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Cognitive load of navigating without vision when guided by virtual sound versus spatial language

机译:在虚拟声音和空间语言的引导下无视导航的认知负荷

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A vibrotactile N-back task was used to generate cognitive load while participants were guided along virtual paths without vision. As participants stepped in place, they moved along a virtual path of linear segments. Information was provided en route about the direction of the next turning point, by spatial language ("left," "right," or "straight") or virtual sound (i.e., the perceived azimuth of the sound indicated the target direction). The authors hypothesized that virtual sound, being processed at direct perceptual levels, would have lower load than even simple language commands, which require cognitive mediation. As predicted, whereas the guidance modes did not differ significantly in the no-load condition, participants showed shorter distance traveled and less time to complete a path when performing the N-back task while navigating with virtual sound as guidance. Virtual sound also produced better N-back performance than spatial language. By indicating the superiority of virtual sound for guidance when cognitive load is present, as is characteristic of everyday navigation, these results have implications for guidance systems for the visually impaired and others.
机译:当参与者沿着没有视觉的虚拟路径被引导时,使用触觉N背任务来产生认知负荷。随着参与者的就位,他们沿着线性分段的虚拟路径移动。通过空间语言(“左”,“右”或“直”)或虚拟声音(即声音的感知方位指示目标方向)在途中提供了有关下一个转折点方向的信息。作者假设,在直接的感知级别上处理的虚拟声音比需要认知调解的简单语言命令的负载要低。如预测的那样,尽管在空载条件下引导模式没有显着差异,但参加者在执行N向后任务时以虚拟声音作为引导进行导航时,行走距离较短,完成路径的时间较少。虚拟声音还产生了比空间语言更好的N背性能。通过指出当存在认知负荷时虚拟声音对制导的优越性,这是日常导航的特征,这些结果对视障者和其他视障者的制导系统具有影响。

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