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March 21, 2026Annals of Diagnostic Pathology0 citationsOpen Access

Artificial intelligence-enhanced virtual reality for pathology education

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ZKZaid H. KhouryGDGerald E. DavisASAhmed S. Sultan

Key Points

  • This research aims to explore the application of virtual reality to improve pathology education for medical students and residents.
  • Examined the use of an immersive VR environment for teaching pathology
  • Focused on first-year residents and predoctoral medical students
  • Integrated histology, imaging, and clinical-pathologic correlation
  • Utilized collaboration and simulation for case teaching
  • Artificial intelligence-enhanced VR significantly improved learner engagement
  • Immersive experiences led to better knowledge retention
  • Initial applications in head and neck pathology show promise for broader use

Abstract

The implementation of innovative active learning pedagogies in education enhances students' engagement and information retention compared to traditional passive learning. An immersive virtual environment, operated through head-mounted displays or headsets, enables learners to deeply engage with simulated scenarios fostering an interactive experience. While extended reality (XR) technologies such as virtual reality (VR), augmented reality (AR), and mixed reality (MR) have demonstrated significant potential to enhance learner engagement and knowledge retention through immersive and interactive environments, their application remains underexplored in pathology education. This gap is problematic because pathology teaching relies heavily on linking microscopic pathology with clinical and radiographic manifestations-a process that benefits from spatial and integrative visualization. Without immersive tools such as VR, the newest generation of learners may struggle to connect these multi-dimensional facets of disease. This article explores an innovative VR room architecture for pathology education providing a vivid and immersive learning environment tailored for first year pathology residents and predoctoral medical students. • Artificial intelligence-enhanced VR can expand pathology education • VR integrates histology, imaging, and clinicopathologic correlation • Immersive case review may improve engagement and knowledge retention • The platform enables collaborative and simulation-based case teaching • Head and neck pathology as demonstrated is a strong initial use case for this model

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Cite This Study

Khoury et al. (2026) studied this question.

synapsesocial.com/papers/69be34f26e48c4981c6730ffhttps://doi.org/10.1016/j.anndiagpath.2026.152639
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