Operative practice using surgical simulators has become a part of training in many surgical specialties, including ophthalmology. We introduce a virtual reality retina surgery simulator capable of integrating optical coherence tomography (OCT) scans from real patients for practicing vitreoretinal surgery using different pathologic scenarios.
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http://dx.doi.org/10.2147/OPTH.S58614 | DOI Listing |
J Rehabil Med
January 2025
Clinic of Medical Rehabilitation, Medical University of Lodz, Lodz, Poland.
Objective: The aim of this study is to evaluate the effectiveness of immersive technologies in the rehabilitation of patients with non-specific neck pain and identify any potential side effects associated with their use.
Design: Systematic review.
Subjects/patients: Individuals with non-specific neck pain.
BMJ Oncol
December 2023
Marie Curie Palliative Care Research Department, Division of Psychiatry, UCL, London, UK.
Objective: The 'Godrevy Project' is an interventional trial designed to determine the effectiveness of immersive virtual reality (VR) on the holistic symptom control and well-being in oncology and palliative care patients. The primary objective of this study was to determine whether VR changed the revised Edmonton Symptom and Assessment System (ESAS-r) score representing an effective improvement in symptom control and well-being.
Methods And Analysis: This study reports on 60 participants recruited from hospital inpatient oncology and palliative care lists, to participate in an unblinded, VR intervention.
Surg Open Sci
August 2024
Department of Orthopedics, Saarland University, Kirrberger Straße 100, 66421 Homburg, Saarland, Germany.
Objectives: Advancements in technology have spurred a transformative shift in medical education, with virtual reality (VR) emerging as a powerful tool for enhancing the learning experience. This study analyses the publications of VR in medical education, focusing on differences within different medical specialties.
Design: Using specific search terms, all studies published on VR in medical education listed in the Web of Science databases were included.
J Neural Eng
January 2025
The University of Chicago Biological Sciences Division, Department of Organismal Biology & Anatomy, Chicago, Illinois, 60637, UNITED STATES.
Objective: As brain-computer interface (BCI) research advances, many new applications are being developed. Tasks can be performed in different virtual environments, and whether a BCI user can switch environments seamlessly will influence the ultimate utility of a clinical device. Approach: Here we investigate the importance of the immersiveness of the virtual environment used to train BCI decoders on the resulting decoder and its generalizability between environments.
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