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新手机器人外科医生的当前培训现状:欧洲泌尿外科内镜学会青年分会/青年学术泌尿外科医生(YAU)泌尿外科机器人技术工作组的一项国际调查研究

Current training landscape for novice robotic surgeons: an international investigative survey by the Junior-ERUS/Young academic urologists (YAU) robotics in urology working group.

作者信息

Würnschimmel Christoph, Wenzel Mike, Moschovas Marcio Covas, Dell'Oglio Paolo, Paciotti Marco, Bravi Carlo Andrea, De Groote Ruben, Di Maida Fabrizio, Piramide Federico, Turri Filippo, Andras Iulia, Sorce Gabriele, Liakos Nikolaos, Breda Alberto, Larcher Alessandro

机构信息

Department of Urology, Luzerner Kantonsspital, Lucerne, Switzerland.

Faculty of Health Sciences and Medicine, University of Lucerne, Lucerne, Switzerland.

出版信息

World J Urol. 2025 Aug 1;43(1):467. doi: 10.1007/s00345-025-05845-5.

Abstract

INTRODUCTION

While robotic surgical training is crucial for preparing skilled surgeons, the landscape of available training programs is not well-defined. Many institutions offer structured curricula, yet transparency about training modalities, caseloads, and eligibility criteria for novice surgeons is limited. To address this gap, a structured survey was designed to assess robotic education offerings globally.

PATIENTS AND METHODS

A web-based survey was distributed to different robotic societies, institutions and dedicated robotic surgery experts, based on the Junior European Association of Urology Robotic Section (J-ERUS) network and the Young Academic Urologists (YAU) Robotic Section between February and September 2024. Furthermore, a peer-esteem snowballing approach allowed the survey to expand its reach through expert referrals. The survey captured information on training modalities, infrastructure, caseload, and case mix. Respondents were required to provide contact details for further follow-up, while their identities and institutions remained confidential.

RESULTS

The survey achieved a 16.5% response rate, with 80 respondents from 49 institutions confirming robotic training opportunities. Training platforms included Da Vinci multi-port systems (71%), HUGO-RAS (15%), and Versius (8%). Training methods featured simulators (89%), dual-console training (65%), dry-labs (39%), and wet-labs (16%). Variability in training structures was observed, with 32% of institutions offering dedicated fellowships and 68% combining training with clinical duties. Institutions varied in case volumes (100-500 cases per year), and 41% indicated performing over 500 robotic procedures annually. Respondents predominantly answered that robotic surgery novices may access about 20% of these cases.

CONCLUSION

This study highlights the heterogeneity of robotic surgical education and the need for standardized, globally accessible training frameworks. Establishing an international consortium to map training programs and content could enhance transparency and support novice surgeons in selecting institutions that align with their career goals. It is critical to integrate emerging robotic platforms and evolving methodologies into curricula to ensure comprehensive and effective training.

摘要

引言

虽然机器人手术培训对于培养熟练的外科医生至关重要,但现有的培训项目情况并不明确。许多机构提供结构化课程,但关于培训方式、病例数量以及新手外科医生的资格标准的透明度有限。为了填补这一空白,设计了一项结构化调查以评估全球范围内的机器人手术教育情况。

患者与方法

基于欧洲泌尿外科机器人分会青年组(J-ERUS)网络和青年学术泌尿外科医生(YAU)机器人分会,于2024年2月至9月期间向不同的机器人协会、机构和专门的机器人手术专家发放了一项基于网络的调查问卷。此外,一种同行推荐的滚雪球方法使调查能够通过专家推荐扩大覆盖范围。该调查收集了有关培训方式、基础设施、病例数量和病例组合的信息。受访者被要求提供进一步跟进的联系方式,而他们的身份和机构信息将予以保密。

结果

该调查的回复率为16.5%,来自49个机构的80名受访者确认了机器人手术培训机会。培训平台包括达芬奇多端口系统(71%)、HUGO-RAS(15%)和Versius(8%)。培训方法包括模拟器(89%)、双控制台培训(65%)、模拟实验室(39%)和实体实验室(16%)。观察到培训结构存在差异,32%的机构提供专门的进修项目,68%的机构将培训与临床工作相结合。各机构的病例数量不同(每年100 - 500例),41%的机构表示每年进行超过500例机器人手术。受访者主要回答说机器人手术新手可能接触到这些病例的约20%。

结论

本研究强调了机器人手术教育的异质性以及对标准化、全球可及的培训框架的需求。建立一个国际联盟来梳理培训项目和内容可以提高透明度,并帮助新手外科医生选择与他们职业目标相符的机构。将新兴的机器人平台和不断发展的方法纳入课程至关重要,以确保全面有效的培训。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b17a/12316765/b4bed19198e8/345_2025_5845_Fig1_HTML.jpg

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