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Facilitation of learning spatial relations among locations by visual cues: generality across spatial configurations

机译:通过视觉提示促进位置之间的空间关系学习:跨空间配置的通用性

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摘要

Spatial pattern learning permits the learning of the location of objects in space relative to each other without reference to discrete visual landmarks or environmental geometry. In the present experiment, we investigated conditions that facilitate spatial pattern learning. Specifically, human participants searched in a real environment or interactive 3-D computer-generated virtual environment open-field search task for four hidden goal locations arranged in a diamond configuration located in a 5 c 5 matrix of raised bins. Participants were randomly assigned to one of three groups: Pattern Only, Landmark + Pattern, or Cues + Pattern. All participants experienced a Training phase followed by a Testing phase. Visual cues were coincident with the goal locations during Training only in the Cues + Pattern group whereas a single visual cue at a non-goal location maintained a consistent spatial relationship with the goal locations during Training only in the Landmark + Pattern group. All groups were then tested in the absence of visual cues. Results in both environments indicated that participants in all three groups learned the spatial configuration of goal locations. The presence of the visual cues during Training facilitated acquisition of the task for the Landmark + Pattern and Cues + Pattern groups compared to the Pattern Only group. During Testing the Landmark + Pattern and Cues + Pattern groups did not differ when their respective visual cues were removed. Furthermore, during Testing the performance of these two groups was superior to the Pattern Only group. Results generalize prior research to a different configuration of spatial locations, isolate spatial pattern learning as the process facilitated by visual cues, and indicate that the facilitation of learning spatial relations among locations by visual cues does not require coincident visual cues.
机译:空间模式学习允许学习对象在空间中相对于彼此的位置,而无需参考离散的视觉界标或环境几何形状。在本实验中,我们调查了有助于空间模式学习的条件。具体而言,人类参与者在真实环境中或在交互式3D计算机生成的虚拟环境开放域搜索任务中搜索了四个隐藏的目标位置,这些目标位置以菱形配置(位于凸起箱的5 c 5矩阵中)排列。参与者被随机分配到三组之一:仅模式,地标+模式或提示+模式。所有参与者都经历了培训阶段,然后是测试阶段。仅在“提示+模式”组中,视觉提示与目标位置一致,而在非目标位置的单个视觉提示仅在“地标+模式”组中与目标位置保持一致的空间关系。然后在没有视觉提示的情况下测试所有组。两种环境下的结果表明,所有三个组的参与者都了解了目标位置的空间配置。与“仅模式”组相比,培训期间视觉提示的存在有助于完成“地标+模式”和“提示+模式”组的任务。在测试过程中,删除了各自的视觉提示后,地标+模式和提示+模式组没有差异。此外,在测试过程中,这两组的性能均优于“仅模式”组。结果将先前的研究推广到不同的空间位置配置,将空间模式学习隔离为视觉提示所促进的过程,并表明通过视觉提示促进位置之间空间关系的学习并不需要一致的视觉提示。

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