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In vitro stability of open wedge high tibial osteotomy with synthetic bone graft

机译:合成骨移植物在开放楔形高胫骨截骨术中的体外稳定性

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It has been predicted that significant stress will be applied to the plate and lateral cortical hinge of an osteotomy site when early full weight bearing is commenced after an open wedge high tibial osteotomy. We hypothesized that the stress concentration on the plate or at the lateral cortical hinge would be reduced by inserting bone substitutes into the osteotomy gap. Two different types of tibia model were investigated: Group A, fixation with TomoFix with the osteotomy site left as an open space; and Group B, two beta-TCP wedges are inserted into osteotomy site and fixed with TomoFix. Stress at five points was measured using strain gauges. Specimens were mounted onto a testing machine with an FTA (femoro-tibial angle) of 170?. Cyclic load tests and an ultimate load test were then performed. The mean stress on the plate was measured at 15.5 +-1.8 Mpa in Group A. On the other hand, this value in Group B was only 9.52 +- 2.1 Mpa and this was a significant difference (p<0.01). The mean stress on the lateral hinge in Groups A and B was 3.31 +-0.5 and 2.49 +- 0.2, respectively which was also a significant difference (P<0.05). The mean maximum breaking load in Group A was 2500 +- 280 N and in Group B 4270 +- 420 N which was a significant difference (p<0.01). Hence, for OWHTO procedures, the use of beta-TCP wedges and TomoFix is thus likely to improve the initial axial and possibly rotational stability at the osteotomy site in comparison with methods that leave the osteotomy gap open.
机译:据预测,当在开放式楔形高位胫骨截骨术后开始尽早负重时,将对截骨术部位的钢板和外侧皮质铰链施加很大的应力。我们假设,通过将骨替代物插入截骨术间隙中,可以降低钢板或外侧皮质铰链上的应力集中。研究了两种不同类型的胫骨模型:A组,用TomoFix固定,截骨部位留为开放空间;和B组,将两个beta-TCP楔形物插入截骨部位并用TomoFix固定。使用应变仪测量五个点的应力。将标本安装在FTA(胫骨后角)为170°的试验机上。然后进行循环载荷测试和极限载荷测试。在A组中测得的板上平均应力为15.5 + -1.8 Mpa。另一方面,B组中的该值仅为9.52±-2.1 Mpa,这是一个显着差异(p <0.01)。 A组和B组外侧铰链的平均应力分别为3.31 + -0.5和2.49 +-0.2,也有显着差异(P <0.05)。 A组的平均最大断裂载荷为2500±280 N,B组的平均最大断裂载荷为4270±420 N,差异有统计学意义(p <0.01)。因此,对于OWHTO程序,与使截骨术间隙保持开放的方法相比,使用β-TCP楔形物和TomoFix可能会改善截骨术部位的初始轴向和可能的旋转稳定性。

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