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关于3D打印的文献综述:医疗保健模拟教育工作者的知识、技能和态度

A scoping review of literature about 3D printing: knowledge, skills and attitude for simulation educators in healthcare.

作者信息

Raechal Luther, Bajwa Maria, Fayyaz Jabeen, Biglino Giovanni, Kardong-Edgren Suzan

机构信息

Center for Medical Simulation and Innovative Education, Johns Hopkins All Children's Hospital, Saint Petersburg, FL, USA.

Health Professions Education, MGH Institute of Health Professions, Boston, MA, USA.

出版信息

3D Print Med. 2025 Aug 25;11(1):46. doi: 10.1186/s41205-025-00292-9.

Abstract

BACKGROUND

Three-Dimensional (3D) printing, also known as additive manufacturing (Linke, Additive manufacturing, explained, 2017), has rapidly emerged as a transformative tool in healthcare simulation. This scoping review investigates simulation educators' knowledge, skills, and attitudes (KSAs) about the impact of 3D printing and explores 3D printing's broader applications in healthcare simulation. By synthesizing existing literature, this study aims to identify trends, challenges, and opportunities for integrating 3D printing into simulation-based education.

MAIN BODY

The review followed the PRISMA-ScR framework, employing a six-step approach. A comprehensive search was conducted across databases, including PubMed, Medline, ERIC, CINAHL, and Google Scholar, covering studies published between 2000 and 2023. Keywords related to 3D printing and simulation-based education were used. Inclusion criteria focused on peer-reviewed articles discussing 3D printing's role in KSAs for simulation educators and its applications in healthcare simulation. Articles were charted and analyzed thematically to identify trends, challenges, and outcomes. A total of 181 studies were included, spanning 36 countries and 113 journals. Most studies focused on medical education, with 73% utilizing 3D-printed models for direct teaching. Key themes identified included realism, skill development, cost-effectiveness, and teaching effectiveness. Challenges included model accuracy, training gaps for educators, and resource limitations. Study designs were predominantly descriptive, with a significant portion being single-site case reports.

CONCLUSION

3D printing has the potential to revolutionize simulation-based education by enhancing realism, accessibility, and skill development. However, gaps in educator training and methodological rigor must be addressed. Future research should focus on multi-institutional studies and long-term outcomes to maximize the impact of the technology.

摘要

背景

三维(3D)打印,也被称为增材制造(林克,《增材制造解读》,2017年),已迅速成为医疗模拟领域的一项变革性工具。本综述性研究调查了模拟教育工作者对3D打印影响的知识、技能和态度,并探讨了3D打印在医疗模拟中的更广泛应用。通过综合现有文献,本研究旨在确定将3D打印整合到基于模拟的教育中的趋势、挑战和机遇。

主体

本综述遵循PRISMA - ScR框架,采用六步方法。在包括PubMed、Medline、ERIC、CINAHL和谷歌学术在内的数据库中进行了全面搜索,涵盖2000年至2023年发表的研究。使用了与3D打印和基于模拟的教育相关的关键词。纳入标准侧重于同行评审文章,这些文章讨论了3D打印在模拟教育工作者的知识、技能和态度方面的作用及其在医疗模拟中的应用。对文章进行图表绘制并进行主题分析,以确定趋势、挑战和结果。共纳入181项研究,涉及36个国家和113种期刊。大多数研究聚焦于医学教育,其中73%使用3D打印模型进行直接教学。确定的关键主题包括逼真度、技能发展、成本效益和教学效果。挑战包括模型准确性、教育工作者的培训差距和资源限制。研究设计主要是描述性的,其中很大一部分是单中心病例报告。

结论

3D打印有潜力通过提高逼真度、可及性和技能发展来彻底改变基于模拟的教育。然而,必须解决教育工作者培训和方法严谨性方面的差距。未来的研究应侧重于多机构研究和长期结果,以最大限度地发挥该技术的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/943d/12376359/ebfd24b629f7/41205_2025_292_Fig1_HTML.jpg

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