Benjamin Hajnal, Agoston Jakab Pokorni, Mate Turbucz, Ferenc Bereczki, Marton Bartos, Aron Lazary, Peter Endre Eltes
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引用次数: 0
Abstract
Purpose: The objective of this systematic review is to present a comprehensive summary of existing research on the use of 3D printing in spinal surgery.
Methods: The researchers conducted a thorough search of four digital databases (PubMed, Web of Science, Scopus, and Embase) to identify relevant studies published between January 1999 and December 2022. The review focused on various aspects, including the types of objects printed, clinical applications, clinical outcomes, time and cost considerations, 3D printing materials, location of 3D printing, and technologies utilized. Out of the 1620 studies initially identified and the 17 added by manual search, 105 met the inclusion criteria for this review, collectively involving 2088 patients whose surgeries involved 3D printed objects.
Results: The studies presented a variety of 3D printed devices, such as anatomical models, intraoperative navigational templates, and customized implants. The most widely used type of objects are drill guides (53%) and anatomical models (25%) which can also be used for simulating the surgery. Custom made implants are much less frequently used (16% of papers). These devices significantly improved clinical outcomes, particularly enhancing the accuracy of pedicle screw placement. Most studies (88%) reported reduced operation times, although two noted longer times due to procedural complexities. A variety of 3DP technologies and materials were used, with STL, FDM, and SLS common for models and guides, and titanium for implants via EBM, SLM, and DMLS. Materialise software (Mimics, 3-Matic, Magics) was frequently utilized. While most studies mentioned outsourced production, in-house printing was implied in several cases, indicating a trend towards localized 3D printing in spine surgery.
Conclusions: 3D printing in spine surgery, a rapidly growing area of research, is predominantly used for creating drill guides for screw insertion, anatomical models, and innovative implants, enhancing clinical outcomes and reducing operative time. While cost-efficiency remains uncertain due to insufficient data, some 3D printing applications, like pedicle screw drill guides, are already widely accepted and routinely used in hospitals.
目的:本系统综述的目的是对3D打印在脊柱手术中的应用进行全面的总结。方法:研究人员对四个数字数据库(PubMed、Web of Science、Scopus和Embase)进行了全面检索,以确定1999年1月至2022年12月期间发表的相关研究。该综述集中在各个方面,包括打印对象的类型、临床应用、临床结果、时间和成本考虑、3D打印材料、3D打印的位置和所使用的技术。在最初确定的1620项研究和通过人工搜索添加的17项研究中,105项符合本综述的纳入标准,总共涉及2088名手术涉及3D打印对象的患者。结果:研究展示了多种3D打印设备,如解剖模型、术中导航模板和定制植入物。最广泛使用的对象类型是钻头导轨(53%)和解剖模型(25%),也可用于模拟手术。定制植入物的使用频率要低得多(占论文的16%)。这些装置显著改善了临床结果,特别是提高了椎弓根螺钉放置的准确性。大多数研究(88%)报告手术时间缩短,尽管有两项研究指出由于操作复杂性而延长了手术时间。使用了多种3d打印技术和材料,STL、FDM和SLS用于模型和导轨,钛通过EBM、SLM和DMLS用于植入物。Materialise软件(Mimics, 3-Matic, Magics)经常被使用。虽然大多数研究都提到了外包生产,但在一些情况下,内部打印是隐含的,这表明了本地化3D打印在脊柱手术中的趋势。结论:脊柱外科的3D打印是一个快速发展的研究领域,主要用于制造螺钉插入的钻头导向,解剖模型和创新植入物,提高临床效果并缩短手术时间。虽然由于数据不足,成本效益仍然不确定,但一些3D打印应用,如椎弓根螺钉钻头,已经被广泛接受并在医院中常规使用。
期刊介绍:
"European Spine Journal" is a publication founded in response to the increasing trend toward specialization in spinal surgery and spinal pathology in general. The Journal is devoted to all spine related disciplines, including functional and surgical anatomy of the spine, biomechanics and pathophysiology, diagnostic procedures, and neurology, surgery and outcomes. The aim of "European Spine Journal" is to support the further development of highly innovative spine treatments including but not restricted to surgery and to provide an integrated and balanced view of diagnostic, research and treatment procedures as well as outcomes that will enhance effective collaboration among specialists worldwide. The “European Spine Journal” also participates in education by means of videos, interactive meetings and the endorsement of educative efforts.
Official publication of EUROSPINE, The Spine Society of Europe