Suppr超能文献

定制3D打印钛椎间融合器的进展及其在个性化脊柱护理中的意义。

Advancements in Custom 3D-Printed Titanium Interbody Spinal Fusion Cages and Their Relevance in Personalized Spine Care.

作者信息

Lewandrowski Kai-Uwe, Vira Shaleen, Elfar John C, Lorio Morgan P

机构信息

Center for Advanced Spine Care of Southern Arizona, Division Personalized Pain Research and Education, Tucson, AZ 85712, USA.

Department of Orthopaedics, Fundación Universitaria Sanitas Bogotá, Bogotá 111321, Colombia.

出版信息

J Pers Med. 2024 Jul 30;14(8):809. doi: 10.3390/jpm14080809.

Abstract

3D-printing technology has revolutionized spinal implant manufacturing, particularly in developing personalized and custom-fit titanium interbody fusion cages. These cages are pivotal in supporting inter-vertebral stability, promoting bone growth, and restoring spinal alignment. This article reviews the latest advancements in 3D-printed titanium interbody fusion cages, emphasizing their relevance in modern personalized surgical spine care protocols applied to common clinical scenarios. Furthermore, the authors review the various printing and post-printing processing technologies and discuss how engineering and design are deployed to tailor each type of implant to its patient-specific clinical application, highlighting how anatomical and biomechanical considerations impact their development and manufacturing processes to achieve optimum osteoinductive and osteoconductive properties. The article further examines the benefits of 3D printing, such as customizable geometry and porosity, that enhance osteointegration and mechanical compatibility, offering a leap forward in patient-specific solutions. The comparative analysis provided by the authors underscores the unique challenges and solutions in designing cervical, and lumbar spine implants, including load-bearing requirements and bioactivity with surrounding bony tissue to promote cell attachment. Additionally, the authors discuss the clinical outcomes associated with these implants, including the implications of improvements in surgical precision on patient outcomes. Lastly, they address strategies to overcome implementation challenges in healthcare facilities, which often resist new technology acquisitions due to perceived cost overruns and preconceived notions that hinder potential savings by providing customized surgical implants with the potential for lower complication and revision rates. This comprehensive review aims to provide insights into how modern 3D-printed titanium interbody fusion cages are made, explain quality standards, and how they may impact personalized surgical spine care.

摘要

3D打印技术彻底改变了脊柱植入物的制造方式,特别是在开发个性化和定制贴合的钛椎间融合器方面。这些融合器对于维持椎间稳定性、促进骨生长以及恢复脊柱排列至关重要。本文回顾了3D打印钛椎间融合器的最新进展,强调了它们在应用于常见临床场景的现代个性化脊柱手术护理方案中的相关性。此外,作者还回顾了各种打印和打印后处理技术,并讨论了如何通过工程和设计将每种植入物定制为适合特定患者的临床应用,突出了解剖学和生物力学因素如何影响其开发和制造过程,以实现最佳的骨诱导和骨传导性能。文章进一步探讨了3D打印的优势,如可定制的几何形状和孔隙率,这些优势增强了骨整合和机械兼容性,为个性化解决方案带来了飞跃。作者提供的比较分析强调了设计颈椎和腰椎植入物时的独特挑战和解决方案,包括承重要求以及与周围骨组织的生物活性以促进细胞附着。此外,作者还讨论了与这些植入物相关的临床结果,包括手术精度提高对患者结果的影响。最后,他们探讨了克服医疗机构实施挑战的策略,医疗机构往往因认为成本超支以及一些先入为主的观念而抵制新技术的采用,这些观念阻碍了通过提供具有降低并发症和翻修率潜力的定制手术植入物来实现潜在的成本节约。这篇全面的综述旨在深入了解现代3D打印钛椎间融合器的制造方式、解释质量标准以及它们如何影响个性化脊柱手术护理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f084/11355268/f9fdd723113e/jpm-14-00809-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验