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Virtual reality-based assessment and treatment interventions for the combat-injured service member

机译:基于虚拟现实的基于现实的评估和治疗干预措施为战斗伤害服务成员

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This presentation will highlight clinical cases and empirical results from virtual reality (VR)-based rehabilitation programs at two military medical facilities. These programs utilize VR environments to detect and treat functional deficits often difficult to address with standard clinical methods. Injured service members seen at these facilities are often young and highly fit at the time of their injuries. Their injuries include single and multiple limb traumas such as amputation, burns, and limb salvage. Despite the severity of these injuries and associated co-morbidities, these individuals commonly set rehabilitation goals that include a return to competitive sports and/or military duty. Deficits described by these individuals, that can limit the achievement of these goals, can be difficult to detect and quantify with conventional clinical measures. Novel VR-based assessments, developed by our clinical research team, have helped identify functional deficits across multiple domains using ecologically-valid tasks. Further, VR-based treatment applications have been designed to address these deficits and progress patients toward their goals. In general, we have found that service members following traumatic brain injury, amputation, and severe limb trauma demonstrate significant increases in function with VR therapies. These VR interventions are based on well-established therapeutic techniques and can be used to promote functional interactions with challenging environments while maintaining full safeties and controls.
机译:本演示文稿将在两名军事医疗设施中突出临床案例和基于虚拟现实(VR)的康复计划的临床案例和经验结果。这些程序利用VR环境来检测和治疗功能性缺陷,通常难以解决标准临床方法。在这些设施中看到的受伤服务会员通常在受伤时常用于年轻,非常适合。他们的伤害包括单一和多个肢体创伤,如截肢,烧伤和肢体挽救。尽管这些伤害和相关的合作生命性严重程度,但这些人通常设定康复目标,包括回归竞争力的体育和/或军事责任。这些人描述的缺陷,可以限制这些目标的实现,可能难以通过传统的临床测量来检测和量化。我们的临床研究团队开发的新型VR基于VR的评估,帮助使用生态有效任务来跨多个域识别功能缺陷。此外,旨在向基于VR的处理应用程序旨在解决这些缺陷和进步患者的目标。通常,我们发现,在创伤性脑损伤,截肢和严重的肢体创伤后的服务成员表现出VR疗法功能的显着增加。这些VR干预基于良好的治疗技术,可用于促进与具有挑战性环境的功能相互作用,同时保持完全安全性和控制。

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