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Saccade Generation by the Frontal Eye Fields in Rhesus Monkeys Is Separable from Visual Detection and Bottom-Up Attention Shift

机译:恒河猴的前眼视野扫视产生与视觉检测和自下而上的注意力转移是分开的

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摘要

The frontal eye fields (FEF), originally identified as an oculomotor cortex, have also been implicated in perceptual functions, such as constructing a visual saliency map and shifting visual attention. Further dissecting the area’s role in the transformation from visual input to oculomotor command has been difficult because of spatial confounding between stimuli and responses and consequently between intermediate cognitive processes, such as attention shift and saccade preparation. Here we developed two tasks in which the visual stimulus and the saccade response were dissociated in space (the extended memory-guided saccade task), and bottom-up attention shift and saccade target selection were independent (the four-alternative delayed saccade task). Reversible inactivation of the FEF in rhesus monkeys disrupted, as expected, contralateral memory-guided saccades, but visual detection was demonstrated to be intact at the same field. Moreover, saccade behavior was impaired when a bottom-up shift of attention was not a prerequisite for saccade target selection, indicating that the inactivation effect was independent of the previously reported dysfunctions in bottom-up attention control. These findings underscore the motor aspect of the area’s functions, especially in situations where saccades are generated by internal cognitive processes, including visual short-term memory and long-term associative memory.
机译:最初被识别为动眼皮层的额叶视野(FEF)也与感知功能有关,例如构建视觉显着图和转移视觉注意力。由于刺激和反应之间存在空间混淆,因此,在中间的认知过程(如注意力转移和扫视准备)之间存在空间混乱,因此,进一步剖析该区域在从视觉输入到动眼运动控制的转变中的作用非常困难。在这里,我们开发了两个任务,其中视觉刺激和扫视响应在空间上是分离的(扩展的记忆引导扫视任务),而自下而上的注意力转移和扫视目标选择是独立的(四替代延迟扫视任务)。如预期的那样,恒河猴中FEF的可逆失活破坏了对侧记忆引导的扫视,但是在同一领域,视觉检测被证明是完整的。此外,当自下而上的注意力转移不是扫视目标选择的先决条件时,扫视行为会受到损害,这表明灭活效果与先前报道的自下而上的注意力控制功能障碍无关。这些发现强调了该区域功能的运动方面,特别是在内部认知过程(包括视觉短期记忆和长期联想记忆)产生扫视的情况下。

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