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非均匀厚度对作为可生物降解骨植入物的锁定加压钢板的效果。

Effectiveness of non-uniform thickness on a locking compression plate used as a biodegradable bone implant plate.

机构信息

Department of Mechanical Engineering, 29678Maulana Azad National Institute of Technology, Bhopal, India.

出版信息

J Biomater Appl. 2022 Sep;37(3):429-446. doi: 10.1177/08853282221094458. Epub 2022 Apr 26.

DOI:10.1177/08853282221094458
PMID:35473434
Abstract

Conventional locking compression plate (LCP) made of non-biodegradable materials are well-known bone implants for internal fracture fixation because of their proven experimental success. LCP, however, is mechanically underpowered when made up of biodegradable materials (even with Mg-alloy). The biodegradable implant plate should not only exhibit adequate mechanical performance during implantation but also perform well after fracture, at least until complete healing of the fractured bone. With the aim of achieving enhanced mechanical performance, the design of the LCP has been modified to the design of Biodegradable Locking Compression Plate (BLCP) by adding a suitable thickness in the middle (only 4.6% of the total volume of the LCP), which may help retain some additional strength during implantation and after degradation. Both BLCP and LCP have been comparatively analyzed via FEM with the aid of axial compression and four-point bending tests. BLCP has a better mechanical capability of withstanding loads in its degraded form than in its non-degradable form. Furthermore, BLCP is up to 15.83% mechanically better in the non-degraded form as compared to LCP, which again becomes up to 100% more mechanically adequate in the degraded forms of BLCP than in LCP. BLCP is found safe for degradation up to 2 mm or 6 months with an estimated degradation rate of 4 mm/year, which may allow it to support fractured bone for at least the standard healing time. BLCP can be considered as a superior biodegradable bone implant plate after experimental assurance with the physiological environment and may replace LCP.

摘要

传统的不可生物降解材料制成的锁定加压接骨板(LCP)因其实验成功而被广泛应用于骨折内固定的骨植入物。然而,当由可生物降解材料(即使是镁合金)制成时,LCP 的机械性能不足。可生物降解的植入物板不仅在植入时应具有足够的机械性能,而且在骨折后也应表现良好,至少在骨折的骨头完全愈合之前。为了达到增强机械性能的目的,对 LCP 的设计进行了修改,在中间增加了适当的厚度(仅占 LCP 总体积的 4.6%),这有助于在植入和降解后保留一些额外的强度。通过轴向压缩和四点弯曲试验的有限元分析(FEM)对 BLCP 和 LCP 进行了比较分析。BLCP 在降解形式下比不可降解形式具有更好的承受载荷的机械能力。此外,与 LCP 相比,BLCP 在未降解形式下的机械性能要好 15.83%,而在降解形式下,BLCP 的机械性能要比 LCP 好 100%。BLCP 被发现可安全降解至 2mm 或 6 个月,估计降解率为 4mm/年,这可能使其至少在标准愈合时间内能够支撑骨折的骨头。BLCP 在生理环境中经过实验保证后可被视为一种优越的可生物降解骨植入物板,并可能替代 LCP。

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