4.6 Article

The effect of plate design, bridging span, and fracture healing on the performance of high tibial osteotomy plates

期刊

BONE & JOINT RESEARCH
卷 7, 期 12, 页码 639-649

出版社

BRITISH EDITORIAL SOC BONE JOINT SURGERY
DOI: 10.1302/2046-3758.712.BJR-2018-0035.R1

关键词

Osteotomy; Plate; Stress

资金

  1. Arthritis Research UK [PO C055]
  2. Innovate UK [102930]
  3. EPSRC [EP/N00941X/1] Funding Source: UKRI
  4. Innovate UK [102930] Funding Source: UKRI
  5. MRC [MC_PC_14122] Funding Source: UKRI

向作者/读者索取更多资源

Objectives Opening wedge high tibial osteotomy (HTO) is an established surgical procedure for the treatment of early-stage knee arthritis. Other than infection, the majority of complications are related to mechanical factors - in particular, stimulation of healing at the osteotomy site. This study used finite element (FE) analysis to investigate the effect of plate design and bridging span on interfragmentary movement (IFM) and the influence of fracture healing on plate stress and potential failure. Materials and Methods A 10 degrees opening wedge HTO was created in a composite tibia. Imaging and strain gauge data were used to create and validate FE models. Models of an intact tibia and a tibia implanted with a custom HTO plate using two different bridging spans were validated against experimental data. Physiological muscle forces and different stages of osteotomy gap healing simulating up to six weeks postoperatively were then incorporated. Predictions of plate stress and IFM for the custom plate were compared against predictions for an industry standard plate (TomoFix). Results For both plate types, long spans increased IFM but did not substantially alter peak plate stress. The custom plate increased axial and shear IFM values by up to 24% and 47%, respectively, compared with the TomoFix. In all cases, a callus stiffness of 528 MPa was required to reduce plate stress below the fatigue strength of titanium alloy. Conclusion We demonstrate that larger bridging spans in opening wedge HTO increase IFM without substantially increasing plate stress. The results indicate, however, that callus healing is required to prevent fatigue failure.

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