首页> 美国卫生研究院文献>The Journal of Neuroscience >Does the Superior Colliculus Control Perceptual Sensitivity or Choice Bias during Attention? Evidence from a Multialternative Decision Framework
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Does the Superior Colliculus Control Perceptual Sensitivity or Choice Bias during Attention? Evidence from a Multialternative Decision Framework

机译:在注意过程中上丘囊是否可以控制感觉敏感性或选择偏见?来自多选择决策框架的证据

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摘要

Distinct networks in the forebrain and the midbrain coordinate to control spatial attention. The critical involvement of the superior colliculus (SC)—the central structure in the midbrain network—in visuospatial attention has been shown by four seminal, published studies in monkeys (Macaca mulatta) performing multialternative tasks. However, due to the lack of a mechanistic framework for interpreting behavioral data in such tasks, the nature of the SC's contribution to attention remains unclear. Here we present and validate a novel decision framework for analyzing behavioral data in multialternative attention tasks. We apply this framework to re-examine the behavioral evidence from these published studies. Our model is a multidimensional extension to signal detection theory that distinguishes between two major classes of attentional mechanisms: those that alter the quality of sensory information or “sensitivity,” and those that alter the selective gating of sensory information or “choice bias.” Model-based simulations and model-based analyses of data from these published studies revealed a converging pattern of results that indicated that choice-bias changes, rather than sensitivity changes, were the primary outcome of SC manipulation. Our results suggest that the SC contributes to attentional performance predominantly by generating a spatial choice bias for stimuli at a selected location, and that this bias operates downstream of forebrain mechanisms that enhance sensitivity. The findings lead to a testable mechanistic framework of how the midbrain and forebrain networks interact to control spatial attention.>SIGNIFICANCE STATEMENT Attention involves the selection of the most relevant information for differential sensory processing and decision making. While the mechanisms by which attention alters sensory encoding (sensitivity control) are well studied, the mechanisms by which attention alters decisional weighting of sensory evidence (choice-bias control) are poorly understood. Here, we introduce a model of multialternative decision making that distinguishes bias from sensitivity effects in attention tasks. With our model, we simulate experimental data from four seminal studies that microstimulated or inactivated a key attention-related midbrain structure, the superior colliculus (SC). We demonstrate that the experimental effects of SC manipulation are entirely consistent with the SC controlling attention by changing choice bias, thereby shedding new light on how the brain mediates attention.
机译:前脑和中脑的不同网络协调控制空间注意力。在四个执行多项替代任务的猴子(猕猴)上发表的开创性研究表明,上丘(SC)(中脑网络的中央结构)在视觉空间上的关键参与。但是,由于缺乏用于解释此类任务中的行为数据的机制框架,SC的关注度尚不清楚。在这里,我们提出并验证了一种新颖的决策框架,用于分析多选择关注任务中的行为数据。我们应用此框架来重新检查这些已发表研究的行为证据。我们的模型是信号检测理论的多维扩展,它区分了两种主要的注意力机制:改变感觉信息或“敏感性”的质量的机制,以及改变感觉信息或“选择偏向”的选择门控的机制。来自这些已发表研究的数据的基于模型的模拟和基于模型的分析显示,结果的趋同模式表明选择偏见的改变而不是敏感性的改变是SC操作的主要结果。我们的结果表明,SC主要通过在选定位置生成刺激的空间选择偏见来促进注意力表现,并且该偏见在增强敏感性的前脑机制的下游起作用。这些发现为中脑和前脑网络如何相互作用以控制空间注意力提供了可验证的机制框架。>意义声明注意涉及为差异性感觉处理和决策制定最相关的信息。尽管人们对注意力改变感觉编码(敏感性控制)的机制进行了很​​好的研究,但人们对注意力改变感觉证据的决策权重(选择偏见控制)的机制却知之甚少。在这里,我们介绍了一种多元替代决策模型,该模型将注意力任务中的偏见与敏感性效应区分开。使用我们的模型,我们模拟了来自四项具有开创性研究的实验数据,这些研究微刺激或失活了与注意力相关的关键中脑结构,即上丘(SC)。我们证明了SC操纵的实验效果与SC通过改变选择偏差来控制注意力完全一致,从而为大脑如何介导注意力提供了新的思路。

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