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首页> 外文期刊>The European Journal of Neuroscience >Tuning to non-symbolic proportions in the human frontoparietal cortex.
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Tuning to non-symbolic proportions in the human frontoparietal cortex.

机译:调整人类额顶皮质中的非符号比例。

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摘要

Humans share with many species a non-verbal system to estimate absolute quantity. This sense of number has been linked to the activity of quantity-selective neurons that respond maximally to preferred numerosities. With functional magnetic resonance imaging adaptation, we now show that populations of neurons in the human parietal and frontal cortex are also capable of encoding quantity ratios, or proportions, using the same non-verbal analog code as for absolute number. Following adaptation to visually presented constant proportions (specified by the ratio of line lengths or numerosities), we introduced novel relative magnitudes to examine the tuning characteristics of the population of stimulated neurons. In bilateral parietal and frontal cortex we found that blood oxygenation level-dependent signal recovery from adaptation was a function of numerical distance between the deviant proportion and the adaptation stimulus. The strongest effects were observed in the cortex surrounding the anterior intraparietal sulcus, a region considered pivotal for the processing of absolute magnitudes. Overall, there was substantial overlap of frontoparietal structures representing whole numbers and proportions. The identification of tuning to non-symbolic ratio stimuli, irrespective of notation, adds to the magnitude system a remarkable level of sophistication by demonstrating automatic access to a composite, derived quantitative measure. Our results argue that abstract concepts of both absolute and relative number are deeply rooted in the primate brain as fundamental determinants of higher-level numerical cognition.
机译:人类与许多物种共享一个非言语系统来估计绝对数量。这种数字感觉与数量选择神经元的活动有关,后者对首选的数字反应最大。通过功能磁共振成像技术的适应,我们现在显示出人类顶叶和额叶皮层中的神经元群体也能够使用与绝对数相同的非语言模拟代码来编码数量比或比例。在适应视觉上呈现的恒定比例(由线长或数量的比率指定)之后,我们引入了新颖的相对幅度来检查受刺激神经元群体的调谐特性。在双侧顶叶和额叶皮层中,我们发现适应过程中血液氧合水平依赖性信号恢复是异常比例与适应刺激之间的距离的函数。在前壁顶沟周围的皮质中观察到最强的作用,该区域被认为对处理绝对幅度至关重要。总体而言,代表整数和比例的额顶结构存在大量重叠。不管使用哪种符号,对非符号比率比例调音的识别,通过演示自动获取复合派生的量化度量,从而使幅度系统具有显着的复杂性。我们的研究结果表明,绝对数和相对数的抽象概念深深扎根于灵长类动物大脑中,是高级数字认知的基本决定因素。

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