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[三维打印填充块设计在开放性楔形高位胫骨截骨术中的生物力学研究]

[Biomechanical study of three-dimensional printed filler block design in open wedge high tibial osteotomy].

作者信息

Zhang Jing, Zhang Jianing, Guo Lei, Chen Shibin, Jin Zhongmin, Chen Zhenxian

机构信息

School of Construction Machinery, Chang'an University, Xi'an 710064, P. R. China.

School of Mechanical Engineering, Southwest Jiaotong University, Chengdu 610031, P. R. China.

出版信息

Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2024 Aug 25;41(4):758-765. doi: 10.7507/1001-5515.202403056.

Abstract

The use of a filling block can improve the initial stability of the fixation plate in the open wedge high tibial osteotomy (OWHTO), and promote bone healing. However, the biomechanical effects of filling block structures and materials on OWHTO remain unclear. OWHTO anatomical filling block model was designed and built. The finite element analysis method was adopted to study the influence of six filling block structure designs and four different materials on the stress of the fixed plate, tibia, screw, and filling block, and the micro-displacement at the wedge gap of the OWHTO fixation system. After the filling block was introduced in the OWHTO, the maximum von Mises stress of the fixation plate was reduced by more than 30%, the maximum von Mises stress of the tibia decreased by more than 15%, and the lateral hinge decreased by 81%. When the filling block was designed to be filled in the posterior position of the wedge gap, the maximum von Mises stress of the fixation system was 97.8 MPa, which was smaller than other filling methods. The minimum micro-displacement of osteotomy space was -2.9 μm, which was larger than that of other filling methods. Compared with titanium alloy and tantalum metal materials, porous hydroxyapatite material could obtain larger micro-displacement in the osteotomy cavity, which is conducive to stimulating bone healing. The results demonstrate that OWHTO with a filling block can better balance the stress distribution of the fixation system, and a better fixation effect can be obtained by using a filling block filled in the posterior position. Porous HA used as the material of the filling block can obtain a better bone healing effect.

摘要

使用填充块可提高开放楔形高位胫骨截骨术(OWHTO)中固定板的初始稳定性,并促进骨愈合。然而,填充块结构和材料对OWHTO的生物力学影响仍不清楚。设计并构建了OWHTO解剖填充块模型。采用有限元分析方法,研究六种填充块结构设计和四种不同材料对固定板、胫骨、螺钉和填充块应力以及OWHTO固定系统楔形间隙处微位移的影响。在OWHTO中引入填充块后,固定板的最大von Mises应力降低了30%以上,胫骨的最大von Mises应力降低了15%以上,外侧铰链降低了81%。当填充块设计填充在楔形间隙的后部位置时,固定系统的最大von Mises应力为97.8 MPa,小于其他填充方法。截骨间隙的最小微位移为-2.9μm,大于其他填充方法。与钛合金和钽金属材料相比,多孔羟基磷灰石材料在截骨腔内可获得更大的微位移,有利于刺激骨愈合。结果表明,带填充块的OWHTO能更好地平衡固定系统的应力分布,采用填充在后部位置的填充块可获得更好的固定效果。用作填充块材料的多孔HA可获得更好的骨愈合效果。

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