Department of Surgery, Austin Health, University of Melbourne, 145 Studley Road, Heidelberg, Melbourne, VIC, 3084, Australia.
Young Urology Researchers Organisation (YURO), Melbourne, Australia.
J Robot Surg. 2023 Feb;17(1):1-10. doi: 10.1007/s11701-022-01401-0. Epub 2022 Mar 29.
Precise knowledge of each patient's index cancer and surrounding anatomy is required for nerve-sparing robot-assisted radical prostatectomy (NS-RARP). Complementary to this, 3D printing has proven its utility in improving the visualisation of complex anatomy. This is the first systematic review to critically assess the potential of 3D printed patient-specific prostate cancer models in improving visualisation and the practice of NS-RARP. A literature search of PubMed and OVID Medline databases was performed using the terms "3D Printing", "Robot Assisted Radical Prostatectomy" and related index terms as per the Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA) guidelines. Eight articles were included; six were identified via database searches, to which a further two articles were located via a snowballing approach. Eight papers were identified for review. There were five prospective single centre studies, one case series, one technical report and one letter to the editor. Of these articles, five publications (62.5%) reported on the utility of 3D printed models for NS-RARP planning. Two publications (25%) utilised 3D printed prostate models for simulation and training, and two publications (25%) used the models for patient engagement. Despite the nascency of the field, 3D printed models are emerging in the uro-oncological literature as a useful tool in visualising complex anatomy. This has proven useful in NS-RARP for preoperative planning, simulation and patient engagement. However, best practice guidelines, the future regulatory landscape, and health economic considerations need to be addressed before this synergy of new technologies is ready for the mainstream.
精准了解每位患者的癌症指标和周围解剖结构是进行神经保留机器人辅助根治性前列腺切除术(NS-RARP)的必要条件。此外,3D 打印已被证明在提高复杂解剖结构的可视化方面具有实用价值。这是首次对 3D 打印患者特定前列腺癌模型在提高 NS-RARP 可视化和实践效果方面的潜力进行系统评估的综述。根据系统评价和荟萃分析的首选报告项目(PRISMA)指南,我们在 PubMed 和 OVID Medline 数据库中使用了“3D 打印”、“机器人辅助根治性前列腺切除术”和相关索引术语进行文献检索。共纳入 8 篇文章,其中 6 篇通过数据库检索确定,另外 2 篇通过滚雪球方法找到。共纳入 8 篇文章进行综述。其中包括 5 项前瞻性单中心研究、1 项病例系列研究、1 项技术报告和 1 篇给编辑的信。在这些文章中,有 5 篇(62.5%)报道了 3D 打印模型在 NS-RARP 规划中的应用价值。有 2 篇(25%)出版物利用 3D 打印前列腺模型进行模拟和培训,2 篇(25%)出版物利用模型进行患者参与。尽管该领域尚处于起步阶段,但 3D 打印模型在泌尿肿瘤学文献中已作为一种可视化复杂解剖结构的有用工具而出现。这在 NS-RARP 术前规划、模拟和患者参与方面非常有用。然而,在这项新技术的协同作用准备好面向主流之前,需要制定最佳实践指南、未来的监管环境和健康经济考虑因素。