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Development of VIPER: a simulator for assessing VIsion PERformance of warfighters

机译:VIPER的开发:用于评估战士视觉性能的模拟器

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摘要

Background: When evaluating vision, it is important to assess not just the ability to read letters on a vision chart, but also how well one sees in real life scenarios. As part of the Warfighter Refractive Eye Surgery Program (WRESP), visual outcomes are assessed before and after refractive surgery. A Warfighter's ability to read signs and detect and identify objects is crucial, not only when deployed in a military setting, but also in their civilian lives. Objective: VIPER, a Vision PERformance simulator was envisioned as actual video-based simulated driving to test warfighters' functional vision under realistic conditions. Designed to use interactive video image controlled environments at daytime, dusk, night, and with thermal imaging vision, it simulates the experience of viewing and identifying road signs and other objects while driving. We hypothesize that VIPER will facilitate efficient and quantifiable assessment of changes in vision and measurement of functional military performance. Study Design: Video images were recorded on an isolated 1.1 mile stretch of road with separate target sets of six simulated road signs and six objects of military interest, separately. The video footage were integrated with custom-designed C++ based software that presented the simulated drive to an observer on a computer monitor at 10, 20 or 30 miles/hour. VIPER permits the observer to indicate when a target is seen and when it is identified. Distances at which the observer recognizes and identifies targets are automatically logged. Errors in recognition and identification are also recorded. This first report describes VIPER's development and a preliminary study to establish a baseline for its performance. In the study, nine soldiers viewed simulations at 10 miles/hour and 30 miles/hour, run in randomized order for each participant seated at 36 inches from the monitor. Relevance: Ultimately, patients are interested in how their vision will affect their ability to perform daily activities. In the military context, in addition to reading road signs, this includes vision with night sensors and identification of objects of military interest. Once completed and validated, VIPER will be used to evaluate functional performance before and after refractive surgery. Results: This initial study was to prove the principle, and its results at the time of this publication were very preliminary. Nine Soldiers viewed visible-day and IR-day VIPER simulations with civilian and military targets, separately, at 10 and 30 miles/hour. Analyses were performed separately for visible and IR, and also aggregated. Only the civilian targets are discussed in this report. At 10 miles/hour, the population detected civilian road signs at an aggregated average of 90.11 ± 64.20 m, and identified them at 26.93 ± 22.27m. At 30 miles/hour, the corresponding distances were 103.03 ± 58.81 and 26.26 ± 8.55, respectively. Conclusion: This preliminary report proves the principle and suggests that VIPER could be a useful clinical tool in longitudinal assessment of functional vision in warfighters.
机译:背景:评估视力时,不仅要评估在视力表上阅读字母的能力,而且还要评估人们在现实生活中的视觉效果,这一点很重要。作为Warfighter屈光眼手术计划(WRESP)的一部分,在屈光手术之前和之后评估视觉效果。作战人员的阅读标志,检测和识别物体的能力至关重要,这不仅在军事环境中部署,而且在平民生活中也是如此。目标:VIPER(一种视觉性能模拟器)被设想为基于视频的实际模拟驾驶,以在现实条件下测试战士的功能性视觉。设计用于在白天,黄昏,夜晚以及具有热成像视觉的交互式视频图像控制的环境,它模拟了驾驶时查看和识别道路标志及其他物体的体验。我们假设VIPER将有助于对视觉变化和功能性军事绩效评估进行有效且可量化的评估。研究设计:在孤立的1.1英里长的道路上录制视频图像,并分别设置了六个模拟路标和六个军事目的物体的目标集。录像与定制设计的基于C ++的软件集成在一起,该软件以10、20或30英里/小时的速度向计算机显示器上的观察者展示模拟驱动器。 VIPER允许观察者指出何时看到目标以及何时识别目标。观察者识别和识别目标的距离会自动记录下来。识别和识别错误也会被记录。这份第一份报告描述了VIPER的发展情况,并进行了初步研究以建立其性能基准。在研究中,有9名士兵以10英里/小时和30英里/小时的速度观看了模拟,并以随机顺序对坐在距显示器36英寸处的每个参与者进行了模拟。相关性:最终,患者对他们的视力将如何影响他们进行日常活动的能力感兴趣。在军事环境中,除了阅读路标外,还包括带有夜间传感器的视线以及对军事目标的识别。一旦完成并通过验证,VIPER将用于评估屈光手术前后的功能性能。结果:这项初步研究旨在证明其原理,并且在本出版物发行之时其结果还非常初步。九名士兵分别以每小时10英里和30英里的速度观看了民用和军事目标的可见日和红外日VIPER模拟。分别对可见光和IR进行分析,并进行汇总。本报告仅讨论平民目标。居民以10英里/小时的速度检测到民用道路标志,平均总水平为90.11±64.20 m,发现为26.93±22.27m。以30英里/小时的速度,相应的距离分别为103.03±58.81和26.26±8.55。结论:这份初步报告证明了这一原理,并表明VIPER可能是纵向评估作战人员功能性视力的有用临床工具。

著录项

  • 来源
  • 会议地点 Baltimore MD(US)
  • 作者单位

    US Army RDECOM, Communications-Electronics Research Development Engineering Center Night Vision and Electronic Sensors;

    US Army RDECOM, Communications-Electronics Research Development Engineering Center Night Vision and Electronic Sensors;

    US Army RDECOM, Communications-Electronics Research Development Engineering Center Night Vision and Electronic Sensors;

    US Army RDECOM, Communications-Electronics Research Development Engineering Center Night Vision and Electronic Sensors;

    US Army RDECOM, Communications-Electronics Research Development Engineering Center Night Vision and Electronic Sensors;

    US Army RDECOM, Communications-Electronics Research Development Engineering Center Night Vision and Electronic Sensors;

    US Army RDECOM, Communications-Electronics Research Development Engineering Center Night Vision and Electronic Sensors;

    Warfighters Refractory Eye Surgery Program, Fort Belvoir Community Hospital Fort Belvoir, VA 22060;

    Warfighters Refractory Eye Surgery Program, Fort Belvoir Community Hospital Fort Belvoir, VA 22060;

    Warfighters Refractory Eye Surgery Program, Fort Belvoir Community Hospital Fort Belvoir, VA 22060;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    detection; human perception; limited time search; modeling;

    机译:检测;人类的感知;限时搜索;造型;

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