首页> 美国卫生研究院文献>Journal of Neurophysiology >The Role of Eye Movements in Perception Cognition and Action: Beyond the labeled line: variation in visual reference frames from intraparietal cortex to frontal eye fields and the superior colliculus
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The Role of Eye Movements in Perception Cognition and Action: Beyond the labeled line: variation in visual reference frames from intraparietal cortex to frontal eye fields and the superior colliculus

机译:眼睛运动在感知认知和行动中的作用:超出标记线:从顶顶皮层到额叶视野和上丘的视觉参照系变化

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摘要

We accurately perceive the visual scene despite moving our eyes ~3 times per second, an ability that requires incorporation of eye position and retinal information. In this study, we assessed how this neural computation unfolds across three interconnected structures: frontal eye fields (FEF), intraparietal cortex (LIP/MIP), and the superior colliculus (SC). Single-unit activity was assessed in head-restrained monkeys performing visually guided saccades from different initial fixations. As previously shown, the receptive fields of most LIP/MIP neurons shifted to novel positions on the retina for each eye position, and these locations were not clearly related to each other in either eye- or head-centered coordinates (defined as hybrid coordinates). In contrast, the receptive fields of most SC neurons were stable in eye-centered coordinates. In FEF, visual signals were intermediate between those patterns: around 60% were eye-centered, whereas the remainder showed changes in receptive field location, boundaries, or responsiveness that rendered the response patterns hybrid or occasionally head-centered. These results suggest that FEF may act as a transitional step in an evolution of coordinates between LIP/MIP and SC. The persistence across cortical areas of mixed representations that do not provide unequivocal location labels in a consistent reference frame has implications for how these representations must be read out.>NEW & NOTEWORTHY How we perceive the world as stable using mobile retinas is poorly understood. We compared the stability of visual receptive fields across different fixation positions in three visuomotor regions. Irregular changes in receptive field position were ubiquitous in intraparietal cortex, evident but less common in the frontal eye fields, and negligible in the superior colliculus (SC), where receptive fields shifted reliably across fixations. Only the SC provides a stable labeled-line code for stimuli across saccades.
机译:尽管每秒移动眼睛约3次,但我们仍能准确感知视觉场景,而这种能力需要结合眼位和视网膜信息。在这项研究中,我们评估了这种神经计算如何在三个相互关联的结构上展开:额叶视野(FEF),顶叶内皮层(LIP / MIP)和上丘(SC)。评估了头颅受约束的猴子在不同初始注视下进行视觉引导扫视的活动。如前所示,对于每个眼睛位置,大多数LIP / MIP神经元的感受野都移至视网膜上的新位置,并且这些位置在以眼睛为中心或以头部为中心的坐标(定义为混合坐标)中都没有明确地彼此相关。相反,大多数SC神经元的接受场在以眼睛为中心的坐标中是稳定的。在FEF中,视觉信号介于这些模式之间:大约60%的视线位于眼睛中心,而其余部分则显示感受野位置,边界或响应能力发生了变化,从而使响应模式变得杂乱无章或有时处于头部居中。这些结果表明,FEF可能是LIP / MIP和SC之间坐标演变的过渡步骤。在一致的参考框架中没有提供明确位置标签的混合表示形式在皮质区域的持久性影响着必须如何读出这些表示形式。> NEW&NOTEWORTHY 我们如何使用移动设备将世界视为稳定的世界视网膜了解甚少。我们比较了在三个视觉运动区域中不同固定位置的视觉感受野的稳定性。感受野位置的不规则变化在顶顶皮层无处不在,在额眼视野中明显但不常见,而在上眼睑(SC)中,感受野在固定装置之间可靠地移动,因此可以忽略不计。只有SC为跨扫视的刺激提供稳定的标线代码。

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