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应用于矫形器制造的3D打印技术:叙述性综述

3D printing technology applied to orthosis manufacturing: narrative review.

作者信息

Choo Yoo Jin, Boudier-Revéret Mathieu, Chang Min Cheol

机构信息

Production R&D Division Advanced Interdisciplinary Team, Medical Device Development Center, Daegu-Gyeongbuk Medical Innovation, Daegu, Korea.

Department of Physical Medicine and Rehabilitation, Centre Hospitalier de l'Université de Montréal, Montreal, Canada.

出版信息

Ann Palliat Med. 2020 Nov;9(6):4262-4270. doi: 10.21037/apm-20-1185. Epub 2020 Sep 24.

Abstract

Recently, three-dimensional (3D) printing technology has gradually been applied to the field of orthoses. This narrative review aimed to investigate the effect of 3D printed orthoses compared to conventional orthoses (non-3D printed orthoses). We searched MEDLINE for articles published up to July 27, 2020, and the main search phrases for identifying related articles were "3D printed orthosis", "3D printed orthoses", "3D printed braces", "3D printed splints", "3D printing orthosis", "3D printed orthoses", "3D printing braces" and "3D printing splints". We included articles that applied 3D printed orthoses to patients or healthy participants and excluded those not written in English, conference abstracts or presentations, and reviews. A total of 237 papers were identified, and qualifications were evaluated based on the title, abstract, and full text. A total of 22 articles were finally included in the analysis. The 3D printed orthoses showed similar or superior effects on biomechanical parameters and kinematic parameters such as wrist-hand function, wrist spasticity, arch height index, foot plantar pressure, and joint range of motion (ROM). In addition, 3D printed orthoses had high satisfaction and comfort compared to conventional orthoses. We believe that 3D printed orthoses can replace conventional ones, and they are expected to gain more popularity in the future.

摘要

近年来,三维(3D)打印技术已逐渐应用于矫形器领域。本叙述性综述旨在研究3D打印矫形器与传统矫形器(非3D打印矫形器)相比的效果。我们在MEDLINE数据库中检索了截至2020年7月27日发表的文章,用于识别相关文章的主要检索词为“3D打印矫形器”、“3D打印矫形器”、“3D打印支具”、“3D打印夹板”、“3D打印矫形器”、“3D打印矫形器”、“3D打印支具”和“3D打印夹板”。我们纳入了将3D打印矫形器应用于患者或健康参与者的文章,排除了非英文撰写的文章、会议摘要或报告以及综述。共识别出237篇论文,并根据标题、摘要和全文对其资格进行评估。最终共有22篇文章纳入分析。3D打印矫形器在生物力学参数和运动学参数方面表现出相似或更好的效果,如手腕-手部功能、手腕痉挛、足弓高度指数、足底压力和关节活动范围(ROM)。此外,与传统矫形器相比,3D打印矫形器具有更高的满意度和舒适度。我们认为3D打印矫形器可以取代传统矫形器,并且预计在未来会更受欢迎。

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