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3D Printed PLA of Gallbladder for Virtual Surgery Planning

机译:虚拟手术规划的3D印刷PLA

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Three-Dimensional Printing (3DP) technology using Polylactic Acid (PLA) has been applied in numerous medical applications and successfully improved surgical procedures. Unfortunately, the quality of the transferring process from scanning the human organ to the production of organ prototypes remain inaccurate and inconsistent. This study aims to develop and to validate the sequencing process of designing and producing prototyping models of a human internal organ as a virtual tool to reduce the possibility of failures in the surgery. The image processing steps of volume rendering, segmentation, and refinement followed by prototype production with ratio 1:1 applied to the three-dimensional scanning imaginary data of normal and abnormal patients. The validation techniques consist of qualitative and quantitative methods. The qualitative approach reveals that the 3DP using PLA could enhance the existing modality to visualize the real condition of the patient. The quantitative approach shows that the length of normal and abnormal organ prototypes respectively was 7.5 cm and 13.5 cm. The volume from three different formats of the human organ model was 33.790 cm~3 in DICOM format, 34.592 cm~3 in STL format, and 35.000 cm~3 in prints. The validation techniques conclude that the PLA prototypes of the human internal organ are similar to the imaging data and satisfying for virtual surgical planning.
机译:使用聚乳酸(PLA)的三维印刷(3DP)技术已应用于许多医疗应用,并成功地改善了外科手术。遗憾的是,将人体器官扫描到器官原型的转移过程的质量仍然不准确和不一致。本研究旨在开发和验证设计和生产人类内部器官原型模型的排序过程,以减少手术中失败的可能性。体积渲染,分割和细化的图像处理步骤,然后是具有比率1:1的原型产生,施加到正常和异常患者的三维扫描虚部数据。验证技术包括定性和定量方法。定性方法揭示了使用PLA的3DP可以增强现有的模态以可视化患者的真实情况。定量方法表明,正常和异常器官原型的长度分别为7.5cm和13.5cm。来自人机模型的三种不同格式的体积为33.790cm〜3的DICOM格式,STL格式为34.592cm〜3,打印中为35.000cm〜3。验证技术得出结论,人类内部器官的PLA原型类似于成像数据和满足虚拟手术规划。

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