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首页> 外文期刊>Journal of vision >Control of fixation duration during scene viewing by interaction of foveal and peripheral processing
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Control of fixation duration during scene viewing by interaction of foveal and peripheral processing

机译:通过中央凹和周边处理的相互作用控制场景观察期间的注视持续时间

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Abstract Abstract: Abstract?? Processing in our visual system is functionally segregated, with the fovea specialized in processing fine detail (high spatial frequencies) for object identification, and the periphery in processing coarse information (low frequencies) for spatial orienting and saccade target selection. Here we investigate the consequences of this functional segregation for the control of fixation durations during scene viewing. Using gaze-contingent displays, we applied high-pass or low-pass filters to either the central or the peripheral visual field and compared eye-movement patterns with an unfiltered control condition. In contrast with predictions from functional segregation, fixation durations were unaffected when the critical information for vision was strongly attenuated (foveal low-pass and peripheral high-pass filtering); fixation durations increased, however, when useful information was left mostly intact by the filter (foveal high-pass and peripheral low-pass filtering). These patterns of results are difficult to explain under the assumption that fixation durations are controlled by foveal processing difficulty. As an alternative explanation, we developed the hypothesis that the interaction of foveal and peripheral processing controls fixation duration. To investigate the viability of this explanation, we implemented a computational model with two compartments, approximating spatial aspects of processing by foveal and peripheral activations that change according to a small set of dynamical rules. The model reproduced distributions of fixation durations from all experimental conditions by variation of few parameters that were affected by specific filtering conditions.
机译:摘要摘要:摘要?我们视觉系统中的处理在功能上是隔离的,中央凹专门处理用于物体识别的精细细节(高空间频率),而中央凹则专门用于处理空间定向和扫视目标选择的粗略信息(低频)。在这里,我们研究了这种功能隔离对场景观看过程中注视时间控制的后果。使用视线显示,我们将高通或低通滤镜应用于中央或周边视野,并将眼动模式与未过滤的控制条件进行了比较。与功能隔离的预测相反,当视觉的关键信息被强烈衰减(中央凹低通和周围高通滤波)时,固定持续时间不受影响。但是,当有用的信息大部分被滤波器保留时(中央高通和外围低通滤波),固定持续时间会增加。在固定持续时间由中央凹加工难度控制的假设下,这些结果模式很难解释。作为一种替代解释,我们提出了一个假设,即中央凹与周围处理的相互作用控制着注视时间。为了研究这种解释的可行性,我们实现了一个具有两个隔室的计算模型,通过中心凹和外围激活(根据一小套动力学规则而变化)来近似估计处理的空间方面。该模型通过改变受特定过滤条件影响的几个参数,从所有实验条件中复制了固定持续时间的分布。

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