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Influence of Spatial Learning Perspectives on Navigation Through Virtual Reality Environment

机译:空间学习视角对虚拟现实环境导航的影响

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In navigation with virtual reality, spatial knowledge can be acquired through both route and survey perspective. Our study correlates the influence on spatial knowledge while navigating in a virtual reality environment after gaining information with different spatial perspectives. We measured brain activations while the participants navigated through a complex spatial environment, using the analysis tool of sLORETA. In the experimental condition, the participant watched a simulated video feed of either route perspective (front view) or survey perspective (top view) of the virtual environment. Distance travelled, path efficiency and time efficiency of the participants were measured while they navigated through nine successive landmarks. We obtained significant differences between the brain activation patterns while comparing both conditions. Higher activations in inferior frontal gyrus, parahippocampal gyrus, superior temporal gyrus and insula were observed for the theta band in route perspective when compared to survey perspective. Higher activations in the inferior parietal lobule, angular gyrus and precuneus were observed in survey perspective when compared to route perspective. Results showed higher path efficiency and time efficiency and lower distance travelled to reach the destination in survey perspective when compared to route perspective. The result indicates that survey perspective is better for navigation in a far spaced virtual reality environment.
机译:在具有虚拟现实的导航中,可以通过路线和调查视角获取空间知识。我们的研究在获得不同空间观点的信息后在虚拟现实环境中导航时与空间知识的影响相关联。我们使用Sloreta的分析工具在通过复杂的空间环境导航的参与者导航的同时测量大脑激活。在实验条件下,参与者观看了虚拟环境的路由透视(前视图)或调查透视(顶视图)的模拟视频馈送。在通过九个连续地标导航时测量参与者的距离,路径效率和时间效率。我们在比较两个条件时,在脑激活模式之间获得显着差异。与调查视角相比,在路由视角下,在路径透视中观察到较差额相回到的较差额相回流,PARAHIPPocampal Gyrus,卓越的时间回值和insula。与路由观点相比,在调查视角下观察到下椎管叶,角回图和前静脉的更高激活。结果表明,与路线透视相比,在调查视角下,在调查视角到达目的地的路径效率和时间效率更高,距离较高。结果表明,在远距间隔的虚拟现实环境中,调查视角更好地导航。

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