Lee Justin J, Jacome Freddy P, Hiltzik David M, Pagadala Manasa S, Hsu Wellington K
Northwestern University, Simpson Querrey Institute (SQI), 808 N Cleveland Ave. 901, Chicago, IL, 60610, USA.
Department of Orthopedic Surgery, Northwestern University, Chicago, IL, USA.
Curr Rev Musculoskelet Med. 2024 Jul 14. doi: 10.1007/s12178-024-09912-z.
To summarize the history of titanium implants in spine fusion surgery and its evolution over time.
Titanium interbody cages used in spine fusion surgery have evolved from solid metal blocks to porous structures with varying shapes and sizes in order to provide stability while minimizing adverse side effects. Advancements in technology, especially 3D printing, have allowed for the creation of highly customizable spinal implants to fit patient specific needs. Recent evidence suggests that customizing shape and density of the implants may improve patient outcomes compared to current industry standards. Future work is warranted to determine the practical feasibility and long-term clinical outcomes of patients using 3D printed spine fusion implants. Outcomes in spine fusion surgery have improved greatly due to technological advancements. 3D printed spinal implants, in particular, may improve outcomes in patients undergoing spine fusion surgery when compared to current industry standards. Long term follow up and direct comparison between implant characteristics is required for the adoption of 3D printed implants as the standard of care.
总结钛植入物在脊柱融合手术中的历史及其随时间的演变。
用于脊柱融合手术的钛椎间融合器已从实心金属块发展为具有不同形状和尺寸的多孔结构,以便在将不良副作用降至最低的同时提供稳定性。技术进步,尤其是3D打印,使得能够制造高度可定制的脊柱植入物以满足患者的特定需求。最近的证据表明,与当前行业标准相比,定制植入物的形状和密度可能会改善患者的治疗效果。有必要开展未来工作以确定使用3D打印脊柱融合植入物的患者的实际可行性和长期临床结果。由于技术进步,脊柱融合手术的结果有了很大改善。特别是,与当前行业标准相比,3D打印脊柱植入物可能会改善接受脊柱融合手术患者的治疗效果。要将3D打印植入物作为护理标准采用,需要进行长期随访并对植入物特性进行直接比较。