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Distinct cognitive mechanisms involved in the processing of single objects and object ensembles

机译:单个对象和对象集合的处理中涉及的独特认知机制

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摘要

Behavioral research has demonstrated that the shape and texture of single objects can be processed independently. Similarly, neuroimaging results have shown that an object's shape and texture are processed in distinct brain regions with shape in the lateral occipital area and texture in parahippocampal cortex. Meanwhile, objects are not always seen in isolation and are often grouped together as an ensemble. We recently showed that the processing of ensembles also involves parahippocampal cortex and that the shape and texture of ensemble elements are processed together within this region. These neural data suggest that the independence seen between shape and texture in single-object perception would not be observed in object-ensemble perception. Here we tested this prediction by examining whether observers could attend to the shape of ensemble elements while ignoring changes in an unattended texture feature and vice versa. Across six behavioral experiments, we replicated previous findings of independence between shape and texture in single-object perception. In contrast, we observed that changes in an unattended ensemble feature negatively impacted the processing of an attended ensemble feature only when ensemble features were attended globally. When they were attended locally, thereby making ensemble processing similar to single-object processing, interference was abolished. Overall, these findings confirm previous neuroimaging results and suggest that distinct cognitive mechanisms may be involved in single-object and object-ensemble perception. Additionally, they show that the scope of visual attention plays a critical role in determining which type of object processing (ensemble or single object) is engaged by the visual system.
机译:行为研究表明,单个对象的形状和纹理可以独立处理。类似地,神经影像学结果表明,对象的形状和纹理在大脑的不同区域得到处理,枕叶的外侧区域具有形状,海马旁皮质的纹理也得到处理。同时,并非总是孤立地看到对象,它们通常作为一个整体组合在一起。我们最近表明,合奏的处理还涉及海马旁皮质,并且合奏元素的形状和纹理在该区域内一起被处理。这些神经数据表明,在单对象感知中不会观察到形状和纹理之间的独立性。在这里,我们通过检查观察者是否可以关注集合元素的形状而忽略无人照看的纹理特征的变化(反之亦然)来测试此预测。在六个行为实验中,我们重复了以前在单对象感知中形状和纹理之间独立性的发现。相比之下,我们观察到,仅当全局集成了整体特征时,无人参与的整体特征的变化才会对有人参与的整体特征的处理产生负面影响。当他们在本地参加会议时,使集成处理类似于单对象处理,从而消除了干扰。总体而言,这些发现证实了先前的神经影像学结果,并表明不同的认知机制可能与单物体和物体整体感知有关。此外,它们表明,视觉注意力的范围在确定视觉系统采用哪种类型的对象处理(整体或单个对象)方面起着至关重要的作用。

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