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Visual encoding and fixation target selection in free viewing: presaccadic brain potentials

机译:自由观看中的视觉编码和注视目标选择:颅前脑电位

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摘要

In scrutinizing a scene, the eyes alternate between fixations and saccades. During a fixation, two component processes can be distinguished: visual encoding and selection of the next fixation target. We aimed to distinguish the neural correlates of these processes in the electrical brain activity prior to a saccade onset. Participants viewed color photographs of natural scenes, in preparation for a change detection task. Then, for each participant and each scene we computed an image heat map, with temperature representing the duration and density of fixations. The temperature difference between the start and end points of saccades was taken as a measure of the expected task-relevance of the information concentrated in specific regions of a scene. Visual encoding was evaluated according to whether subsequent change was correctly detected. Saccades with larger temperature difference were more likely to be followed by correct detection than ones with smaller temperature differences. The amplitude of presaccadic activity over anterior brain areas was larger for correct detection than for detection failure. This difference was observed for short “scrutinizing” but not for long “explorative” saccades, suggesting that presaccadic activity reflects top-down saccade guidance. Thus, successful encoding requires local scanning of scene regions which are expected to be task-relevant. Next, we evaluated fixation target selection. Saccades “moving up” in temperature were preceded by presaccadic activity of higher amplitude than those “moving down”. This finding suggests that presaccadic activity reflects attention deployed to the following fixation location. Our findings illustrate how presaccadic activity can elucidate concurrent brain processes related to the immediate goal of planning the next saccade and the larger-scale goal of constructing a robust representation of the visual scene.
机译:在检查场景时,眼睛在注视和扫视之间交替。在固定过程中,可以区分两个组成过程:视觉编码和选择下一个固定目标。我们的目的是在进行扫视运动之前,在脑电活动中区分这些过程的神经相关性。参加者查看了自然场景的彩色照片,以准备进行更改检测任务。然后,对于每个参与者和每个场景,我们计算了一个图像热图,其中温度表示注视的持续时间和密度。扫视起点和终点之间的温差被视为对集中在场景特定区域中的信息的预期任务相关性的度量。根据是否正确检测到后续更改来评估视觉编码。与温度差较小的扫视相比,温度差较大的扫视更有可能被正确检测。对于正确的检测来说,前脑区域的术前活动幅度要比对检测失败的幅度大。对于短时间的“仔细检查”观察到了这种差异,而对于长的“探索性”扫视观察不到,表明前扫视活动反映了自上而下的扫视指导。因此,成功的编码需要对预期与任务有关的场景区域进行局部扫描。接下来,我们评估了固视目标的选择。扫视温度“上升”之前的声调活动比“下降”幅度大。这一发现表明,术前活动反映出对以下固定位置的注意力。我们的发现表明,术前活动如何阐明与计划下一个扫视的近期目标以及构建视觉场景的强大表示的更大目标有关的并发大脑过程。

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