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Comprehensive training in robotic surgery

机译:机器人手术综合培训

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Purpose of review Robotic training in urology can be poorly structured, lack a basic skills foundation, and may not include teaching in important nontechnical human factor skills vital to the safe delivery of robotic care. Assessment of acquired skills is not routine. There is a need for structured and standardized curricular to deliver validated training and final assessment. The present reviews the current literature on training methods for robotic surgery, and examines the evidence for their effect on performance, where available. Recent findings There is good evidence for the beneficial effect of dry lab simulators on robotic skills acquisition, but less for cadaveric and animal models. Two urological authorities have developed comprehensive curricula for robotic training that take a novice robotic surgeon through the full stages of robotic skills acquisition. These are in the early stages of development and validation but have stimulated the development of curricula in other specialties. Summary The future landscape for robotic urology training is likely to include structured, mandated, and centralized training, possibly administered by urological organizations. There will be roles for telementoring, advanced education for robotic trainers, and regular revalidation of expert robotic surgeons.
机译:审查泌尿外科的机器人训练的目的可能是不良的结构性,缺乏基本技能基础,并且可能不包括重要的非技术人类因子技能教学至关重要的机器人护理至关重要。评估获得技能不是常规的。需要结构化和标准化的课程,以提供验证的培训和最终评估。本介绍了当前关于机器人手术培训方法的文献,并在可用的情况下审查其对性能影响的证据。最近的调查结果是干燥实验室模拟器对机器人技能采集的有益效果的好的证据,但尸体和动物模型的较少。两位泌尿理由为机器人训练制定了全面的课程,通过机器人技能采集的全部阶段进行新手机器人外科医生。这些是发展和验证的早期阶段,但刺激了其他特色课程的发展。总结机器人泌尿外科培训的未来景观可能包括由泌尿外组织给药的结构化,授权和集中培训。将有角色为Telementing,高级教育机器人训练师,以及专家机器人外科医生的定期重新验证。

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