J. Ong, Nicole V. Carrabba, E. Waisberg, Nasif Zaman, Hamza Memon, Nicholas Panzo, Virginia A. Lee, Prithul Sarker, Ashtyn Z Vogt, Noor Laylani, Alireza Tavakkoli, Andrew G. Lee
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Virtual reality technology may also be able to help optimize understandings of specific neuro-ophthalmic principles and simulate real-life gameplay. Personal communication between authors and NFL officials and leadership have indicated that there is high interest in 3D virtual on-field training for NFL officiating. In this manuscript, we review the current and past research in this space regarding a neuro-ophthalmic curriculum for NFL officials. We then provide an overview our current visualization engineering process in taking real-life NFL gameplay 2D data and creating 3D environments for virtual reality gameplay training for football officials to practice plays that highlight neuro-ophthalmic principles. 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引用次数: 0
摘要
对于全美橄榄球联盟(NFL)的比赛官员来说,在场上做出瞬间决定的能力至关重要。视觉功能的多项原则对这些比赛判罚的准确性和精确性至关重要,包括眼窝时间和无障碍视线、静态视敏度、动态视敏度、前庭眼反射和足够的视野。先前的研究表明,这些神经眼科原理的标准化课程已经证明了其有效性,并且 NFL 比赛官员在理解、信心和未来使用的可能性方面都有了自我评价的提高,从而在裁判工作中最大限度地提高视觉表现。虚拟现实技术也可能有助于优化对特定神经眼科原理的理解,并模拟现实生活中的比赛。作者与 NFL 官员和领导之间的个人交流表明,NFL 裁判员对 3D 虚拟赛场训练兴趣浓厚。在本手稿中,我们回顾了当前和过去在该领域针对 NFL 裁判的神经眼科课程研究。然后,我们概述了我们当前的可视化工程流程,即采用真实的 NFL 比赛 2D 数据并创建 3D 环境,用于虚拟现实比赛训练,让橄榄球官员练习突出神经眼科原理的比赛。然后,我们深入回顾了这些原理背后的生理学,并讨论了将这些原理应用到虚拟现实足球裁判中的策略。
Dynamic Visual Acuity, Vestibulo-Ocular Reflex, and Visual Field in National Football League (NFL) Officiating: Physiology and Visualization Engineering for 3D Virtual On-Field Training
The ability to make on-field, split-second decisions is critical for National Football League (NFL) game officials. Multiple principles in visual function are critical for accuracy and precision of these play calls, including foveation time and unobstructed line of sight, static visual acuity, dynamic visual acuity, vestibulo-ocular reflex, and sufficient visual field. Prior research has shown that a standardized curriculum in these neuro-ophthalmic principles have demonstrated validity and self-rated improvements in understanding, confidence, and likelihood of future utilization by NFL game officials to maximize visual performance during officiating. Virtual reality technology may also be able to help optimize understandings of specific neuro-ophthalmic principles and simulate real-life gameplay. Personal communication between authors and NFL officials and leadership have indicated that there is high interest in 3D virtual on-field training for NFL officiating. In this manuscript, we review the current and past research in this space regarding a neuro-ophthalmic curriculum for NFL officials. We then provide an overview our current visualization engineering process in taking real-life NFL gameplay 2D data and creating 3D environments for virtual reality gameplay training for football officials to practice plays that highlight neuro-ophthalmic principles. We then review in-depth the physiology behind these principles and discuss strategies to implement these principles into virtual reality for football officiating.