namdong-gu, Incheon 21565, Republic of Korea

4. Cellbiocontrol Laboratory, Department of Medical Engineering, Yonsei University College of Medicine, Seoul 03722, Republic of Korea

Abstract

Proximal fibular osteotomy (PFO) was found to relieve pain and improve knee function in patients with medial compartment knee osteoarthritis (OA). Therapy redistributes the load applied from the inside to the outside and alleviates the load applied on the inside through fibula osteotomy. Therefore, the clinical effect of fibular osteotomy using the finite element (FE) method was evaluated to calculate the exact change in stress inside a knee joint with varus deformity. Using CT and MRI images of a patient’s lower extremities, 3D models of the bone, cartilage, meniscus, and ligaments were constructed. The varus angle, representing the inward angulation of the knee, was increased by applying a force ratio in the medial and lateral directions. The results showed that performing proximal fibular osteotomy led to a significant reduction in stress in the medial direction of the meniscus and cartilage. The stress reduction in the lateral direction was relatively minor. In conclusion, the study demonstrated that proximal fibular osteotomy effectively relieves stress and redistributes the load in the knee joints of patients with medial compartment knee osteoarthritis. The findings emphasize the importance of considering force distribution and the position of fibular osteotomy to achieve optimal clinical outcomes.

Funder

National Research Foundation of Korea

Gachon University Research Fund

Publisher

MDPI AG

Subject

Bioengineering

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