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首页> 外文期刊>Procedia CIRP >Study for development of a patient-specific 3D printed craniofacial medical device: Design based on 3D virtual biomodels/ CAD/ RP
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Study for development of a patient-specific 3D printed craniofacial medical device: Design based on 3D virtual biomodels/ CAD/ RP

机译:针对特定患者的3D打印颅面医疗设备开发的研究:基于3D虚拟生物模型/ CAD / RP的设计

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摘要

Reconstructive surgery field is looking for sustainable alternatives on its procedures, specifically on affordable alternatives to manufacturing processes for medical devices. This paper outlines a design process to develop 3D printed medical devices for reconstructive surgery in a specific patient who had congenital, oncological or traumatic fracture cases in the face and/or skull. The implementation of the design process strategy was supported using endogenous capabilities and resources atUniversidad Industrial de Santander, which could be applied in developing countries. So, this approach might offer solutions adapted to the South American population. For this reason, the research framework was a specific patient implant method, defined by modeling integration technologies, those supported by 3D virtual biomodels, computer-aided design, and rapid prototyping tools.A deep research has carried out with some surgeons within reconstructive surgery field, identifying needs and requirements for each case through an iterative process. Expected results of this paper were a workflow definition for 3D printed medical device development for a specific patient. Five cases were processed through the proposed workflow. From those cases, main identified outputs were related to devices such as implants, prosthesis surgical cutting guides, and pre-surgical planning to be performed. The proposed workflow showed strong viability implementation in future services among different academics and health facilities located in developing countries.
机译:重建手术领域正在寻找可持续的替代方法,特别是在医疗设备制造过程中可承受的替代方法上。本文概述了针对面部和/或颅骨先天性,肿瘤性或外伤性骨折病例的特定患者开发用于重建手术的3D打印医疗设备的设计过程。设计过程策略的实施得到了桑坦德工业大学的内在能力和资源的支持,可以在发展中国家使用。因此,这种方法可能会提供适合南美人口的解决方案。因此,研究框架是一种特定的患者植入方法,该方法由建模集成技术,3D虚拟生物模型,计算机辅助设计和快速原型工具支持的技术定义。在重建手术领域内,对一些外科医生进行了深入研究,通过迭代过程确定每种情况的需求和要求。本文的预期结果是针对特定患者的3D打印医疗设备开发的工作流程定义。通过提议的工作流程处理了五起案件。从这些情况中,主要确定的输出与诸如植入物,假体手术切割指南以及要进行的手术前计划之类的设备有关。拟议的工作流程显示了发展中国家不同学者和医疗机构未来服务中强大的可行性。

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