BACKGROUND AND OBJECTIVES: Neurosurgical education requires innovative approaches to meet the demands of an evolving field and adequately train the next generation of surgeons. The Sonntag Virtual Reality Laboratory (SVRL) was established to transform neurosurgical education by harnessing immersive technologies such as virtual reality (VR), augmented reality (AR), and mixed reality (MR). Inspired by the legacy of Dr Volker K. H. Sonntag, the SVRL aims to enhance skill acquisition and knowledge retention through high-fidelity simulations, interactive anatomic modules, and advanced spine procedure training. METHODS: A multidisciplinary team of neurosurgeons, medical educators, and technology experts collaborated to align SVRL development with core educational goals. The initial phase focused on curriculum design and assessment metrics, followed by the creation of customized VR, AR, and MR modules targeting essential neurosurgical procedures and concepts. All of these modules underwent iterative testing and refinement to ensure educational value and clinical relevance. RESULTS: The SVRL has produced innovative applications, including a VR-based freehand pedicle screw placement application, an MR scoliosis module, an ultrarapid artificial intelligence–driven spine model, and a comprehensive VR pathology library. Trainee feedback has been positive, citing improvements in decision-making, technical proficiency, and conceptual understanding. Engagement with SVRL tools has been associated with an increased interest in neurosurgical topics and enhanced learner confidence. CONCLUSION: The SVRL represents a forward-thinking approach to neurosurgical training. By offering immersive, scalable, and globally accessible educational experiences, the SVRL breaks down traditional learning barriers. Its early success highlights the potential to reshape surgical education and improve the preparedness of future neurosurgeons worldwide.
Giraldo et al. (Wed,) studied this question.