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COMPUTER-AIDED DESIGN AND ADDITIVE MANUFACTURING OF CUSTOM SILICONE PROSTHETIC FINGER

机译:电脑辅助设计与硅胶假手指的添加剂制造

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Finger and partial finger amputations are one of the most frequently encountered forms of partial hand loss Most of these amputees can benefit from prosthetic fingers, which should be both functional and aesthetic, to enhance rehabilitation by permitting a more normal professional and social life. Custom prosthetic fingers perform better than off-the-shelf ones due to better fit, comfort, and match to the patients' physical characteristics. The conventional fabrication process for custom prosthetic fingers uses multiple impressions and molds combined with silicone injection molding to create the final shape. This process has not seen significant changes for decades and comes with a high cost and long wait time, stopping the prosthesis from benefiting the patient in a cost-effective, timely, and lifelike functional way. This study developed a new manufacturing approach for custom prosthetic fingers based on an additive manufactured custom thin-wall mold. The approach was based on optical 3D scanning of the amputees' fingers and computer-aided design of custom finger prosthetic geometry and the corresponding thin-wall mold. Preliminary clinical study on an amputee patient shows the feasibility of this new custom molding approach and future work will clinically evaluate the performance of the prosthetic fingers created via the computer-aided design and additive manufacturing approach.
机译:手指和部分手指截肢是最常见的部分手工损失之一,大部分术语可以从假肢手指中受益,这应该是功能和美观的,以提高康复,通过允许更正常的专业和社会生活来增强康复。定制假肢手指由于更好,舒适,符合患者的物理特性而表现优于现成的手指。用于定制假肢手指的传统制造方法使用多个印模和模具与硅胶注塑成型结合以产生最终形状。这一进程几十年来没有看到重大变化,并具有高成本和长时间的等待时间,停止假肢在具有成本效益,及时和栩栩如生的功能的方式中受益。本研究开发了一种新的制造方法,用于根据添加制造的定制薄壁模具的定制假肢手指。该方法是基于微型手指的光学3D扫描和定制手指假体几何形状和相应的薄壁模具的计算机辅助设计。对截肢者患者的初步临床研究表明,这种新的定制成型方法的可行性和未来的工作将临床评价通过计算机辅助设计和添加剂制造方法创造的假体手指的性能。

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