三维打印手术板用于下颌缺损重建的生物力学行为:有限元分析。

IF 1.5 4区 医学 Q3 SURGERY
Computer Assisted Surgery Pub Date : 2023-12-01 Epub Date: 2023-11-27 DOI:10.1080/24699322.2023.2286181
Chao-Fei Wang, Shuo Liu, Lei-Hao Hu, Yao Yu, Xin Peng, Wen-Bo Zhang
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引用次数: 0

摘要

本研究旨在探讨三维打印手术钢板用于下颌缺损重建的生物力学行为,并与传统手术钢板进行比较,为其临床应用提供实验依据。建立了正常下颌骨的三维模型,并利用游离腓骨和旋髂深动脉皮瓣重建下颌骨体缺损。建立3d打印和常规手术钢板固定重建下颌骨的三维有限元模型。对剩余牙施加垂直咬合力,采用有限元方法研究其位移和Von Mises应力分布。正常下颌骨与重建下颌骨具有相似的生物力学行为。手术钢板的位移分布相似,最大的总变形发生在手术钢板前段的螺钉孔处。然而,手术钢板的Von Mises应力分布存在差异。使用3d打印手术钢板固定重建下颌骨时,最大等效Von Mises应力出现在后节螺钉孔处,而使用常规手术钢板固定重建下颌骨时,最大等效Von Mises应力出现在前节螺钉孔处。在同种游离皮瓣重建的下颌骨模型中,用不同的手术钢板固定,钢板具有相似的生物力学行为。3d打印手术板的生物力学行为与传统手术板相似,表明3d打印手术板用于带血管的自体骨移植重建下颌骨体缺损可以实现安全稳定的固定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biomechanical behavior of the three-dimensionally printed surgical plates for mandibular defect reconstruction: a finite element analysis.

The aim of the study was to investigate the biomechanical behavior of three-dimensionally (3D)-printed surgical plates used for mandibular defect reconstruction, compare them with conventional surgical plates, and provide experimental evidence for their clinical application. Three-dimensional models were created for the normal mandible and for mandibular body defects reconstructed using free fibula and deep circumflex iliac artery flaps. Three-dimensional finite element models of reconstructed mandibles fixed using 3D-printed and conventional surgical plates were established. Vertical occlusal forces were applied to the remaining teeth and the displacement and Von Mises stress distributions were studied using finite element analysis. The normal and reconstructed mandibles had similar biomechanical behaviors. The displacement distributions for the surgical plates were similar, and the maximum total deformation occurred at the screw hole of the anterior segment of the surgical plates. However, there were differences in the Von Mises stress distributions for the surgical plates. In reconstructed mandibles fixed using 3D-printed surgical plates, the maximum equivalent Von Mises stress occurred at the screw hole of the posterior segment, while in those fixed using conventional surgical plates, the maximum equivalent Von Mises stress was at the screw hole of the anterior segment. In the mandible models reconstructed with the same free flap but fixed with different surgical plates, the plates had similar biomechanical behaviors. The biomechanical behavior of 3D-printed surgical plates was similar to conventional surgical plates, suggesting that 3D-printed surgical plates used to reconstruct mandibular body defects with vascularized autogenous bone grafts could lead to secure and stable fixation.

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来源期刊
Computer Assisted Surgery
Computer Assisted Surgery Medicine-Surgery
CiteScore
2.30
自引率
0.00%
发文量
13
审稿时长
10 weeks
期刊介绍: omputer Assisted Surgery aims to improve patient care by advancing the utilization of computers during treatment; to evaluate the benefits and risks associated with the integration of advanced digital technologies into surgical practice; to disseminate clinical and basic research relevant to stereotactic surgery, minimal access surgery, endoscopy, and surgical robotics; to encourage interdisciplinary collaboration between engineers and physicians in developing new concepts and applications; to educate clinicians about the principles and techniques of computer assisted surgery and therapeutics; and to serve the international scientific community as a medium for the transfer of new information relating to theory, research, and practice in biomedical imaging and the surgical specialties. The scope of Computer Assisted Surgery encompasses all fields within surgery, as well as biomedical imaging and instrumentation, and digital technology employed as an adjunct to imaging in diagnosis, therapeutics, and surgery. Topics featured include frameless as well as conventional stereotactic procedures, surgery guided by intraoperative ultrasound or magnetic resonance imaging, image guided focused irradiation, robotic surgery, and any therapeutic interventions performed with the use of digital imaging technology.
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