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Digital Design of Medical Replicas via Desktop Systems: Shape Evaluation of Colon Parts

机译:通过桌面系统的医疗复制品的数字设计:冒号零件的形状评估

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摘要

In this paper, we aim at providing results concerning the application of desktop systems for rapid prototyping of medical replicas that involve complex shapes, as, for example, folds of a colon. Medical replicas may assist preoperative planning or tutoring in surgery to better understand the interaction among pathology and organs. Major goals of the paper concern with guiding the digital design workflow of the replicas and understanding their final performance, according to the requirements asked by the medics (shape accuracy, capability of seeing both inner and outer details, and support and possible interfacing with other organs). In particular, after the analysis of these requirements, we apply digital design for colon replicas, adopting two desktop systems., The experimental results confirm that the proposed preprocessing strategy is able to conduct to the manufacturing of colon replicas divided in self-supporting segments, minimizing the supports during printing., This allows also to reach an acceptable level of final quality, according to the request of having a 3D presurgery overview of the problems., These replicas are compared through reverse engineering acquisitions made by a structured-light system, to assess the achieved shape and dimensional accuracy. Final results demonstrate that low-cost desktop systems, coupled with proper strategy of preprocessing, may have shape deviation in the range of +/- 1 mm, good for physical manipulations during medical diagnosis and explanation.
机译:在本文中,我们的目的是提供有关应用桌面系统的应用程序,以便涉及复杂形状的医学复制品的快速原型设计,例如,冒号的折叠。医疗复制品可以帮助术前计划或辅导在手术中,以更好地了解病理和器官之间的相互作用。根据医疗学所要求的要求(形状精度,内部细节和外部细节的能力,以及与其他器官的支持和可能的接口,指导复制品的数字设计工作流程和了解其最终性能的主要目标。 )。特别是在分析这些要求之后,我们应用用于结肠复制品的数字设计,采用两个桌面系统。实验结果证实,该拟议的预处理策略能够进行冒号复制品的制造,其中划分在自支撑段中,根据具有3D假设概述的问题,最小化印刷期间的支持。评估实现的形状和尺寸精度。最终结果表明,低成本的桌面系统,与预处理的适当策略相结合,可能具有+/- 1毫米的形状偏差,在医学诊断和解释期间对物理操纵有益。

著录项

  • 来源
    《Journal of healthcare engineering.》 |2018年第4期|共10页
  • 作者单位

    Sapienza Univ Roma Dipartimento Ingn Meccan &

    Aerosp Via Eudossiana 18 I-00184 Rome Italy;

    Sapienza Univ Roma Dipartimento Ingn Meccan &

    Aerosp Via Eudossiana 18 I-00184 Rome Italy;

    Sapienza Univ Roma Dipartimento Ingn Meccan &

    Aerosp Via Eudossiana 18 I-00184 Rome Italy;

    Sapienza Univ Roma Dipartimento Ingn Meccan &

    Aerosp Via Eudossiana 18 I-00184 Rome Italy;

    Sapienza Univ Roma Dipartimento Ingn Meccan &

    Aerosp Via Eudossiana 18 I-00184 Rome Italy;

    Sapienza Univ Roma Dipartimento Ingn Meccan &

    Aerosp Via Eudossiana 18 I-00184 Rome Italy;

    Sapienza Univ Roma Dipartimento Ingn Meccan &

    Aerosp Via Eudossiana 18 I-00184 Rome Italy;

    Sapienza Univ Roma Dipartimento Ingn Meccan &

    Aerosp Via Eudossiana 18 I-00184 Rome Italy;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医用一般科学;
  • 关键词

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