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Spatial memory enhances the precision of angular self-motion updating

机译:空间记忆提高了角度自我运动更新的精度

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摘要

Humans are typically able to keep track of brief changes in their head and body orientation, even when visual and auditory cues are temporarily unavailable. Determining the magnitude of one’s displacement from a known location is one form of self-motion updating. Most research on self-motion updating during body rotations has focused on the role of a restricted set of sensory signals (primarily vestibular) available during self-motion. However, humans can and do internally represent spatial aspects of the environment, and little is known about how remembered spatial frameworks may impact angular self-motion updating. Here, we describe an experiment addressing this issue. Participants estimated the magnitude of passive, non-visual body rotations (40°–130°), using non-visual manual pointing. Prior to each rotation, participants were either allowed full vision of the testing environment, or remained blindfolded. Within-subject response precision was dramatically enhanced when the body rotations were preceded by a visual preview of the surrounding environment; constant (signed) and absolute (unsigned) error were much less affected. These results are informative for future perceptual, cognitive, and neuropsychological studies, and demonstrate the powerful role of stored spatial representations for improving the precision of angular self-motion updating.
机译:即使暂时无法获得视觉和听觉提示,人类通常也能够跟踪其头部和身体朝向的短暂变化。确定一个人离开已知位置的幅度是自我运动更新的一种形式。关于身体旋转过程中自我运动更新的大多数研究都集中在自我运动过程中可用的有限的一组感觉信号(主要是前庭信号)的作用上。但是,人类可以并且确实在内部代表环境的空间方面,而对于记忆的空间框架如何影响角度自我运动更新知之甚少。在这里,我们描述了解决此问题的实验。参与者使用非视觉手动指向来估计被动,非视觉身体旋转的幅度(40°–130°)。在每次轮换之前,让参与者完全了解测试环境,或者蒙住双眼。在人体旋转之前先观察周围环境,即可显着提高受试者内部的响应精度。常量(有符号)和绝对(无符号)错误的影响要小得多。这些结果为将来的知觉,认知和神经心理学研究提供了信息,并证明了存储的空间表示对于提高角度自运动更新的精度的强大作用。

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