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数量诱发 fMRI 活动模式在人类顶内皮层中的可分辨性反映了行为数值敏锐度。

Discriminability of numerosity-evoked fMRI activity patterns in human intra-parietal cortex reflects behavioral numerical acuity.

机构信息

INSERM U992, Gif/Yvette, France; CEA, DSV, I2BM, NeuroSpin, Gif/Yvette, France; University Paris-Sud, Orsay, France.

INSERM U992, Gif/Yvette, France; CEA, DSV, I2BM, NeuroSpin, Gif/Yvette, France; University Paris-Sud, Orsay, France; Center for Mind/Brain Sciences, University of Trento, Italy.

出版信息

Cortex. 2019 May;114:90-101. doi: 10.1016/j.cortex.2018.03.008. Epub 2018 Mar 23.

Abstract

Areas of the primate intraparietal cortex have been identified as an important substrate of numerical cognition. In human fMRI studies, activity patterns in these and other areas have allowed researchers to read out the numerosity a subject is viewing, but the relation of such decodable information with behavioral numerical proficiency remains unknown. Here, we estimated the precision of behavioral numerosity discrimination (internal Weber fraction) in twelve adult subjects based on psychophysical testing in a delayed numerosity comparison task outside the scanner. FMRI data were then recorded during a similar task, to obtain the accuracy with which the same sample numerosities could be read out from evoked brain activity patterns, as a measure of the precision of the neuronal representation. Sample numerosities were decodable in both early visual and intra-parietal cortex with approximately equal accuracy on average. In parietal cortex, smaller numerosities were better discriminated than larger numerosities of the same ratio, paralleling smaller behavioral Weber fractions for smaller numerosities. Furthermore, in parietal but not early visual cortex, fMRI decoding performance was correlated with behavioral number discrimination acuity across subjects (subjects with a more precise behavioral Weber fraction measured prior to scanning showed greater discriminability of fMRI activity patterns in intraparietal cortex, and more specifically, the right LIP region). These results suggest a crucial role for intra-parietal cortex in supporting a numerical representation which is explicitly read out for numerical decisions and behavior.

摘要

灵长类动物顶内皮层的某些区域已被确定为数字认知的重要基础。在人类 fMRI 研究中,这些区域和其他区域的活动模式使研究人员能够读出被试正在观察的数量,但这种可解码信息与行为数字能力的关系尚不清楚。在这里,我们根据延迟数量比较任务中的心理物理测试,在扫描仪外估计了 12 名成年被试的行为数量辨别精度(内部韦伯分数)。然后记录了 fMRI 数据,在类似的任务中,以获得从诱发的大脑活动模式中读取相同样本数量的准确性,作为神经元表示精度的度量。样本数量在早期视觉和顶内皮层中都可以解码,平均准确率大致相同。在顶内皮层中,较小的数量比相同比例的较大数量具有更好的辨别能力,这与较小数量的较小行为韦伯分数相平行。此外,在顶内皮层但不在早期视觉皮层中,fMRI 解码性能与行为数量辨别敏锐度在被试之间存在相关性(在扫描前测量的行为韦伯分数更精确的被试在顶内皮层的 fMRI 活动模式中表现出更高的辨别力,更具体地说,在右侧 LIP 区域)。这些结果表明,顶内皮层在支持明确用于数字决策和行为的数字表示方面起着至关重要的作用。

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