Published on in Vol 20, No 6 (2018): June

Preprints (earlier versions) of this paper are available at https://preprints.jmir.org/preprint/10332, first published .
Using a Virtual Reality Social Network During Awake Craniotomy to Map Social Cognition: Prospective Trial

Using a Virtual Reality Social Network During Awake Craniotomy to Map Social Cognition: Prospective Trial

Using a Virtual Reality Social Network During Awake Craniotomy to Map Social Cognition: Prospective Trial

Journals

  1. Bernard F, Richard P, Kahn A, Fournier H. Does 3D stereoscopy support anatomical education?. Surgical and Radiologic Anatomy 2020;42(7):843 View
  2. Bernard F, Gallet C, Fournier H, Laccoureye L, Roche P, Troude L. Toward the development of 3-dimensional virtual reality video tutorials in the French neurosurgical residency program. Example of the combined petrosal approach in the French College of Neurosurgery. Neurochirurgie 2019;65(4):152 View
  3. Delion M, Klinger E, Bernard F, Aubin G, Minassian A, Menei P. Immersing Patients in a Virtual Reality Environment for Brain Mapping During Awake Surgery: Safety Study. World Neurosurgery 2020;134:e937 View
  4. Bernard F, Lemee J, Mazerand E, Leiber L, Menei P, Ter Minassian A. The ventral attention network: the mirror of the language network in the right brain hemisphere. Journal of Anatomy 2020;237(4):632 View
  5. Lemée J, Bernard F, Ter Minassian A, Menei P. Right Hemisphere Cognitive Functions: From Clinical and Anatomical Bases to Brain Mapping During Awake Craniotomy. Part II: Neuropsychological Tasks and Brain Mapping. World Neurosurgery 2018;118:360 View
  6. Foster C, Morone P, Cohen-Gadol A. Awake craniotomy in glioma surgery: is it necessary?. Journal of Neurosurgical Sciences 2019;63(2) View
  7. Drane D, Pedersen N, Sabsevitz D, Block C, Dickey A, Alwaki A, Kheder A. Cognitive and Emotional Mapping With SEEG. Frontiers in Neurology 2021;12 View
  8. Casanova M, Clavreul A, Soulard G, Delion M, Aubin G, Ter Minassian A, Seguier R, Menei P. Immersive Virtual Reality and Ocular Tracking for Brain Mapping During Awake Surgery: Prospective Evaluation Study. Journal of Medical Internet Research 2021;23(3):e24373 View
  9. Katsevman G, Greenleaf W, García-García R, Perea M, Ladera V, Sherman J, Rodríguez G. Virtual Reality During Brain Mapping for Awake-Patient Brain Tumor Surgery: Proposed Tasks and Domains to Test. World Neurosurgery 2021;152:e462 View
  10. Zablah J, Rodriguez S, Leahy R, Morgan G. Implementation of virtual reality for patient distraction during diagnostic cardiac catheterisation. Cardiology in the Young 2022;32(2):323 View
  11. Bernard F, Clavreul A, Casanova M, Besnard J, Lemée J, Soulard G, Séguier R, Menei P. Virtual Reality-Assisted Awake Craniotomy: A Retrospective Study. Cancers 2023;15(3):949 View
  12. Bernard F, Bijlenga P. Defining Anatomic Roadmaps for Neurosurgery with Mixed and Augmented Reality. World Neurosurgery 2022;157:233 View
  13. Gallet C, Clavreul A, Bernard F, Menei P, Lemée J. Frontal aslant tract in the non-dominant hemisphere: A systematic review of anatomy, functions, and surgical applications. Frontiers in Neuroanatomy 2022;16 View
  14. Dincelli E, Yayla A. Immersive virtual reality in the age of the Metaverse: A hybrid-narrative review based on the technology affordance perspective. The Journal of Strategic Information Systems 2022;31(2):101717 View
  15. McLean E, Cornwell M, Bender H, Sacks-Zimmerman A, Mandelbaum S, Koay J, Raja N, Kohn A, Meli G, Spat-Lemus J. Innovations in Neuropsychology: Future Applications in Neurosurgical Patient Care. World Neurosurgery 2023;170:286 View
  16. Haddad A, Aghi M, Butowski N. Novel intraoperative strategies for enhancing tumor control: Future directions. Neuro-Oncology 2022;24(Supplement_6):S25 View
  17. Dadario N, Quinoa T, Khatri D, Boockvar J, Langer D, D'Amico R. Examining the benefits of extended reality in neurosurgery: A systematic review. Journal of Clinical Neuroscience 2021;94:41 View
  18. Mofatteh M, Mashayekhi M, Arfaie S, Chen Y, Mirza A, Fares J, Bandyopadhyay S, Henich E, Liao X, Bernstein M. Augmented and virtual reality usage in awake craniotomy: a systematic review. Neurosurgical Review 2022;46(1) View
  19. Mishra R, Narayanan M, Umana G, Montemurro N, Chaurasia B, Deora H. Virtual Reality in Neurosurgery: Beyond Neurosurgical Planning. International Journal of Environmental Research and Public Health 2022;19(3):1719 View
  20. Xuan H, Zhong J, Wang X, Song Y, Shen R, Liu Y, Zhang S, Cai J, Liu M. GRAVEN: a database of teaching method that applies gestures to represent the neurosurgical approach’s blood vessels and nerves. BMC Medical Education 2024;24(1) View
  21. Veljanoski D, Ng X, Hill C, Jamjoom A. Theory and evidence-base for a digital platform for the delivery of language tests during awake craniotomy and collaborative brain mapping. BMJ Surgery, Interventions, & Health Technologies 2024;6(1):e000234 View
  22. Roudenský P, Horský J. Current practice and future use of virtual reality in neuroscience and neurology. Neurologie pro praxi 2024;25(4):310 View

Books/Policy Documents

  1. John B, Wickramasinghe N. Delivering Superior Health and Wellness Management with IoT and Analytics. View
  2. Menei P, Clavreul A, Casanova M, Colle D, Colle H. Intraoperative Mapping of Cognitive Networks. View
  3. Patel N, Hofmann K, Keating R. Advances and Technical Standards in Neurosurgery. View