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Puddu 和 Tomofix 钢板固定治疗开放楔形胫骨高位截骨的有限元分析。

Finite element analysis of Puddu and Tomofix plate fixation for open wedge high tibial osteotomy.

机构信息

Medical Implant Technology Group, Universiti Teknologi Malaysia, 81310 Johor Bahru, Johor, Malaysia.

出版信息

Injury. 2012 Jun;43(6):898-902. doi: 10.1016/j.injury.2011.12.006. Epub 2011 Dec 27.

Abstract

The use of open wedge high tibial osteotomy (HTO) to correct varus deformity of the knee is well established. However, the stability of the various implants used in this procedure has not been previously demonstrated. In this study, the two most common types of plates were analysed (1) the Puddu plates that use the dynamic compression plate (DCP) concept, and (2) the Tomofix plate that uses the locking compression plate (LCP) concept. Three dimensional model of the tibia was reconstructed from computed tomography images obtained from the Medical Implant Technology Group datasets. Osteotomy and fixation models were simulated through computational processing. Simulated loading was applied at 60:40 ratios on the medial:lateral aspect during single limb stance. The model was fixed distally in all degrees of freedom. Simulated data generated from the micromotions, displacement and, implant stress were captured. At the prescribed loads, a higher displacement of 3.25 mm was observed for the Puddu plate model (p<0.001). Coincidentally the amount of stresses subjected to this plate, 24.7 MPa, was also significantly lower (p<0.001). There was significant negative correlation (p<0.001) between implant stresses to that of the amount of fracture displacement which signifies a less stable fixation using Puddu plates. In conclusion, this study demonstrates that the Tomofix plate produces superior stability for bony fixation in HTO procedures.

摘要

使用开放式楔形胫骨高位截骨术(HTO)来矫正膝关节内翻畸形已经得到广泛认可。然而,该手术中使用的各种植入物的稳定性尚未得到证实。在这项研究中,分析了两种最常见的钢板(1)使用动力加压钢板(DCP)概念的 Puddu 钢板,以及(2)使用锁定加压钢板(LCP)概念的 Tomofix 钢板。从 Medical Implant Technology Group 数据集获得的计算机断层扫描图像重建胫骨的三维模型。通过计算处理模拟截骨和固定模型。在单腿站立期间,模拟加载以 60:40 的比例施加在内侧:外侧。模型在所有自由度上均固定在远端。捕获模拟数据生成的微运动、位移和植入物的应力。在规定的负载下,Puddu 钢板模型的位移高达 3.25 毫米(p<0.001)。巧合的是,该钢板承受的应力为 24.7 MPa,也显著降低(p<0.001)。植入物的应力与骨折位移的量之间存在显著的负相关(p<0.001),这表明使用 Puddu 钢板进行固定的稳定性较差。总之,这项研究表明,Tomofix 钢板在 HTO 手术中为骨固定提供了更好的稳定性。

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