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Assessment of body-powered 3D printed partial finger prostheses: a case study

机译:人体动力3D打印的部分手指假肢的评估:案例研究

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摘要

BackgroundTraditional prosthetic fabrication relies heavily on plaster casting and 3D models for the accurate production of prosthetics to allow patients to begin rehabilitation and participate in daily activities. Recent technological advancements allow for the use of 2D photographs to fabricate individualized prosthetics based on patient anthropometrics. Additive manufacturing (i.e. 3D printing) enhances the capability of prosthesis manufacturing by significantly increasing production speed and decreasing production cost. Existing literature has extensively described the validity of using computer-aided design and 3D printing for fabrication of upper limb prostheses. The present investigation provides a detailed description of the development of a patient specific body-powered 3D printed partial finger prosthesis and compares its qualitative and functional characteristics to a commercially available finger prosthesis.
机译:背景技术传统的假体制造在很大程度上依赖于石膏铸造和3D模型来精确生产假体,以使患者能够开始康复并参与日常活动。最近的技术进步允许使用2D照片制作基于患者人体测量学的个性化假肢。增材制造(即3D打印)通过显着提高生产速度和降低生产成本来增强假体制造的能力。现有文献已广泛描述了使用计算机辅助设计和3D打印制造上肢假体的有效性。本研究提供了患者专用的身体动力3D打印部分手指假体的开发的详细描述,并将其定性和功能特性与市售的手指假体进行了比较。

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