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Early Numerosity Encoding in Visual Cortex Is Not Sufficient for the Representation of Numerical Magnitude

机译:视觉皮质中的早期云度编码不足以表示数字幅度

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Recent studies have demonstrated that the numerosity of visually presented dot arrays is represented in low-level visual cortex extremely early in latency. However, whether or not such an early neural signature reflects the perceptual representation of numerosity remains unknown. Alternatively, such a signature may indicate the raw sensory representation of the dot-array stimulus before becoming the perceived representation of numerosity. Here, we addressed this question by using the connectedness illusion, whereby arrays with pairwise connected dots are perceived to be less numerous compared with arrays containing isolated dots. Using EEG and fMRI in two independent experiments, we measured neural responses to dot-array stimuli comprising 16 or 32 dots, either isolated or pairwise connected. The effect of connectedness, which reflects the segmentation of the visual stimulus into perceptual units, was observed in the neural activity after 150 msec post stimulus onset in the EEG experiment and in area V3 in the fMRI experiment using a multivariate pattern analysis. In contrast, earlier neural activity before 100 msec and in area V2 was strictly modulated by numerosity regardless of connectedness, suggesting that this early activity reflects the sensory representation of a dot array before perceptual segmentation. Our findings thus demonstrate that the neural representation for numerosity in early visual cortex is not sufficient for visual number perception and suggest that the perceptual encoding of numerosity occurs at or after the segmentation process that takes place later in area V3.
机译:最近的研究表明,视觉呈现的点阵列的数量在潜伏期的极早时间就表现在低级视觉皮层中。但是,这种早期的神经信号是否反映了数字的知觉表示仍是未知的。可替代地,这样的签名可以指示点阵列刺激的原始感官表示,然后变成被感知的数字表示。在这里,我们通过使用连通性错觉解决了这个问题,与包含孤立点的阵列相比,具有成对连接点的阵列被认为更少。在两个独立的实验中使用EEG和fMRI,我们测量了对点阵列刺激物的神经反应,该点阵列刺激物包含16个点或32个点,这些点是孤立的或成对连接的。使用多变量模式分析,在脑电图实验中在刺激发作后150毫秒后以及在功能磁共振成像实验的V3区域中,在神经活动中观察到了连接性的影响,该影响反映了视觉刺激分成感知单元的作用。相反,无论连接性如何,在100毫秒之前和V2区域中,较早的神经活动均受到数字的严格调节,这表明该较早的活动反映了感知分割之前点阵列的感觉表现。因此,我们的发现表明,早期视觉皮层中数字的神经表示不足以进行视觉数字感知,并表明数字的可感知编码发生在随后在V3区域进行的分割过程中或之后。

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