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Contact forces in the tibiofemoral joint from soft tissue tensions: Implications to soft tissue balancing in total knee arthroplasty
Affiliation:1. School of Computer Science, Engineering and Mathematics, Flinders University, Adelaide, SA 5042, Australia;2. Biomedical Engineering, AMME, University of Sydney, Sydney, NSW 2006, Australia;3. North Sydney Orthopaedic and Sports Medicine Centre, The Mater Hospital, NSW, Australia;4. North Shore Knee Clinic, NSW, Australia;5. Peninsula Orthopaedic Research Institute, NSW, Australia;6. Gold Coast Centre for Bone and Joint Surgery, Queensland, Australia;7. 360 Knee Systems Pty Ltd, Suite 3 Building 1, 20 Bridge Street, Pymble, NSW 2073, Australia;8. Department of Biomedical Engineering, University of California, Davis, Sacramento, CA 95817, USA
Abstract:Proper tension of the knee’s soft tissue envelope is important during total knee arthroplasty; incorrect tensioning potentially leads to joint stiffness or instability. The latter remains an important trigger for revision surgery. The use of sensors quantifying the intra-articular loads, allows surgeons to assess the ligament tension at the time of surgery. However, realistic target values are missing. In the framework of this paper, eight non-arthritic cadaveric specimens were tested and the intra-articular loads transferred by the medial and lateral compartment were measured using custom sensor modules. These modules were inserted below the articulating surfaces of the proximal tibia, with the specimens mounted on a test setup that mimics surgical conditions. For both compartments, the highest loads are observed in full extension. While creating knee flexion by lifting the femur and flexing the hip, mean values (standard deviation) of 114 N (71 N) and 63 N (28 N) are observed at 0° flexion for the medial and lateral compartment respectively. Upon flexion, both medial and lateral loads decrease with mean values at 90° flexion of 30 N (22 N) and 6 N (5 N) respectively. The majority of the load is transmitted through the medial compartment. These observations are linked to the deformation of the medial and lateral collaterals, in addition to the anatomy of the passive soft tissues surrounding the knee. In conclusion, these findings provide tangible clinical guidance in assessing the soft tissue loads when dealing with anatomically designed total knee implants.
Keywords:Total knee arthroplasty  Intra-articular loads  Load balancing
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