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The Neural Basis of Perceptual Hypothesis Generation and Testing

机译:知觉假设产生和检验的神经基础

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Four-dot masking is a new form of visual masking that does not involve local contour interactions or spatial superimposi-tion of the target stimulus and the mask (as, e.g., in pattern or metacontrast masking). Rather, the effective masking mechanism is based on object substitution. Object substitution masking occurs when low-level visual information representations are altered before target identification through iterative interaction with high-level visual processing stages has been completed. Interestingly, object substitution interacts with attention processes: Strong masking effects are observed when attentional orientation toward the target location is delayed. In contrast, no masking occurs when attention can be rapidly shifted to and engaged onto the target location. We investigated the neural basis of object substitution masking by studying the interaction of spatial attention and masking processes using functional magnetic resonance imaging. Behavioral data indicated a two-wav interaction between the factors Spatial Attention (valid vs. invalid cueing) and Masking (four-dot vs. pattern masking). As expected, spatial attention improved performance more strongly during object substitution masking. Functional correlates of this interaction were found in the primary visual cortex, higher visual areas, and left intraparietal sulcus. A region-of-interest analysis in these areas revealed that the largest blood oxygenation level-dependent signal changes occurred during effective four-dot masking. In contrast, the weakest signal changes in these areas were observed when target visibility was highest. The data suggest that these areas represent an object substitution network dedicated to the generation and testing of a perceptual hypotheses as described by the object substitution theory of masking of Di-Lollo et al.
机译:四点遮罩是视觉遮罩的一种新形式,它不涉及局部轮廓交互作用或目标刺激与遮罩的空间叠加(例如在图案或元对比遮罩中)。而是有效的屏蔽机制基于对象替换。在通过与高层视觉处理阶段的迭代交互完成目标识别之前,更改底层视觉信息表示时,会发生对象替换掩盖。有趣的是,对象替换与注意力过程相互作用:当延迟对目标位置的注意力定向时,会观察到强烈的掩盖效果。相反,当注意力可以快速转移到目标位置并接合到目标位置时,不会发生遮罩。我们通过使用功能磁共振成像研究空间注意和掩蔽过程的相互作用来研究对象替代掩蔽的神经基础。行为数据表明空间注意(有效提示与无效提示)因素和遮罩(四点遮罩与模式遮罩)之间存在两次波动交互作用。如预期的那样,在对象替换遮罩过程中,空间注意力可以更有效地改善性能。在初级视觉皮层,较高的视觉区域和左顶壁沟中发现了这种相互作用的功能相关性。在这些区域的感兴趣区域分析显示,最大的血液氧合水平依赖性信号变化发生在有效的四点掩蔽过程中。相反,当目标能见度最高时,在这些区域中观察到最弱的信号变化。数据表明,这些区域代表了对象替代网络,专用于生成和检验知觉假设,如Di-Lollo等人的掩盖对象替代理论所述。

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