Current and Future Manufacturing of Chest Orthoses, Considering the Case of Osteogenesis Imperfecta

D. Redaelli, E. Biffi, G. Colombo, P. Fraschini, G. Reni
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引用次数: 8

Abstract

The present paper aims at discussing the current manufacturing processes of chest orthoses, considering patients affected by Osteogenesis Imperfecta (OI) and a possible future scenario. OI is a genetic disease caused primarily by the genes responsible for collagen production. One of the most common symptoms among the groups of living subjects affected by OI is scoliosis, the abnormal deformation of the spine curvature. The non-invasive treatments for realigning the spine consist of both physical exercise and use of chest braces. The latter are strongly patient-dependent devices; thus, the level of customization is high. The production processes can be classified in: traditional, modern and research process. The first one consists of a sequence of manual operations on plaster casts and final orthoses. The modern process integrates CAD/CAM systems for the first phases of virtual 3D modeling and the automation of the cast production using milling robot, but maintaining the second part of the process. The research process considers the introduction of polymer Additive Manufacturing (AM) in substitution to the thermoforming. Advantages and disadvantages related to each process are discussed in relation to the OI problem.
考虑成骨不完全性的胸部矫形器的现状和未来制造
本文旨在讨论目前胸部矫形器的制造工艺,考虑到成骨不全症(OI)患者的影响和未来可能的情况。成骨不全是一种主要由负责胶原蛋白产生的基因引起的遗传性疾病。在受成骨不全影响的活人群体中,最常见的症状之一是脊柱侧凸,脊柱弯曲异常变形。重新调整脊柱的非侵入性治疗包括体育锻炼和使用胸托。后者是强烈依赖患者的设备;因此,定制的水平很高。生产工艺可分为:传统工艺、现代工艺和研究工艺。第一个包括石膏模型和最终矫形器的一系列手工操作。现代工艺集成了CAD/CAM系统,用于虚拟3D建模的第一阶段和使用铣削机器人的铸造生产自动化,但维护了该过程的第二部分。研究过程考虑引入聚合物增材制造(AM)来替代热成型。讨论了与OI问题相关的每个流程的优点和缺点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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