A Novel Approach of Customized Pelvic Implant Design Based on Symmetrical Analysis and 3D Printing.

IF 2.3 4区 工程技术 Q3 ENGINEERING, MANUFACTURING 3D Printing and Additive Manufacturing Pub Date : 2023-10-01 Epub Date: 2023-10-10 DOI:10.1089/3dp.2021.0121
Yuan Chai, Xiao-Bo Chen, Jesse A Estoque, Nick Birbilis, Qinghua Qin, Tomas Ward, Paul N Smith, Rachel W Li
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Abstract

In pelvic trauma patients, the mismatch of complex geometries between the pelvis and fixation implant is a fundamental cause of unstable and displaced pelvic ring disruption, in which secondary intervention is strongly considered. The geometrical matching in the current customized implant design and clinical practice is through the nonfractured hemi-pelvis for the fractured pelvis. This design philosophy overlooks the anatomical difference between the hemipelves, and further, the geometrical asymmetry at local area still remains unknown. This study analyzed the anatomical asymmetry of a patient's 3D pelvic models from 13 patients. The hemipelves of each patient were registered by using an iterative closet algorithm to an optimum position with minimum deviations. The high deviation regions were summarized between the hemipelves in each case, and a color map was drawn on a hemipelvis model that identified the areas that had a high possibility to be symmetrically different. A severe pelvic trauma case was used to comprehend the approach by designing a 3D printed implant. Each fracture was then registered to the mirrored uninjured hemipelvis by using the same algorithm, and customized fixation implants were designed with reference to the fractured model. The customized fixation plates showed that the implants had lower geometrical deviation when attached onto the re-stitched fracture side than onto the mirrored nonfractured bone. These results indicate that the symmetrical analysis of bone anatomy and the deviation color map can assist with implant selection and customized implant design given the geometrical difference between symmetrical bones. The novel approach provides a scientific reference that improves the accuracy and overall standard of 3D printed implants.

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基于对称分析和3D打印的骨盆种植体定制设计新方法
在骨盆创伤患者中,骨盆和固定植入物之间复杂几何形状的不匹配是导致骨盆环破裂不稳定和移位的根本原因,强烈考虑二次干预。目前定制植入物设计和临床实践中的几何匹配是通过非骨折半骨盆来治疗骨折骨盆。这种设计理念忽略了两个异教徒之间的解剖学差异,此外,局部区域的几何不对称性仍然未知。本研究分析了13名患者的三维骨盆模型的解剖不对称性。通过使用迭代壁橱算法将每个患者的半骨盆配准到具有最小偏差的最佳位置。在每种情况下,对半骨盆之间的高偏差区域进行了总结,并在半骨盆模型上绘制了一张彩色图,该图确定了对称差异可能性很高的区域。一个严重的骨盆创伤病例通过设计3D打印植入物来理解该方法。然后使用相同的算法将每个骨折记录到镜像的未受伤的半骨盆上,并参考骨折模型设计定制的固定植入物。定制的固定板显示,当植入物连接到重新缝合的骨折侧时,其几何偏差低于镜像非骨折骨。这些结果表明,考虑到对称骨骼之间的几何差异,骨骼解剖结构的对称分析和偏差颜色图可以帮助植入物的选择和定制植入物设计。该新方法为提高3D打印植入物的准确性和整体标准提供了科学参考。
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来源期刊
3D Printing and Additive Manufacturing
3D Printing and Additive Manufacturing Materials Science-Materials Science (miscellaneous)
CiteScore
6.00
自引率
6.50%
发文量
126
期刊介绍: 3D Printing and Additive Manufacturing is a peer-reviewed journal that provides a forum for world-class research in additive manufacturing and related technologies. The Journal explores emerging challenges and opportunities ranging from new developments of processes and materials, to new simulation and design tools, and informative applications and case studies. Novel applications in new areas, such as medicine, education, bio-printing, food printing, art and architecture, are also encouraged. The Journal addresses the important questions surrounding this powerful and growing field, including issues in policy and law, intellectual property, data standards, safety and liability, environmental impact, social, economic, and humanitarian implications, and emerging business models at the industrial and consumer scales.
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