首页> 美国卫生研究院文献>Asian Spine Journal >Efficacy of Computer-Aided Design and Manufacturing Versus Computer-Aided Design and Finite Element Modeling Technologies in Brace Management of Idiopathic Scoliosis: A Narrative Review
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Efficacy of Computer-Aided Design and Manufacturing Versus Computer-Aided Design and Finite Element Modeling Technologies in Brace Management of Idiopathic Scoliosis: A Narrative Review

机译:计算机辅助设计和制造与计算机辅助设计和有限元建模技术在特发性脊柱脊柱侧凸的支撑管理中的疗效:叙事评论

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摘要

The efficiency and design quality of scoliosis braces produced by the conventional casting method depends highly on the orthotist’s experience. Recently, advanced engineering techniques have been used with the aim of improving the quality of brace design and associated clinical outcomes. Numerically controlled machine tools have provided enormous opportunities for reducing the manufacturing time and saving material. However, the effectiveness of computer-aided brace manufacturing for scoliosis curve improvement is controversial. This narrative review is aimed at comparing the efficacy of braces made by the conventional method with those made by two computer-aided methods: computer-aided design and manufacturing (CAD-CAM), and computer-aided design and finite element modeling (CAD-FEM). The comparison was performed on scoliosis parameters in coronal, sagittal, and transverse planes. Scientific databases were searched, and 11 studies were selected for this review. Because of the diversity of study designs, it was not possible to decisively conclude which brace-manufacturing method is most effective. Similar effectiveness in curve correction was found in the coronal plane for braces made by using advanced manufacturing and conventional methods. In the sagittal plane, modern braces seem to be more effective than traditional braces, but there is an ongoing debate among clinicians, about which CAD-CAM and CAD-FEM brace provides a better treatment outcome. The relative effectiveness of modern and conventional methods in correcting deformities in the transverse plane is also a controversial subject. Overall, advanced engineering design and production methods can be proposed as time- and cost-efficient approaches for scoliosis management. However, there is insufficient evidence yet to conclude that CAD-CAM, and CAD-FEM methods provide significantly better clinical outcomes than those of conventional methods in the treatment of scoliosis curve. Moreover, for some factors, such as molding and the patient’s posture during the data acquisition, in brace curve-correction plan, the orthotist’s experience and scoliosis curve flexibility should be explored to confidently compare the outcomes of conventional, CAD-CAM, and CAD-FEM methods.
机译:传统铸造方法产生的脊柱侧凸支架的效率和设计质量依赖于矫正者的经验。最近,先进的工程技术已经用于提高支架设计和相关临床结果的质量。数控机床为减少制造时间和节省材料提供了巨大的机会。然而,计算机辅助支架制造用于脊柱侧凸曲线改善的有效性是有争议的。这种叙述审查旨在比较传统方法制造的括号的功效与两种计算机辅助方法制作的胶带:计算机辅助设计和制造(CAD-CAM)和计算机辅助设计和有限元建模(CAD- FEM)。对冠状,矢状和横向平面中的脊柱侧凸参数进行了比较。搜索科学数据库,选择了11项研究进行了评论。由于研究设计的多样性,不可能果断地得出结论,支架制造方法最有效。在曲线校正类似效力在冠状平面中发现通过使用先进的制造和常规方法制备的大括号。在矢状面,现代括号似乎比传统的牙套更有效,但临床医生之间的争论,对此CAD-CAM和CAD-FEM支柱提供了更好的治疗效果。现代和常规方法在校正横向平面中的畸形中的相对有效性也是一个有争议的主题。总体而言,先进的工程设计和生产方法可以提出脊柱侧凸管理的时间和经济高效的方法。然而,没有足够的证据来得出结论,CAD-CAM和CAD-FEM方法提供比治疗脊柱侧凸曲线的常规方法的显着更好的临床结果。此外,对于一些因素,例如在数据采集期间模塑和患者的姿势,在支架曲线校正计划中,应探索矫正者的经验和脊柱侧曲线灵活性,以自信地比较传统,CAD-CAM和CAD的结果有限元方法。

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