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3.5毫米锁定和非锁定接骨板的力学测试

Mechanical testing of 3.5 mm locking and non-locking bone plates.

作者信息

DeTora M, Kraus K

机构信息

North Carolina State University College of Veterinary Medicine, North Carolina, USA.

出版信息

Vet Comp Orthop Traumatol. 2008;21(4):318-22. doi: 10.3415/vcot-07-04-0034.

Abstract

Locking plate technologies are being developed in order to provide the surgeon with advantages over previous bone plate systems (both locking and non-locking). Locking plate systems possess inherent biological advantages in fracture fixation by preserving the periosteal blood supply, serving as internal fixators. It is important to consider the strength of each orthopaedic implant as an important selection criterion while utilizing the reported advantages of locking plate systems to prevent catastrophic fracture failure. Mechanical testing of orthopaedic implants is a common method used to provide a surgeon with insight on mechanical capabilities, as well as to form a standardized method of plate comparison. The purpose of this study was to demonstrate and to quantify observed differences in the bending strength between the LCP (Limited Contact Plate), LC-DCP, 3.5 mm Broad LC-DCP (Limited Contact Dynamic Compression Plate), and SOP (String of Pearls) orthopaedic bone plates. The study design followed the ASTM standard test method for static bending properties of metallic bone plates, which is designed to measure mechanical properties of bone plates subjected to bending, the most common loading encountered in vivo. Single cycle four point bending was performed on each orthopaedic implant. The area moment of inertia, bending stiffness, bending strength, and bending structural stiffness were calculated for each implant. The results of this study demonstrated significant differences (p<0.001) in bending strength and stiffness between the four orthopaedic implants (3.5 Broad LC-DCP>SOP>LCP=LC-DCP). The 3.5 mm LCP should be expected to provide in vivo strength and stiffness similar to a comparable LC-DCP. The SOP should provide strength and stiffness that is greater than a comparable LC-DCP but less than a 3.5 mm Broad LC-DCP.

摘要

锁定钢板技术正在不断发展,以便为外科医生提供优于以往骨板系统(包括锁定和非锁定)的优势。锁定钢板系统在骨折固定方面具有固有的生物学优势,通过保留骨膜血供,起到内固定器的作用。在利用锁定钢板系统已报道的优势时,将每种骨科植入物的强度作为重要的选择标准,以防止灾难性骨折失败,这一点很重要。骨科植入物的力学测试是一种常用方法,用于让外科医生了解其力学性能,并形成一种标准化的钢板比较方法。本研究的目的是展示并量化LCP(有限接触钢板)、LC-DCP、3.5毫米宽LC-DCP(有限接触动力加压钢板)和SOP(珍珠串)骨科骨板在弯曲强度方面观察到的差异。该研究设计遵循了ASTM金属骨板静态弯曲性能的标准测试方法,该方法旨在测量骨板在弯曲状态下的力学性能,弯曲是体内最常见的载荷情况。对每个骨科植入物进行单循环四点弯曲测试。计算每个植入物的惯性矩、弯曲刚度、弯曲强度和弯曲结构刚度。本研究结果表明,四种骨科植入物(3.5毫米宽LC-DCP>SOP>LCP=LC-DCP)在弯曲强度和刚度方面存在显著差异(p<0.001)。预计3.5毫米LCP在体内提供的强度和刚度与类似的LC-DCP相当。SOP应提供的强度和刚度大于类似的LC-DCP,但小于3.5毫米宽的LC-DCP。

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