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使用一种新颖的拓扑优化方法设计患者特异性3D打印颅面植入物。

Designing patient-specific 3D printed craniofacial implants using a novel topology optimization method.

作者信息

Sutradhar Alok, Park Jaejong, Carrau Diana, Nguyen Tam H, Miller Michael J, Paulino Glaucio H

机构信息

Department of Plastic Surgery, The Ohio State University, Columbus, OH, 43210, USA.

Department of Mechanical and Aerospace Engineering, The Ohio State University, Columbus, OH, 43210, USA.

出版信息

Med Biol Eng Comput. 2016 Jul;54(7):1123-35. doi: 10.1007/s11517-015-1418-0. Epub 2015 Dec 11.

Abstract

Large craniofacial defects require efficient bone replacements which should not only provide good aesthetics but also possess stable structural function. The proposed work uses a novel multiresolution topology optimization method to achieve the task. Using a compliance minimization objective, patient-specific bone replacement shapes can be designed for different clinical cases that ensure revival of efficient load transfer mechanisms in the mid-face. In this work, four clinical cases are introduced and their respective patient-specific designs are obtained using the proposed method. The optimized designs are then virtually inserted into the defect to visually inspect the viability of the design . Further, once the design is verified by the reconstructive surgeon, prototypes are fabricated using a 3D printer for validation. The robustness of the designs are mechanically tested by subjecting them to a physiological loading condition which mimics the masticatory activity. The full-field strain result through 3D image correlation and the finite element analysis implies that the solution can survive the maximum mastication of 120 lb. Also, the designs have the potential to restore the buttress system and provide the structural integrity. Using the topology optimization framework in designing the bone replacement shapes would deliver surgeons new alternatives for rather complicated mid-face reconstruction.

摘要

大型颅面缺损需要高效的骨替代物,这种替代物不仅要有良好的美观性,还应具备稳定的结构功能。本文提出的工作采用了一种新颖的多分辨率拓扑优化方法来完成这项任务。以柔度最小化为目标,可以针对不同临床病例设计出患者特异性的骨替代物形状,确保面部中部有效载荷传递机制的恢复。在这项工作中,介绍了四个临床病例,并使用所提出的方法获得了各自的患者特异性设计。然后将优化后的设计虚拟植入缺损部位,以直观检查设计的可行性。此外,一旦设计得到重建外科医生的验证,就使用3D打印机制作原型进行验证。通过使设计承受模拟咀嚼活动的生理载荷条件,对设计的稳健性进行力学测试。通过三维图像相关和有限元分析得到的全场应变结果表明,该解决方案能够承受120磅的最大咀嚼力。而且,这些设计有潜力恢复支撑系统并提供结构完整性。利用拓扑优化框架设计骨替代物形状将为外科医生进行相当复杂的面部中部重建提供新的选择。

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