Suppr超能文献

骨科手术中的3D打印金属植入物:方法、应用及未来展望。

3D printing metal implants in orthopedic surgery: Methods, applications and future prospects.

作者信息

Meng Meng, Wang Jinzuo, Huang Huagui, Liu Xin, Zhang Jing, Li Zhonghai

机构信息

Department of Orthopedics, First Affiliated Hospital of Dalian Medical University, Dalian, PR China.

Key Laboratory of Molecular Mechanism for Repair and Remodeling of Orthopedic Diseases, Liaoning Province, PR China.

出版信息

J Orthop Translat. 2023 Sep 1;42:94-112. doi: 10.1016/j.jot.2023.08.004. eCollection 2023 Sep.

Abstract

BACKGROUND

Currently, metal implants are widely used in orthopedic surgeries, including fracture fixation, spinal fusion, joint replacement, and bone tumor defect repair. However, conventional implants are difficult to be customized according to the recipient's skeletal anatomy and defect characteristics, leading to difficulties in meeting the individual needs of patients. Additive manufacturing (AM) or three-dimensional (3D) printing technology, an advanced digital fabrication technique capable of producing components with complex and precise structures, offers opportunities for personalization.

METHODS

We systematically reviewed the literature on 3D printing orthopedic metal implants over the past 10 years. Relevant animal, cellular, and clinical studies were searched in PubMed and Web of Science. In this paper, we introduce the 3D printing method and the characteristics of biometals and summarize the properties of 3D printing metal implants and their clinical applications in orthopedic surgery. On this basis, we discuss potential possibilities for further generalization and improvement.

RESULTS

3D printing technology has facilitated the use of metal implants in different orthopedic procedures. By combining medical images from techniques such as CT and MRI, 3D printing technology allows the precise fabrication of complex metal implants based on the anatomy of the injured tissue. Such patient-specific implants not only reduce excessive mechanical strength and eliminate stress-shielding effects, but also improve biocompatibility and functionality, increase cell and nutrient permeability, and promote angiogenesis and bone growth. In addition, 3D printing technology has the advantages of low cost, fast manufacturing cycles, and high reproducibility, which can shorten patients' surgery and hospitalization time. Many clinical trials have been conducted using customized implants. However, the use of modeling software, the operation of printing equipment, the high demand for metal implant materials, and the lack of guidance from relevant laws and regulations have limited its further application.

CONCLUSIONS

There are advantages of 3D printing metal implants in orthopedic applications such as personalization, promotion of osseointegration, short production cycle, and high material utilization. With the continuous learning of modeling software by surgeons, the improvement of 3D printing technology, the development of metal materials that better meet clinical needs, and the improvement of laws and regulations, 3D printing metal implants can be applied to more orthopedic surgeries.

THE TRANSLATIONAL POTENTIAL OF THIS PAPER

Precision, intelligence, and personalization are the future direction of orthopedics. It is reasonable to believe that 3D printing technology will be more deeply integrated with artificial intelligence, 4D printing, and big data to play a greater role in orthopedic metal implants and eventually become an important part of the digital economy. We aim to summarize the latest developments in 3D printing metal implants for engineers and surgeons to design implants that more closely mimic the morphology and function of native bone.

摘要

背景

目前,金属植入物广泛应用于骨科手术,包括骨折固定、脊柱融合、关节置换和骨肿瘤缺损修复。然而,传统植入物难以根据受者的骨骼解剖结构和缺损特征进行定制,导致难以满足患者的个性化需求。增材制造(AM)或三维(3D)打印技术是一种先进的数字制造技术,能够生产具有复杂精确结构的部件,为个性化提供了机会。

方法

我们系统回顾了过去10年中关于3D打印骨科金属植入物的文献。在PubMed和Web of Science中搜索了相关的动物、细胞和临床研究。在本文中,我们介绍了3D打印方法和生物金属的特性,总结了3D打印金属植入物的性能及其在骨科手术中的临床应用。在此基础上,我们讨论了进一步推广和改进的潜在可能性。

结果

3D打印技术促进了金属植入物在不同骨科手术中的应用。通过结合CT和MRI等技术的医学图像,3D打印技术能够根据受伤组织的解剖结构精确制造复杂的金属植入物。这种针对患者定制的植入物不仅降低了过高的机械强度并消除了应力屏蔽效应,还提高了生物相容性和功能性,增加了细胞和营养物质的渗透性,并促进了血管生成和骨生长。此外,3D打印技术具有成本低、制造周期短和可重复性高的优点,能够缩短患者的手术和住院时间。已经进行了许多使用定制植入物的临床试验。然而,建模软件的使用、打印设备的操作、对金属植入物材料的高要求以及相关法律法规的缺乏限制了其进一步应用。

结论

3D打印金属植入物在骨科应用中具有个性化、促进骨整合、生产周期短和材料利用率高的优点。随着外科医生对建模软件的不断学习、3D打印技术的改进、更符合临床需求的金属材料的开发以及法律法规的完善,3D打印金属植入物可应用于更多的骨科手术。

本文的转化潜力

精准、智能和个性化是骨科的未来发展方向。有理由相信,3D打印技术将与人工智能、4D打印和大数据更深度融合,在骨科金属植入物中发挥更大作用,并最终成为数字经济的重要组成部分。我们旨在总结3D打印金属植入物的最新进展,以便工程师和外科医生设计出更接近天然骨骼形态和功能的植入物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e22c/10480061/02c862139bbd/ga1.jpg

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验