Biomechanical Study of a Tricompartmental Unloader Brace for Patellofemoral or Multicompartment Knee Osteoarthritis

Author:

McGibbon Chris A.,Brandon Scott,Bishop Emily L.,Cowper-Smith Chris,Biden Edmund N.

Abstract

Objective: Off-loader knee braces have traditionally focused on redistributing loads away from either the medial or lateral tibiofemoral (TF) compartments. In this article, we study the potential of a novel “tricompartment unloader” (TCU) knee brace intended to simultaneously unload both the patellofemoral (PF) and TF joints during knee flexion. Three different models of the TCU brace are evaluated for their potential to unload the knee joint.Methods: A sagittal plane model of the knee was used to compute PF and TF contact forces, patellar and quadriceps tendon forces, and forces in the anterior and posterior cruciate ligaments during a deep knee bend (DKB) test using motion analysis data from eight participants. Forces were computed for the observed (no brace) and simulated braced conditions. A sensitivity and validity analysis was conducted to determine the valid output range for the model, and Statistical Parameter Mapping was used to quantify the effectual region of the different TCU brace models.Results: PF and TF joint force calculations were valid between ~0 and 100 degrees of flexion. All three simulated brace models significantly (p < 0.001) reduced predicted knee joint loads (by 30–50%) across all structures, at knee flexion angles >~30 degrees during DKB.Conclusions: The TCU brace is predicted to reduce PF and TF knee joint contact loads during weight-bearing activity requiring knee flexion angles between 30 and 100 degrees; this effect may be clinically beneficial for pain reduction or rehabilitation from common knee injuries or joint disorders. Future work is needed to assess the range of possible clinical and prophylactic benefits of the TCU brace.

Publisher

Frontiers Media SA

Subject

Biomedical Engineering,Histology,Bioengineering,Biotechnology

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1. How Does Knee Brace Modelling Influence the Prediction of Medial and Lateral Contact Forces?;Lecture Notes in Computational Vision and Biomechanics;2024

2. Evaluation of an Unloading Concept for Knee Osteoarthritis: A Pilot Study in a Small Patient Group;Journal of Biomechanical Engineering;2023-11-22

3. Design and evaluation of an offloading orthosis for medial knee osteoarthritis;Medical Engineering & Physics;2023-11

4. Functions and Effectiveness of Unloader, Patellofemoral, and Knee Sleeve Orthoses: A Review;Regenerative Engineering and Translational Medicine;2023-07-28

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