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A practical methodology for computer-aided design of custom 3D printable casts for wrist fractures

机译:用于腕骨骨折的自定义3D可打印铸件的计算机辅助设计方法

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In recent years, breakthroughs in the fields of reverse engineering and additive manufacturing techniques have led to the development of innovative solutions for personalized medicine. 3D technologies are quickly becoming a new treatment concept that hinges on the ability to shape patient-specific devices. Among the wide spectrum of medical applications, the orthopaedic sector is experiencing the most benefits. Several studies proposed modelling procedures for patient-specific 3D-printed casts for wrist orthoses, for example. Unfortunately, the proposed approaches are not ready to be used directly in clinical practice since the design of these devices requires significant interaction among medical staff, reverse engineering experts, additive manufacturing specialists and CAD designers. This paper proposes a new practical methodology to produce 3D printable casts for wrist immobilization with the aim of overcoming these drawbacks. In particular, the idea is to realize an exhaustive system that can be used within a paediatric environment. It should provide both a fast and accurate dedicated scanning of the hand-wrist-arm district, along with a series of easy-to-use semi-automatic tools for the modelling of the medical device. The system was designed to be used directly by the clinical staff after a brief training. It was tested on a set of five case studies with the aim of proving its general reliability and identifying possible major flaws. Casts obtained using the proposed system were manufactured using a commercial 3D printer, and the device's compliance with medical requirements was tested. Results showed that the designed casts were correctly generated by the medical staff without the need of involving engineers. Moreover, positive feedback was provided by the users involved in the experiment.
机译:近年来,逆向工程和添加剂制造技术领域的突破导致了个性化药物的创新解决方案的开发。 3D技术正在迅速成为一种新的治疗理念,即铰接塑造特定患者的设备的能力。在广泛的医学应用中,整形外科部门正在经历最多的益处。例如,几项研究提出了针对患者特定于患者的3D印刷铸件的模拟程序,例如腕部。遗憾的是,由于这些设备的设计需要在医务人员,逆向工程专家,添加剂制造专家和CAD设计师之间进行重大互动,因此拟议的方法尚未准备好直接用于临床实践中。本文提出了一种新的实用方法,以生产用于手腕固定的3D可打印铸件,目的是克服这些缺点。特别地,该想法是实现一种可在儿科环境中使用的详尽系统。它应提供快速准确地专用扫描手工臂区,以及一系列易于使用的半自动工具,用于医疗设备的建模。该系统旨在在简短的培训后由临床人员直接使用。它对一组五种案例研究进行了测试,目的是证明其一般可靠性和识别可能的主要缺陷。使用所提出的系统获得的铸件是使用商业3D打印机制造的,并测试了设备的符合性要求。结果表明,医务人员正确地产生了设计的演员,而无需涉及工程师。此外,涉及实验的用户提供了积极的反馈。

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