主页 文献库文献详情
PMID: 27810354 已发表 · ppublish 英语

Human sensory cortex structure and top-down controlling brain network determine individual differences in perceptual alternations.

Neuroscience letters ·第 636 卷 ·0000-00-00

Sang Na, Zhang Lijie, Hao Lei, Wang Yongchao, Wang Xiaogang, Zhang Fan, Huang Hui, Hou Xin, Mao Yu, Bi Taiyong, Qiu Jiang

摘要

Bistable perception is a type of subjective perception that spontaneously alternates between two perceptual interpretations of an ambiguous sensory input. Past functional magnetic resonance imaging (fMRI) studies have examined the activation patterns underlying bistable perception, yet the variability between individuals in the alternations is not well understood. Therefore, voxel-based morphometry (VBM) was introduced in this study to correlate the GM of the sensory cortex with the alternations of Rubin face-vase illusion in a large group of young adults. We found that the GM volume and density (GMV/GMD) of the left fusiform face area (FFA) were significantly positively correlated with the alternations. Next, Granger causality analysis (GCA) was introduced to investigate the top-down modulation from high-level areas to the sensory cortex using resting-state fMRI data. Correlations between the perceptual alternations and Granger causalities showed that the top-down modulations from high-level brain regions, such as the superior parietal lobule (SPL) to the left FFA, were positive. Together, these findings indicated that the anatomical structure of the face-selective area may determine individual alternations of the Rubin face-vase illusion. This process may be controlled by a high-level cortex associated with attentional modulation, such as the SPL or Posterior Cingulate Cortex (PCC).

关键词
Bistable perception Granger causality MRI Rubin face-vase illusion VBM
文献信息
期刊
Neuroscience letters
期刊简称
Neurosci Lett
发表日期
0000-00-00
收录日期
2016-11-04
更新日期
2016-12-09
语言
英语
国家/地区
Ireland
NLM ID
7600130
分析服务
分析服务

联系地址

山东省济南市章丘区文博路2号

齐鲁师范学院 genelibs生信实验室

山东省济南市高新区舜华路750号

大学科技园北区F座4单元2楼

电话: 0531-88819269

微信公众号

关注微信订阅号,实时查看信息,关注医学生物学动态。


商务邮箱

E-mail: [email protected]