Bykanov Andrey, Kiryushin Maxim, Trube Maxim, Rastvorova Olga, Ilia Chernov, Pitskhelauri David
Department of Neurooncology, N.N. Burdenko National Scientific and Practical Center for Neurosurgery, Moscow, Russian Federation.
Peoples Friendship University of Russia, Moscow, Russian Federation.
Surg Neurol Int. 2024 Jul 5;15:227. doi: 10.25259/SNI_271_2024. eCollection 2024.
The spatial accuracy of microsurgical manipulations is one of the critical factors in successful surgical interventions. The purpose of this study was to create a low-cost, high-fidelity, and easy-to-use simulator for microsurgical skills training, which can be made by residents themselves at home.
In response to the COVID-19 pandemic, we created a device for spatial accuracy microsurgical skills training and implemented it in our resident's training program. We propose a design for basic and advanced models. The simulator consisted of commonly available products.
A low-cost, durable, and high-fidelity basic model has been developed at a total cost of <10 dollars per unit. The model allows trainees to practice the critical microsurgical skills of tool targeting in a home-based setting.
The developed device can be assembled at an affordable price using commercially available materials. Such simulation models can provide valuable training opportunities for microsurgery residents.
显微外科手术操作的空间精度是成功进行手术干预的关键因素之一。本研究的目的是创建一种低成本、高保真且易于使用的显微外科技能训练模拟器,住院医师可以在家自行制作。
为应对新冠疫情,我们创建了一种用于空间精度显微外科技能训练的设备,并在住院医师培训项目中实施。我们提出了基础模型和高级模型的设计方案。该模拟器由常见产品组成。
已开发出一种低成本、耐用且高保真的基础模型,每单位总成本低于10美元。该模型允许学员在家庭环境中练习工具靶向这一关键的显微外科技能。
所开发的设备可以使用市售材料以可承受的价格组装而成。这种模拟模型可以为显微外科住院医师提供宝贵的培训机会。