三维打印人工椎体(3DP AVB)的临床应用:综述。

IF 3 3区 医学 Q2 HEALTH CARE SCIENCES & SERVICES
Roman Kiselev, Aleksander Zheravin
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引用次数: 0

摘要

导言:由于缺乏可靠的解决方案,椎体重建(VBR)假体的选择仍是一个有争议的问题。最常用的钛网笼(TMC)的下沉率从 42.5% 到 79.7% 不等。造成这一问题的主要原因是钛网笼与骨的弹性模量不同。本综述旨在总结新型三维打印人工椎体(3DP AVB)的临床和放射学结果。研究方法对 PubMed、Scopus 和 Google Scholar 进行文献检索,提取相关研究。筛选标题和摘要后,共选出 50 篇文章进行全文分析。结果:初步数据表明,3DP AVB 与种植体相关的并发症较少。大多数对比研究表明,3DP AVB 下沉率明显降低,手术时间缩短,术中失血量减少。然而,随机临床试验的缺乏和结果的高度可变性值得警惕。结论:大多数文献数据显示,3DP AVB 在手术时间、术中失血量和下沉率方面具有优势。然而,制造时间长、成本高和监管问题是该技术的主要缺点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Clinical Application of 3D-Printed Artificial Vertebral Body (3DP AVB): A Review.

Introduction: The choice of prosthesis for vertebral body reconstruction (VBR) remains a controversial issue due to the lack of a reliable solution. The subsidence rate of the most commonly used titanium mesh cages (TMC) ranges from 42.5% to 79.7%. This problem is primarily caused by the differences in the elastic modulus between the TMC and bone. This review aims to summarize the clinical and radiological outcomes of new 3D-printed artificial vertebral bodies (3DP AVB). Methods: A literature search of PubMed, Scopus and Google Scholar was conducted to extract relevant studies. After screening the titles and abstracts, a total of 50 articles were selected for full-text analysis. Results: Preliminary data suggest fewer implant-related complications with 3DP AVB. Most comparative studies indicate significantly lower subsidence rates, reduced operation times and decreased intraoperative blood loss. However, the scarcity of randomized clinical trials and the high variability of the results warrant caution. Conclusion: Most literature data show an advantage of 3DP AVB in terms of the operation time, intraoperative blood loss and subsidence rate. However, long manufacturing times, high costs and regulatory issues are this technology's main drawbacks.

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来源期刊
Journal of Personalized Medicine
Journal of Personalized Medicine Medicine-Medicine (miscellaneous)
CiteScore
4.10
自引率
0.00%
发文量
1878
审稿时长
11 weeks
期刊介绍: Journal of Personalized Medicine (JPM; ISSN 2075-4426) is an international, open access journal aimed at bringing all aspects of personalized medicine to one platform. JPM publishes cutting edge, innovative preclinical and translational scientific research and technologies related to personalized medicine (e.g., pharmacogenomics/proteomics, systems biology). JPM recognizes that personalized medicine—the assessment of genetic, environmental and host factors that cause variability of individuals—is a challenging, transdisciplinary topic that requires discussions from a range of experts. For a comprehensive perspective of personalized medicine, JPM aims to integrate expertise from the molecular and translational sciences, therapeutics and diagnostics, as well as discussions of regulatory, social, ethical and policy aspects. We provide a forum to bring together academic and clinical researchers, biotechnology, diagnostic and pharmaceutical companies, health professionals, regulatory and ethical experts, and government and regulatory authorities.
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