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可调式下颌骨骨折固定接骨板的设计与实验评估。

Design and experimental evaluation of adjustable bone plates for mandibular fracture fixation.

机构信息

Department of Mechanical Engineering, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.

出版信息

J Biomech. 2012 Jan 3;45(1):172-8. doi: 10.1016/j.jbiomech.2011.09.010. Epub 2011 Oct 28.

Abstract

Conventional bone plates are commonly used for surgical mandibular fracture fixation. Improper alignment between bone segments, however, can result in malocclusion. Current methods of fixation require a surgeon to visually align segments of bone and affix a metal plate using bone screws, after which little can be done to adjust alignment. A method of adjusting fracture alignment after plate placement, without screw removal, presents an improvement over costly and risky revision surgery. A modified bone plate has been designed with a deformable section to give surgeons the ability to reduce misalignments at the fracture site. The mechanics of deformation for various adjustment mechanisms was explored analytically, numerically, and experimentally to ensure that the adjustable plate is comparable to conventional bone plates. A static force of 358.8 N is required to deform the adjustable bone plate, compared with predicted values of 351 N using numerical simulation and 362 N using a simple beam theory. Dynamic testing was performed to simulate in vivo loading conditions and evaluate load-capacity in both deformed and un-deformed bone plates. Results indicate that bending stiffness of a rectangular bone plate is 709 N/mm, compared with 174 N/mm for an octagonal plate and 176 N/mm for standard plates. Once deformed, the rectangular and octagonal plates had a stiffness of 323 N/mm and 228 N/mm, respectively. Un-deformed and deformed adjustable bone plates have efficacy in bone segment fixation and healing.

摘要

传统的接骨板常用于下颌骨骨折的手术固定。然而,骨段之间的对位不当可能导致咬合不正。目前的固定方法要求外科医生通过肉眼对位骨段,并使用骨螺钉固定金属板,之后几乎无法调整对位。与昂贵且有风险的修正手术相比,一种无需移除螺钉即可在放置接骨板后调整骨折对线的方法是一种改进。已经设计了一种带有可变形部分的改良接骨板,使外科医生能够减少骨折部位的错位。通过分析、数值模拟和实验研究了各种调节机制的变形力学,以确保可调接骨板与传统接骨板相当。与数值模拟预测值 351 N 和简单梁理论预测值 362 N 相比,变形可调接骨板需要 358.8 N 的静态力才能变形。进行了动态测试以模拟体内加载条件,并评估变形和未变形接骨板的承载能力。结果表明,矩形接骨板的弯曲刚度为 709 N/mm,而八角形接骨板为 174 N/mm,标准接骨板为 176 N/mm。一旦变形,矩形和八角形接骨板的刚度分别为 323 N/mm 和 228 N/mm。未变形和变形的可调接骨板在骨段固定和愈合方面均有效。

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