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右半球在视觉变化检测中的优势取决于时间因素。

The right hemisphere advantage in visual change detection depends on temporal factors.

机构信息

University of Nice-Sophia Antipolis, Laboratoire de Psychologie Cognitive et Sociale, France.

出版信息

Brain Cogn. 2011 Dec;77(3):365-71. doi: 10.1016/j.bandc.2011.09.003. Epub 2011 Oct 8.

DOI:10.1016/j.bandc.2011.09.003
PMID:21986367
Abstract

What accounts for the Right Hemisphere (RH) functional superiority in visual change detection? An original task which combines one-shot and divided visual field paradigms allowed us to direct change information initially to the RH or the Left Hemisphere (LH) by deleting, respectively, an object included in the left or right half of a scene presented centrally. We manipulated the perceptual salience and semantic relevance of the change as well as the duration of the Inter-Stimulus Interval (ISI) between the scenes in order to clarify the role of the RH in memory and attention processes, and to explore whether lengthening the ISI would enhance the contribution of the LH. When analyzing data collapsed over the two levels (high vs. low) of salience and of relevance, changes were better detected in the left visual field (lvf) than in the right visual field (rvf) in the case of a short ISI, while no difference emerged in the case of a long ISI. Moreover, lengthening the ISI resulted in a performance decrement in the lvf, both for accuracy and response speed. The fact that the RH superiority was limited to short intervals indicates that stimulus-driven orienting contributes more than perceptual processing to this hemispheric asymmetry. When considering perceptual and semantic properties of the change, the effect of the ISI duration seemed to specifically emerge in the case of low relevance, with an enhancement of accuracy in the rvf when comparing the long with the short ISI. This suggests that the ISI influence on hemispheric performance operates on different levels.

摘要

右半球(RH)在视觉变化检测中具有功能优势的原因是什么?一项将单次呈现和分视场范式相结合的原始任务使我们能够通过分别删除场景中位于左半部分或右半部分的对象,将变化信息最初引导到 RH 或左半球(LH)。我们操纵了变化的感知显著性和语义相关性以及场景之间的刺激间间隔(ISI)的持续时间,以阐明 RH 在记忆和注意力过程中的作用,并探讨延长 ISI 是否会增强 LH 的贡献。当分析数据时,将两个显著性和相关性水平(高 vs. 低)进行了合并,在短 ISI 的情况下,变化在左视野(lvf)中比在右视野(rvf)中更容易被检测到,而在长 ISI 的情况下则没有差异。此外,在 lvf 中,延长 ISI 会导致性能下降,无论是在准确性还是反应速度方面。RH 优势仅限于短间隔的事实表明,刺激驱动的定向比感知处理对这种半球不对称性的贡献更大。当考虑变化的感知和语义属性时,ISI 持续时间的影响似乎在低相关性的情况下特别出现,与短 ISI 相比,长 ISI 时 rvf 的准确性提高。这表明 ISI 对半球性能的影响在不同的水平上起作用。

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