Byvaltsev V A, Belykh E G, Konovalov N A
Irkutsk Scientific Center of Surgery and Traumatology; Irkutsk Railway Clinical Hospital, Irkutsk, Russia; State Medical University, Irkutsk, Russia; Irkutsk State Medical Academy of Continuing Education, Irkutsk, Russia.
Irkutsk Scientific Center of Surgery and Traumatology.
Zh Vopr Neirokhir Im N N Burdenko. 2016;80(2):102-107. doi: 10.17116/neiro2016802102-107.
The article presents a literature review on the current state of simulation technologies in neurosurgery, a brief description of the basic technology and the classification of simulation models, and examples of simulation models and skills simulators used in neurosurgery. Basic models for the development of physical skills, the spectrum of available computer virtual simulators, and their main characteristics are described. It would be instructive to include microneurosurgical training and a cadaver course of neurosurgical approaches in neurosurgery training programs and to extend the use of three-dimensional imaging. Technologies for producing three-dimensional anatomical models and patient-specific computer simulators as well as improvement of tactile feedback systems and display quality of virtual models are promising areas. Continued professional education necessitates further research for assessing the validity and practical use of simulators and physical models.
本文对神经外科模拟技术的现状进行了文献综述,简要描述了基本技术和模拟模型的分类,并列举了神经外科中使用的模拟模型和技能模拟器的实例。描述了身体技能发展的基本模型、可用计算机虚拟模拟器的范围及其主要特点。在神经外科培训项目中纳入显微神经外科培训和神经外科手术入路的尸体课程,并扩大三维成像的应用,将具有指导意义。制作三维解剖模型和患者特异性计算机模拟器的技术,以及触觉反馈系统和虚拟模型显示质量的改进,都是很有前景的领域。持续的专业教育需要进一步研究,以评估模拟器和物理模型的有效性和实际用途。