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The Virtual Vision of Neurosurgery: How Augmented Reality and Virtual Reality are Transforming the Neurosurgical Operating Room

期刊

WORLD NEUROSURGERY
卷 168, 期 -, 页码 190-201

出版社

ELSEVIER SCIENCE INC
DOI: 10.1016/J.WNEu.2022.10.002

关键词

Augmented reality; Degenerative disease; Spinal surgery; Spine; Technology; Virtual reality

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In this literature review, the application of virtual reality (VR) and augmented reality (AR) in neurosurgical care is examined. The review highlights the technological features, indications, outcomes, limitations, and cost-effectiveness differences between VR and AR systems. Further studies are needed to understand the nuances between the technological advances of these systems in order to fully utilize their potential in neurosurgical patient care.
-BACKGROUND: In this era of imagination and technological innovation, mixed reality systems such as virtual reality (VR) and augmented reality (AR) are contributing to a wide array of neurosurgical care, from the betterment of sur-gical planning and surgical comfort to novel treatments and improved resident education. These systems can augment procedures that require high-level dexterity such as minimally invasive surgery and tumor excisions, as well as peripheral and neurovascular surgery. We define and compare the technological features, indications, and characterized outcomes of VR and AR systems in the context of neurosurgery through a review of the literature to date. Moreover, this review discusses the limitations of VR and AR and includes an overview of the cost-effectiveness of each of these systems. -METHODS: An extensive review of the literature on AR and VR was per-formed using PubMed, OVID Medline, and Embase from January 1, 2006 to April 2, 2022. Terms used for the search included AR, spinal surgery, VR, and neurosurgery.-RESULTS: The search yielded full-text English languageerelated articles regarding VR and AR application, limitations, and functional outcomes in neurosurgery. An initial set of 121 studies were screened and reviewed for content. Thirteen studies were included, which involved 162 patients, 550 screw placements, 58 phantom spines, and learning points from simulation training of 276 involved residents.-CONCLUSIONS: This literature review examines recent research into VR and AR applications in neurosurgical care. The literature establishes that there are technological features, indications, outcomes, limitations, and cost-effectiveness differences between these systems. Based on ongoing and evolving applications of the VR and AR systems, the innovative potential that they make available to the future of neurosurgical patient care makes clear the need for further studies to understand the nuances between their differing technological advances.

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