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Allocentric Spatial Memory Performance in a Virtual Reality-Based Task is Conditioned by Visuospatial Working Memory Capacity

机译:基于虚拟现实的任务中的外常间隔空间内存性能是受保护工作存储容量的调节

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摘要

Traditionally, the medial temporal lobe has been considered a key brain region for spatial memory. Nevertheless, executive functions, such as working memory, also play an important role in complex behaviors, such as spatial navigation. Thus, the main goal of this study is to clarify the relationship between working memory capacity and spatial memory performance. Spatial memory was assessed using a virtual reality-based procedure, the Boxes Room task, and the visual working memory with the computer-based Change Localization Task. One hundred and twenty-three (n = 123) participants took part in this study. Analysis of Covariance (ANCOVA) revealed a statistically significant relationship between working memory capacity and spatial abilities. Thereafter, two subgroups n = 60, were formed according to their performance in the working memory task (1st and 4th quartiles, n = 30 each). Results demonstrate that participants with high working memory capacity committed fewer mistakes in the spatial task compared to the low working memory capacity group. Both groups improved their performance through repeated trials of the spatial task, thus showing that they could learn spatial layouts independent of their working memory capacity. In conclusion, these findings support that spatial memory performance is directly related to working memory skills. This could be relevant for spatial memory assessment in brain lesioned patients.
机译:传统上,内侧颞叶被认为是空间记忆的关键脑区域。然而,执行职能(如工作记忆,也在复杂行为中发挥重要作用,例如空间导航。因此,本研究的主要目标是阐明工作存储器容量和空间内存性能之间的关系。使用基于虚拟现实的过程,框室任务和可视化工作存储器进行评估空间内存,并使用基于计算机的更改本地化任务。一百二十三(n = 123)参与者参加了这项研究。协方差分析(ANCOVA)揭示了工作记忆力和空间能力之间的统计上显着的关系。此后,根据其在工作存储器任务(第1和第4四分位数,每个)中的性能形成两个子组n = 60。结果表明,与低工作存储器容量组相比,高工作记忆容量的参与者在空间任务中承诺较少。两组通过空间任务的重复试验改善了它们的性能,从而表明他们可以独立于其工作记忆容量学习空间布局。总之,这些调查结果支持空间记忆性能与工作记忆技能直接相关。这可能与脑病变患者的空间记忆评估相关。

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