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Developing and Validating Virtual Reality Tool for the Evaluation of Cognitive and Physical Performance During Simulated lengthy field March

机译:开发和验证虚拟现实工具,用于评估长时间模拟的认知和身体表现

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Athletes, soldiers, and rescue personnel are often required to perform intensive and prolonged physically demanding activities while remaining cognitively focused. The combined effect of physical and cognitive tasks is of great interest, as both efforts share central nervous system reserves. Amid a larger study that is aimed to create an ecologically validated virtual reality (VR) - based experimental protocol to explore the effect of high-load physical and cognitive efforts on young individuals, the present report focuses on comparing new cognitive tasks presented in the context of simulated military missions with physical load to already established cognitive testing battery. Twelve young participants performed a 10 Km loaded march on a treadmill in VR settings with or without additional cognitive tasks (VR-COG). Each experimental day, subjects underwent pre-and post-evaluation, in which cognitive (trail making test - the color trail test CTT version, and SYNWIN battery for multitasking evaluation) and physical tests (time to exhaustion test - TTE) were conducted. In general, strong or moderate correlations were found between VR-COG performances and the cognitive tests. The VR-COG tasks, together with CTT components, were able to successfully predict the effect of the combined physical and cognitive load on the multitasking performance. Multitasking was evaluated by the SYNWIN score. We believe that our protocol allows optimal conditions for measurement of the effect of high-load physical and cognitive efforts for an extended period of time, thus contributing to the motor-cognitive interaction model knowledge base. It is apparent that virtual environments are ideal set ups for studying military activities, as they enable the participants to experience a particular situation within a controlled area.
机译:经常要求运动员,士兵和救援人员进行密集而长时间的体力活动,同时保持认知重点。身体和认知任务的综合作用引起了极大的兴趣,因为这两种努力共享中枢神经系统的储备。在一项旨在创建基于生态验证的虚拟现实(VR)的实验协议的较大研究中,该研究协议旨在探索高负荷的身体和认知努力对年轻人的影响,本报告着重于比较背景下提出的新认知任务物理负载的模拟军事任务对已经建立的认知测试小组的支持。 12名年轻参与者在带有或不带有其他认知任务(VR-COG)的VR环境中,在跑步机上进行了10公里的行进。在每个实验日,对受试者进行评估前和评估后,进行认知(追踪测试-颜色追踪测试CTT版本,以及用于多任务评估的SYNWIN电池)和物理测试(至疲惫时间测试-TTE)。通常,在VR-COG表现与认知测验之间发现强或中度相关性。 VR-COG任务与CTT组件一起能够成功预测身体和认知负荷组合对多任务性能的影响。通过SYNWIN评分评估多任务处理。我们相信,我们的协议可以为长时间内测量高负荷身体和认知努力的效果提供最佳条件,从而为运动认知互动模型知识库做出了贡献。显然,虚拟环境是学习军事活动的理想设置,因为它们使参与者能够体验受控区域内的特定情况。

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