打造更强壮的脊梁:3D 打印在治疗脊髓疾病中的作用。

Asian journal of neurosurgery Pub Date : 2024-09-03 eCollection Date: 2024-12-01 DOI:10.1055/s-0044-1788916
Arwa Jader, Barbara Buccilli, Danisha Kumar, Oday Atallah, Luqman Munir, Yasser F Almealawy, Michelle Ennabe, Neil Joshi, Urooj Imdad, Albert Alan, Martin Weinand
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摘要

脊髓损伤(SCI)带来了巨大挑战,因为完全的神经再生仍然有限。脊髓损伤治疗对改良技术的需求显而易见。三维打印(3DP)就是这样一种新兴技术,它与医学成像和生物工程的进步相结合,大大提高了外科手术的精确度。本系统性综述旨在探讨 3DP 作为 SCI 治疗方案的可能性,研究其成本、疗效、安全性以及相关的技术限制。我们通过 PubMed 对 Medline 进行了系统性检索,检索自 2019 年以来发表的文献。搜索结果被导出至 Rayyan,按照预定义标准进行摘要和全文筛选。采用 RoB2 工具和纽卡斯尔-渥太华量表对所选研究的偏倚风险进行了评估。在总共筛选出的 89 篇文章中,有 11 项研究符合资格标准,共对 237 名患有各种类型 SCI 的患者进行了评估,包括腰椎退变、胸腰椎转移瘤全切、成人脊柱畸形和颈椎退变。这些研究考察了手部矫形器、椎间融合笼、薄片钛笼、人工椎体等 3DP 设备的使用情况。大多数综述研究报告了积极的治疗效果,实际手术费用从 65 美元到 5,000 美元不等。最近的文献显示,3DP 技术在治疗 SCI 方面取得了积极成果,突显了其在加强手术和非手术干预方面的潜力。这些进步开创了 SCI 治疗的新时代,提供了更高的精确度和更广泛的治疗选择,最终实现了更全面、更有效的患者护理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Building a Stronger Backbone: 3D Printing's Role in Treating Spinal Cord Conditions.

Spinal cord injuries (SCIs) pose significant challenges as complete nerve regeneration remains limited. The demand for improved technologies in SCI treatment is evident. One such emerging technology is three-dimensional printing (3DP), which, coupled with advancements in medical imaging and bioengineering, has significantly enhanced precision in surgical procedures. This systematic review aims to explore 3DP as a treatment option for SCIs, examining its cost, efficacy, safety, and the associated technological constraints. A systematic search of Medline was conducted through PubMed for literature published since 2019. The search results were exported to Rayyan for abstract and full-text screening following predefined criteria. The risk of bias in the selected studies was assessed using the RoB2 tool and the Newcastle-Ottawa Scale. From a total of 89 articles screened, 11 studies met the eligibility criteria, collectively assessing 237 individuals with various types of SCIs, including lumbar degeneration, en bloc resection of thoracolumbar metastasis, adult spinal deformity, and cervical degeneration. These studies examined the utilization of 3DP devices such as hand orthosis, interbody fusion cages, lamellar titanium cages, artificial vertebral bodies, and others. Most of the reviewed studies reported positive treatment outcomes, with the actual procedure costs varying from $65 to $5,000. Recent literature shows positive outcomes in the use of 3DP technologies for SCIs, highlighting its potential for enhancing both surgical and nonsurgical interventions. These advancements usher in a new era in SCI treatment, providing enhanced precision and a wider range of treatment options, ultimately leading to more comprehensive and effective patient care.

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