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抓取记忆中的物体:视觉记忆的指数衰减。

Grasping remembered objects: exponential decay of the visual memory.

作者信息

Hesse Constanze, Franz Volker H

机构信息

Cognitive Neuroscience Research Unit, Wolfson-Research-Institute, Durham University, UK.

出版信息

Vision Res. 2010 Dec;50(24):2642-50. doi: 10.1016/j.visres.2010.07.026. Epub 2010 Aug 6.

Abstract

The accuracy with which goal-directed movements are executed depends substantially on the availability of accurate visuomotor information. When no visual information is available during movement execution, movement kinematics change and become more variable, indicating that the visual information about the movement environment is stored for a restricted period of time. However, little is known about the underlying decay characteristics. In this study we investigated how increasing memory demands change the kinematics of a grasping movement and whether these alterations reflect a continuous or an abrupt decay of the underlying visuomotor memory. Ten participants grasped differently sized objects under a full vision condition and four different delay conditions. Results show that the visuomotor information used for grasping decays rapidly after visual occlusion. The information decay over time became obvious in a decrease of movement accuracy and an increase in movement variability that were both well described by exponential decay models. Our findings suggest that visuomotor information is represented in some sort of short-term memory showing the same decay characteristics as observed in classical memory research.

摘要

目标导向运动的执行精度在很大程度上取决于准确的视觉运动信息的可用性。当在运动执行过程中没有视觉信息可用时,运动运动学就会发生变化并变得更加多变,这表明关于运动环境的视觉信息会在一段有限的时间内被存储。然而,对于潜在的衰减特征知之甚少。在本研究中,我们调查了增加记忆需求如何改变抓握运动的运动学,以及这些改变是否反映了潜在视觉运动记忆的持续衰减或突然衰减。10名参与者在全视觉条件和四种不同延迟条件下抓握不同大小的物体。结果表明,用于抓握的视觉运动信息在视觉遮挡后迅速衰减。随着时间的推移,信息衰减在运动准确性的下降和运动变异性的增加中变得明显,这两者都可以用指数衰减模型很好地描述。我们的研究结果表明,视觉运动信息以某种短期记忆的形式呈现,表现出与经典记忆研究中观察到的相同的衰减特征。

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