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Design Automation and Additive Manufacturing for Anatomically Diversified Medical Simulators

机译:设计自动化和添加剂制造对解剖学多样化的医用模拟器

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The education and continuous exercise of manual skills in invasive medical procedures requires training environments that are safe, cost efficient and realistic. While body parts of humans and animals offer the most realism they are expensive and challenging in storage, handling and disposal. Therefore, training scenarios for medical staff commonly use artificial simulators to practice individual skills and team performance. These simulators usually do not reflect the diversity in human anatomy. Simulators for a certain task are commonly offered only in one shape and size to reduce cost in design and manufacturing. A more diverse anatomy could improve the training of medical staff. This work uses additive manufacturing for the cost efficient production of molds and components for silicone casted customized simulators. Furthermore a design automated approach is presented that allows non-engineers to specify the desired anatomy. The process chain is validated on a simulator for pneumothorax decompression. The main element of the simulator is an insert, which is cut and stitched during the procedure. The insert is a single-use disposable representing ribs, muscles, fat and skin. The new simulator insert offers improved aesthetic and tactile properties. The automated design and additive manufacturing allow non-engineers to adapt the insert to body mass index, age, gender and ethnicity.
机译:侵入式医疗程序中的教育和持续行使手工技能需要培训环境,这是安全,成本效益和现实的。虽然人类和动物的身体部位提供了最昂贵的现实主义,但它们在储存,处理和处置方面都很昂贵,挑战。因此,医务人员的培训方案通常使用人工模拟器来练习个人技能和团队表现。这些模拟器通常不会反映人类解剖学的多样性。某项任务的模拟器通常仅以一种形状和大小提供,以降低设计和制造的成本。更多样化的解剖可以改善医务人员的培训。这项工作使用添加剂制造,以便为硅胶浇铸的模拟器的模具和组件的成本高效生产。此外,提出了一种允许非工程师指定所需解剖结构的设计自动方法。处理链在用于气胸减压的模拟器上验证。模拟器的主元件是插入件,在过程中被切割和缝合。插入件是一次性一次性代表肋骨,肌肉,脂肪和皮肤。新型模拟器插入件提供了改进的美学和触觉性能。自动化设计和添加剂制造允许非工程师将插入物调整到体重指数,年龄,性别和种族。

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