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习得的感知关联在有限条件下影响视觉运动编程:运动学一致性。

Learned perceptual associations influence visuomotor programming under limited conditions: kinematic consistency.

作者信息

Haffenden Angela M, Goodale Melvyn A

机构信息

CIHR Group on Action and Perception, Department of Psychology, University of Western Ontario, London, Ontario, N6A 5C2, Canada.

出版信息

Exp Brain Res. 2002 Dec;147(4):485-93. doi: 10.1007/s00221-002-1250-2. Epub 2002 Oct 18.

Abstract

Previous findings have suggested that visuomotor programming can make use of learned size information in experimental paradigms where movement kinematics are quite consistent from trial to trial. The present experiment was designed to test whether or not this conclusion could be generalized to a different manipulation of kinematic variability. As in previous work, an association was established between the size and colour of square blocks (e.g. red = large; yellow = small, or vice versa). Associating size and colour in this fashion has been shown to reliably alter the perceived size of two test blocks halfway in size between the large and small blocks: estimations of the test block matched in colour to the group of large blocks are smaller than estimations of the test block matched to the group of small blocks. Subjects grasped the blocks, and on other trials estimated the size of the blocks. These changes in perceived block size were incorporated into grip scaling only when movement kinematics were highly consistent from trial to trial; that is, when the blocks were presented in the same location on each trial. When the blocks were presented in different locations grip scaling remained true to the metrics of the test blocks despite the changes in perceptual estimates of block size. These results support previous findings suggesting that kinematic consistency facilitates the incorporation of learned perceptual information into grip scaling.

摘要

先前的研究结果表明,在运动运动学每次试验都相当一致的实验范式中,视觉运动编程可以利用习得的大小信息。本实验旨在测试这一结论是否可以推广到对运动学变异性的不同操作中。与先前的研究一样,在正方形方块的大小和颜色之间建立了一种关联(例如,红色 = 大;黄色 = 小,反之亦然)。以这种方式将大小和颜色关联起来已被证明能可靠地改变两个测试方块的感知大小,这两个测试方块的大小介于大、小方块之间:与大方块组颜色匹配的测试方块的估计大小小于与小方块组匹配的测试方块的估计大小。受试者抓取方块,并在其他试验中估计方块的大小。只有当每次试验的运动运动学高度一致时,即当方块在每次试验中都出现在相同位置时,感知到的方块大小的这些变化才会被纳入抓握缩放中。当方块出现在不同位置时,尽管对方块大小的感知估计发生了变化,但抓握缩放仍与测试方块的度量保持一致。这些结果支持了先前的研究结果,表明运动学一致性有助于将习得的感知信息纳入抓握缩放中。

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