增强现实评估支持载人航天性能评估。

IF 0.9 4区 医学 Q4 BIOPHYSICS Aerospace medicine and human performance Pub Date : 2024-11-01 DOI:10.3357/AMHP.6393.2024
Hannah Weiss, Leia Stirling
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引用次数: 0

摘要

导言:随着下一代太空探索任务对机组人员自主性的要求越来越高,实时诊断宇航员的健康和性能对任务操作至关重要,尤其是在确定舱外活动准备情况方面。增强现实(AR)系统可能是一种可行的工具,允许全息视觉提示取代传统评估中使用的物理对象。方法:比较20名健康成人在全息和物理物体的进出任务和障碍物编织任务中的表现,以确定AR对表现的影响。受试者在每个模态中执行每项任务三次。结果:在两个任务中,头部俯仰角越大,AR完成任务的时间越长。在增强现实任务中,头部和躯干的角速度都有所下降,而在障碍物编织任务中,头部和躯干的角速度也有所下降。在AR的进进出出任务中,被试在完成任务时更加慎重和谨慎,台阶越高,头越低。讨论:受试者使用AR成功完成了两项任务,并获得了对其表现的有意义的评估。观察到的头部俯仰增加支持了AR视野缩小的全息图可视化。将增加的任务时间和降低的躯干角速度与经历感觉运动障碍的宇航员在飞行后使用的策略进行比较。AR可能是评估飞行性能的有用仪器解决方案,提供嵌入式传感器和机载计算;但是,必须制定评估舱外活动准备情况的门槛。增强现实评估支持载人航天性能评估。航空航天Med Hum执行。2024;95(11): 831 - 840。
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Augmented Reality Assessments to Support Human Spaceflight Performance Evaluation.

Introduction: As next-generation space exploration missions require increased autonomy from crews, real-time diagnostics of astronaut health and performance are essential for mission operations, especially for determining extravehicular activity readiness. An augmented reality (AR) system may be a viable tool allowing holographic visual cueing to replace physical objects used in traditional assessments.

Methods: In this study, 20 healthy adults were compared in an Ingress and Egress Task and Obstacle Weave Task with holographic and physical objects to determine the effect of AR on performance. Subjects performed each task three times within each modality.

Results: AR exhibited increased task completion times with greater head pitch angles across the two tasks. The head and torso angular velocity showed a reduction in magnitude in both tasks within AR, while decreased magnitudes of head and torso acceleration were observed for the Obstacle Weave Task. The subjects were more deliberate and careful in their task completion during the Ingress and Egress Task within AR, stepping higher and lowering their heads further.

Discussion: Subjects successfully completed both tasks using AR and meaningful assessments of their performance were obtained. The increased head pitch observed supported the hologram visualization with the reduced AR field of view. The increased task time and reduced torso angular velocity were compared to strategies used by astronauts postflight while experiencing sensorimotor impairments. AR may be a useful instrumentation solution for assessing in-flight performance, providing embedded sensors and onboard computations; however, thresholds for assessing extravehicular activity readiness must be developed. Weiss H, Stirling L. Augmented reality assessments to support human spaceflight performance evaluation. Aerosp Med Hum Perform. 2024; 95(11):831-840.

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来源期刊
Aerospace medicine and human performance
Aerospace medicine and human performance PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH -MEDICINE, GENERAL & INTERNAL
CiteScore
1.10
自引率
22.20%
发文量
272
期刊介绍: The peer-reviewed monthly journal, Aerospace Medicine and Human Performance (AMHP), formerly Aviation, Space, and Environmental Medicine, provides contact with physicians, life scientists, bioengineers, and medical specialists working in both basic medical research and in its clinical applications. It is the most used and cited journal in its field. It is distributed to more than 80 nations.
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