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Reverse Engineering and Rapid Prototyping Techniques to Innovate Prosthesis Socket Design

机译:逆向工程和快速成型技术创新假体承窝设计

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The paper presents an innovative approach totally based on digital data to optimize lower limb socket prosthesis design. This approach is based on a stump's detailed geometric model and provides a substitute to plaster cast obtained through the traditional manual methodology with a physical model, realized with Rapid Prototyping technologies; this physical model will be used for the socket lamination. The paper discusses a methodology to reconstruct a 3D geometric model of the stump able to describe with high accuracy and detail the complete structure subdivided into bones, soft tissues, muscular masses and dermis. Some different technologies are used for stump acquisition: non contact laser technique for external geometry, CT and MRI imaging technologies for the internal structure, the first one dedicated to bones geometrical model, the last for soft tissues and muscles. We discuss problems related to 3D geometric reconstruction: the patient and stump positioning for the different acquisitions, markers' definition on the stump to identify landmarks, alignment's strategies for the different digital models, in order to define a protocol procedure with a requested accuracy for socket's realization. Some case-studies illustrate the methodology and the results obtained.
机译:本文提出了一种完全基于数字数据的创新方法来优化下肢窝假体设计。该方法基于树桩的详细几何模型,并通过物理模型(通过快速原型技术实现)替代了通过传统的手工方法获得的石膏模型;此物理模型将用于插座叠层。本文讨论了一种重建树桩的3D几何模型的方法,该模型能够以高精度描述并详细说明细分为骨骼,软组织,肌肉块和真皮的完整结构。一些不同的技术用于树桩采集:用于外部几何结构的非接触激光技术,用于内部结构的CT和MRI成像技术,第一个致力于骨骼几何模型的技术,最后一个用于软组织和肌肉的技术。我们讨论与3D几何重建有关的问题:针对不同采集的患者和树桩定位,在树桩上的标记定义以识别界标,针对不同数字模型的对齐策略,以定义要求的精度的协议规程实现。一些案例研究说明了方法和所获得的结果。

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