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The Role of Spatial Memory and Frames of Reference in the Precision of Angular Path Integration

机译:空间内存和参考框架在角路径集成精度中的作用

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摘要

Angular path integration refers to the ability to maintain an estimate of self-location after a rotational displacement by integrating internally-generated (idiothetic) self-motion signals over time. Previous work has found that non-sensory inputs, namely spatial memory, can play a powerful role in angular path integration (, ). Here we investigated the conditions under which spatial memory facilitates angular path integration. We hypothesized that the benefit of spatial memory is particularly likely in spatial updating tasks in which one’s self-location estimate is referenced to external space. To test this idea, we administered passive, nonvisual body rotations (ranging 40° – 140°) about the yaw axis and asked participants to use verbal reports or open-loop manual pointing to indicate the magnitude of the rotation. Prior to some trials, previews of the surrounding environment were given. We found that when participants adopted an egocentric frame of reference, the previously-observed benefit of previews on within-subject response precision was not manifested, regardless of whether remembered spatial frameworks were derived from vision or spatial language. We conclude that the powerful effect of spatial memory is dependent on one’s frame of reference during self-motion updating.
机译:角路径积分是指通过随时间积分内部生成的(惯性的)自运动信号来保持旋转位移后自我位置估计的能力。先前的工作发现,非感官输入(即空间记忆)可以在角路径积分(,)中发挥重要作用。在这里,我们研究了空间记忆促进角路径积分的条件。我们假设空间记忆的好处在空间更新任务中尤为可能,在该任务中,一个人的自我定位估计是参考外部空间的。为了验证这一想法,我们进行了绕着偏航轴的被动,非视觉身体旋转(范围为40°– 140°),并要求参与者使用口头报告或开环手动指向来指示旋转的幅度。在进行一些试验之前,先给出了周围环境的预览。我们发现,当参与者采用以自我为中心的参照系时,无论记忆的空间框架是从视觉还是从空间语言衍生而来,都无法体现出先前观察到的受试者内部反应精确度的优势。我们得出结论,空间记忆的强大作用取决于自我运动更新过程中的参照系。

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