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引入一种新的年龄和认知敏感测量方法,用于通过无地标虚拟现实导航任务评估空间定向。

Introducing a new age-and-cognition-sensitive measurement for assessing spatial orientation using a landmark-less virtual reality navigational task.

作者信息

Ranjbar Pouya Omid, Byagowi Ahmad, Kelly Debbie M, Moussavi Zahra

机构信息

a Biomedical Engineering program , University of Manitoba , Winnipeg , MB , Canada.

b Department of Electrical and Computer Engineering , University of Manitoba , Winnipeg , MB , Canada.

出版信息

Q J Exp Psychol (Hove). 2017 Jul;70(7):1406-1419. doi: 10.1080/17470218.2016.1187181. Epub 2016 Jun 10.

Abstract

Age-related impairments during spatial navigation have been widely reported in egocentric and allocentric paradigms. However, the effect of age on more specific navigational components such as the ability to drive or update directional information has not received enough attention. In this study we investigated the effect of age on spatial updating of a visual target after a series of whole-body rotations and transitions using a novel landmark-less virtual reality (VR) environment. Moreover, a significant number of previous studies focused on measures susceptible to a general decline in motor skills such as the spent time navigating, the distance traversed. The current paper proposes a new compound spatial measure to assess navigational performance, examines its reliability and compares its power with those of the measures of duration and traversed distance in predicting participants' age and cognitive groups assessed by Montreal Cognitive Assessment (MoCA) scores. Using data from 319 adults (20-83 years), our results confirm the reliability, the age sensitivity, and the cognitive validity of the designed spatial measure as well as its superiority to the measures of duration and traversed distance in predicting age and MoCA score. In addition, the results show the significant effect of age cognitive status on spatial updating.

摘要

在自我中心和他我中心范式中,与年龄相关的空间导航障碍已被广泛报道。然而,年龄对更具体的导航组件(如驾驶能力或更新方向信息的能力)的影响尚未得到足够关注。在本研究中,我们使用一种新颖的无地标虚拟现实(VR)环境,研究了一系列全身旋转和转换后年龄对视觉目标空间更新的影响。此外,大量先前的研究关注于易受运动技能普遍下降影响的指标,如导航花费的时间、走过的距离。本文提出了一种新的复合空间测量方法来评估导航性能,检验其可靠性,并将其预测能力与持续时间和走过距离的测量方法在预测参与者年龄和由蒙特利尔认知评估(MoCA)分数评估的认知组方面的能力进行比较。利用319名成年人(20 - 83岁)的数据,我们的结果证实了所设计的空间测量方法的可靠性、年龄敏感性和认知效度,以及其在预测年龄和MoCA分数方面优于持续时间和走过距离的测量方法。此外,结果显示年龄认知状态对空间更新有显著影响。

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