顶叶内沟
功能磁共振成像
前视野
偏侧性
体素
心理学
顶叶
神经科学
听力学
计算机科学
眼球运动
人工智能
医学
扫视
作者
Liwei Sun,Chunlin Li,Songjian Wang,Qian Si,Meng Kuan Lin,Ningyu Wang,Jun Sun,Hongjun Li,Ying Liang,Wei Jing,Xu Zhang,Juan Zhang
出处
期刊:Cerebral Cortex
[Oxford University Press]
日期:2022-07-21
卷期号:33 (6): 3067-3079
被引量:4
标识
DOI:10.1093/cercor/bhac261
摘要
Abstract Previous studies reported that auditory cortices (AC) were mostly activated by sounds coming from the contralateral hemifield. As a result, sound locations could be encoded by integrating opposite activations from both sides of AC (“opponent hemifield coding”). However, human auditory “where” pathway also includes a series of parietal and prefrontal regions. It was unknown how sound locations were represented in those high-level regions during passive listening. Here, we investigated the neural representation of sound locations in high-level regions by voxel-level tuning analysis, regions-of-interest-level (ROI-level) laterality analysis, and ROI-level multivariate pattern analysis. Functional magnetic resonance imaging data were collected while participants listened passively to sounds from various horizontal locations. We found that opponent hemifield coding of sound locations not only existed in AC, but also spanned over intraparietal sulcus, superior parietal lobule, and frontal eye field (FEF). Furthermore, multivariate pattern representation of sound locations in both hemifields could be observed in left AC, right AC, and left FEF. Overall, our results demonstrate that left FEF, a high-level region along the auditory “where” pathway, encodes sound locations during passive listening in two ways: a univariate opponent hemifield activation representation and a multivariate full-field activation pattern representation.
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