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在视觉识别任务中,主动探索可提高对虚拟3D物体的感知灵敏度。

Active exploration improves perceptual sensitivity for virtual 3D objects in visual recognition tasks.

作者信息

Meijer Frank, Van der Lubbe Rob H J

机构信息

Cognitive Psychology and Ergonomics, University of Twente, The Netherlands.

出版信息

Vision Res. 2011 Dec 8;51(23-24):2431-9. doi: 10.1016/j.visres.2011.09.013. Epub 2011 Oct 8.

Abstract

Several studies demonstrated that active exploration as compared to passive observation of a variety of objects leads to improved performance concerning these actively studied objects later on. These results may be specifically due to an improvement in perceptual recognition but in principle they may also be due to a speeding up of responses to actively studied objects. Recently, however, it was suggested that the benefit of active exploration on perceptual recognition may be restricted to a specific class of (biologically relevant) stimuli. By employing measures derived from signal detection theory we were able to show in all our three experiments that active exploration of virtual 3D objects leads to improved perceptual sensitivity in a subsequent test phase. The improvement with these objects means that the benefit of active exploration is not restricted to a specific class of biologically relevant stimuli. The results of our second experiment further demonstrate that the benefit of active exploration is even strong enough to fully compensate for the effect of perceptual degradation, thereby emphasizing the major impact of active exploration. In our third experiment, we explored the possibility that effects of active exploration might be due to major changes in attentional strategies rather than to the action-related aspect. Results revealed that an attentional requirement left the active-passive difference by and large intact supporting the view that the advantage of active object exploration lies in the action itself.

摘要

多项研究表明,与被动观察各种物体相比,主动探索会使之后对这些主动研究的物体的表现得到改善。这些结果可能具体归因于感知识别的改善,但原则上也可能归因于对主动研究物体的反应速度加快。然而,最近有人提出,主动探索对感知识别的益处可能仅限于特定类别的(与生物相关的)刺激。通过采用信号检测理论得出的测量方法,我们在所有三个实验中都能够证明,对虚拟3D物体的主动探索会在随后的测试阶段提高感知灵敏度。对这些物体的改善意味着主动探索的益处并不局限于特定类别的与生物相关的刺激。我们第二个实验的结果进一步表明,主动探索的益处甚至强大到足以完全抵消感知退化的影响,从而强调了主动探索的主要影响。在我们的第三个实验中,我们探讨了主动探索的效果可能是由于注意力策略的重大变化而非与动作相关的方面的可能性。结果显示,注意力要求大体上保持了主动与被动的差异,这支持了主动物体探索的优势在于动作本身这一观点。

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