Three-dimensional printing technology applied to the production of prosthesis: A systemic narrative review.

IF 0.8 4区 医学 Q4 ORTHOPEDICS Prosthetics and Orthotics International Pub Date : 2024-06-18 DOI:10.1097/PXR.0000000000000366
Yoo Jin Choo, Jang Hwan Kim, Min Cheol Chang
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Abstract

The purpose of this scoping review was to investigate the effects of 3-dimensional (3D)-printed prostheses. Articles published up to August 19, 2023, were searched in the PubMed, Cochrane Library, Embase, and Scopus databases. The search terms used were "3D printed prosthesis," "3D printed prostheses," "3D printed prosthe*," "3D printed artificial arm," "3D printed artificial leg," "3D printing prosthesis," "3D printing prostheses," "3D printing prosthe*," "3D printing artificial arm," and "3D printing artificial leg." This review included studies that applied 3D-printed prostheses to upper- or lower-limb amputees. Case reports, conference abstracts, presentations, reviews, and unidentified articles were excluded from the analysis. A total of 937 articles were identified, 11 of which were included after confirming eligibility through the title, abstract, and full text. The results indicated that the 3D-printed prostheses demonstrated the ability to substitute for the functions of impaired limbs, similar to conventional prostheses. Notably, the production cost and weight were reduced compared with those of conventional prostheses, increasing patient satisfaction. The use of 3D-printed prostheses is expected to gain prominence in future clinical practice. However, concerns regarding the durability of 3D-printed prostheses have increased among users. Therefore, there is an ongoing need to explore highly durable materials that can withstand the weight of the user without breaking easily. In addition, advancements are required in technologies that enable the depiction of various skin tones and the production of smaller-sized prostheses suitable for clothing.

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三维打印技术应用于假体生产:系统性综述。
本范围综述旨在研究三维(3D)打印假体的效果。在PubMed、Cochrane Library、Embase和Scopus数据库中检索了截至2023年8月19日发表的文章。使用的检索词包括 "3D 打印假肢"、"3D 打印假体"、"3D 打印假体*"、"3D 打印假臂"、"3D 打印假腿"、"3D 打印假体"、"3D 打印假肢"、"3D 打印假体*"、"3D 打印假臂 "和 "3D 打印假腿"。本综述包括将 3D 打印假肢应用于上肢或下肢截肢者的研究。病例报告、会议摘要、演示文稿、综述和不明文章不在分析之列。共确定了 937 篇文章,通过标题、摘要和全文确认合格后,纳入了其中 11 篇文章。结果表明,3D打印假肢能够替代受损肢体的功能,与传统假肢类似。值得注意的是,与传统假肢相比,三维打印假肢的生产成本和重量都有所降低,从而提高了患者的满意度。预计三维打印假肢的使用将在未来的临床实践中占据重要地位。然而,用户对 3D 打印假体耐用性的担忧也在增加。因此,人们一直需要探索能承受用户重量而又不易破裂的高耐用性材料。此外,还需要在技术上取得进步,以便能够描绘出各种肤色,并制作出适合穿在衣服上的较小尺寸假体。
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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来源期刊
CiteScore
2.30
自引率
13.30%
发文量
208
审稿时长
6-12 weeks
期刊介绍: Prosthetics and Orthotics International is an international, multidisciplinary journal for all professionals who have an interest in the medical, clinical, rehabilitation, technical, educational and research aspects of prosthetics, orthotics and rehabilitation engineering, as well as their related topics.
期刊最新文献
An environmental scan of limb loss rehabilitation centers across Canada. Design of a custom metamaterial insert for improved pressure distribution within transtibial prosthetic sockets. Effects of a low-cost prosthetic knee on amputee gait over uneven and even terrains. Time to successful outcome vs. treatment duration in cranial remolding orthosis treatment. Is biomechanical loading reduced in individuals with unilateral transtibial amputation during fast-paced walking when using different ankle/foot prostheses? A pragmatic randomized controlled trial.
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