粉碎性骨折术前规划3D打印解剖模型的技术改进。

IF 3.2 Q1 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING
Naomi C Paxton, Brandon G Wilkinson, Daniel Fitzpatrick, Erin C Owen, Simon Luposchainsky, Paul D Dalton
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引用次数: 0

摘要

使用3D打印解剖模型进行粉碎性骨折修复的术前规划,使外科医生能够在手术前可视化和模拟骨折复位过程。然而,由于某些骨折的复杂性,特别是在保留骨碎片的精细细节,保持移位碎片的定位以及多块骨的准确定位方面,这种模型的制备可能具有挑战性。本研究描述了为粉碎性骨折术前计划准备3D打印解剖模型的几个关键技术考虑因素。开发了一种优化的分割方案,可以保留骨碎片的细节,从而更准确地表示骨折。此外,手工将支撑添加到数字模型中,以在制造后保持移位碎片的定位,减少打印过程中错误或碎片定位错误的可能性。磁铁也被用于分离和可视化多块骨头的精确定位,使其更容易可视化骨折成分,否则被解剖结构所掩盖。最后,调整非目标结构的填充,以最大限度地减少打印时间和材料浪费。这些技术优化提高了为粉碎性骨折术前计划准备3D打印解剖模型的准确性和效率,为外科医生提前更好地计划手术治疗提供了机会,减少了错误的可能性,目的是改善手术效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Technical improvements in preparing 3D printed anatomical models for comminuted fracture preoperative planning.

Technical improvements in preparing 3D printed anatomical models for comminuted fracture preoperative planning.

Technical improvements in preparing 3D printed anatomical models for comminuted fracture preoperative planning.

Technical improvements in preparing 3D printed anatomical models for comminuted fracture preoperative planning.

Preoperative planning of comminuted fracture repair using 3D printed anatomical models is enabling surgeons to visualize and simulate the fracture reduction processes before surgery. However, the preparation of such models can be challenging due to the complexity of certain fractures, particularly in preserving fine detail in bone fragments, maintaining the positioning of displaced fragments, and accurate positioning of multiple bones. This study described several key technical considerations for preparing 3D printed anatomical models for comminuted fracture preoperative planning. An optimized segmentation protocol was developed that preserves fine detail in bone fragments, resulting in a more accurate representation of the fracture. Additionally, struts were manually added to the digital model to maintain the positioning of displaced fragments after fabrication, reducing the likelihood of errors during printing or misrepresentation of fragment positioning. Magnets were also used to enable separation and visualization of accurate positioning of multiple bones, making it easier to visualize fracture components otherwise obscured by the anatomy. Finally, the infill for non-target structures was adjusted to minimize print time and material wastage. These technical optimizations improved the accuracy and efficiency of preparing 3D printed anatomical models for comminuted fracture preoperative planning, improving opportunities for surgeons to better plan surgical treatment in advance, reducing the likelihood of errors, with the goal of improving surgical outcomes.

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