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使用创新型骨移植替代物进行髋臼翻修重建的初始稳定性:对尸体骨盆的比较生物力学研究

Primary Stability of Revision Acetabular Reconstructions Using an Innovative Bone Graft Substitute: A Comparative Biomechanical Study on Cadaveric Pelvises.

作者信息

Morosato Federico, Traina Francesco, Schierjott Ronja A, Hettich Georg, Grupp Thomas M, Cristofolini Luca

机构信息

Department of Industrial Engineering, Alma Mater Studiorum, Università di Bologna, 40131 Bologna, Italy.

Chirurgia Protesica, IRCCS Rizzoli Orthopaedic Institute, 40136 Bologna, Italy.

出版信息

Materials (Basel). 2020 Sep 27;13(19):4312. doi: 10.3390/ma13194312.

Abstract

Hip implant failure is mainly due to aseptic loosening of the cotyle and is typically accompanied by defects in the acetabular region. Revision surgery aims to repair such defects before implantation by means of reconstruction materials, whose morselized bone graft represents the gold standard. Due to the limited availability of bone tissue, synthetic substitutes are also used. The aim of this study was to evaluate if a synthetic fully resorbable tri-calcium phosphate-based substitute can provide adequate mechanical stability when employed to restore severe, contained defects, in comparison with morselized bone graft. Five cadaveric pelvises were adopted, one side was reconstructed with morselized bone graft and the other with the synthetic substitute, consisting of dense calcium phosphate granules within a collagen matrix. During the biomechanical test, cyclic load packages of increasing magnitude were applied to each specimen until failure. Bone/implant motions were measured through Digital Image Correlation and were expressed in terms of permanent and inducible translations and rotations. The reconstruction types exhibited a similar behavior, consisting of an initial settling trend followed by failure as bone fracture (i.e., no failure of the reconstruction material). When 2.2 Body Weight was applied, the permanent translations were not significantly different between the two reconstructions ( = 0.06-1.0) and were below 1.0 mm. Similarly, the inducible translations did not differ significantly ( = 0.06-1.0) and were below 0.160 mm. Rotations presented the same order of magnitude but were qualitatively different. Overall, the synthetic substitute provided adequate mechanical stability in comparison with morselized bone graft, thus representing a reliable alternative to treat severe, contained acetabular defects.

摘要

髋关节植入物失败主要是由于髋臼无菌性松动,通常伴有髋臼区域的缺损。翻修手术旨在通过重建材料在植入前修复此类缺损,其中碎骨移植是金标准。由于骨组织供应有限,也使用合成替代品。本研究的目的是评估与碎骨移植相比,一种基于合成的完全可吸收的磷酸三钙替代品在用于修复严重的、局限性缺损时是否能提供足够的机械稳定性。采用了五个尸体骨盆,一侧用碎骨移植重建,另一侧用合成替代品重建,该替代品由胶原蛋白基质中的致密磷酸钙颗粒组成。在生物力学测试中,对每个标本施加逐渐增加幅度的循环载荷包直至失效。通过数字图像相关测量骨/植入物运动,并以永久和诱导的平移和旋转表示。两种重建类型表现出相似的行为,包括初始沉降趋势,随后因骨折(即重建材料未失效)而失效。当施加2.2倍体重时,两种重建之间的永久平移无显著差异(P = 0.06 - 1.0),且均低于1.0毫米。同样,诱导平移也无显著差异(P = 0.06 - 1.0),且低于0.160毫米。旋转呈现相同的量级,但在性质上有所不同。总体而言,与碎骨移植相比,合成替代品提供了足够的机械稳定性,因此是治疗严重的、局限性髋臼缺损的可靠替代方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c93/7579522/27d905b37551/materials-13-04312-g001.jpg

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