Virtual Reality in Neurosurgery- A Neurostimulator – Based Postgraduate Residency Training: A Novel Step Towards Skillful Young Neurosurgeons

Usman Ahmad Kamboh, Sidra Abid, Sana Ullah, Mehwish Manzoor, Kashif Sultan, Mehreen Mehboob et al
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Abstract

Introduction/Objective:  Virtual Reality (VR) is the need of time in every field of life. Recent biotechnological advances have molded the surgeon-computer relationship. Department of Neurosurgery Jinnah Hospital Lahore has updated the postgraduate training program by adding the virtual reality simulator. We aim to explore the current and future roles and applications of VR and simulation in neurosurgical training that may reduce the learning curve, improve conceptual understanding and enhance visuospatial skills. Materials & Methods:  Eight residents were enrolled in this program. They exercised the basic skills of neurosurgery e.g. suction, use of bipolar cautery, handling of CUSA, use of micro scissors, etc., and the automated software recorded each participant’s graph of performance separately. After 1.5 years, they were assessed in real-time on actual patients under the direct supervision of a qualified neurosurgeon. The assessment was done on DOPS (Directly Observed Procedural Skills) Performa. Results:  The results showed that there was a gradual upward learning curve in simulator-based procedures from negative marking to 70% in basic surgical skills and 60% in advanced procedures on average for all the residents whereas the DOPS showed that all residents performed above expectation i.e., 4 or above. Conclusion:  Neurostimulator-based postgraduate training program is opening new horizons for the safe and skillful training of residents. With the advancement of artificial intelligence, its use in training programs will lead to structured and systematic training patterns in the world of neurosurgery.
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神经外科中的虚拟现实-基于神经刺激器的研究生住院医师培训:迈向熟练的年轻神经外科医生的新一步
简介/目标:虚拟现实(VR)是生活各个领域的需求。最近生物技术的进步塑造了外科医生和计算机之间的关系。拉合尔真纳医院神经外科通过添加虚拟现实模拟器更新了研究生培训计划。我们的目标是探索虚拟现实和模拟在神经外科训练中的作用和应用,以减少学习曲线,提高概念理解和增强视觉空间技能。材料与方法:8名住院医师入选本项目。他们练习了神经外科的基本技能,如抽吸、使用双极烧灼、处理CUSA、使用微型剪刀等,自动化软件分别记录了每个参与者的表现图表。1年半后,他们在一名合格的神经外科医生的直接监督下对实际患者进行实时评估。对DOPS(直接观察程序技能)进行评估。结果:结果显示,在基于模拟器的手术中,所有住院医生的基本手术技能平均得分从负分上升到70%,在高级手术中平均得分为60%,而DOPS显示所有住院医生的表现都高于预期,即4分或以上。结论:基于神经刺激器的研究生培训项目为住院医师安全、熟练的培训开辟了新的视野。随着人工智能的进步,人工智能在训练项目中的应用将导致神经外科领域结构化和系统化的训练模式。
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