Reconstructing imagined letters from early visual cortex reveals tight topographic correspondence between visual mental imagery and perception

被引:21
|
作者
Senden, Mario [1 ,2 ]
Emmerling, Thomas C. [1 ,2 ]
van Hoof, Rick [1 ,2 ]
Frost, Martin A. [1 ,2 ]
Goebel, Rainer [1 ,2 ,3 ]
机构
[1] Maastricht Univ, Fac Psychol & Neurosci, Dept Cognit Neurosci, NL-6201 BC Maastricht, Netherlands
[2] Maastricht Univ, Fac Psychol & Neurosci, Maastricht Brain Imaging Ctr, Dept Cognit Neurosci, Oxfordlaan 55,POB 616, NL-6200 MD Maastricht, Netherlands
[3] Netherlands Inst Neurosci, Dept Neuroimaging & Neuromodeling, NL-1105 BA Amsterdam, Netherlands
来源
BRAIN STRUCTURE & FUNCTION | 2019年 / 224卷 / 03期
基金
欧盟地平线“2020”; 欧洲研究理事会;
关键词
SPELLING DEVICE; WORKING-MEMORY; NEURAL SYSTEMS; BRAIN; REPRESENTATIONS; ACTIVATION; MODEL; MOTION;
D O I
10.1007/s00429-019-01828-6
中图分类号
R602 [外科病理学、解剖学]; R32 [人体形态学];
学科分类号
100101 ;
摘要
Visual mental imagery is the quasi-perceptual experience of seeing in the mind's eye. While a tight correspondence between imagery and perception in terms of subjective experience is well established, their correspondence in terms of neural representations remains insufficiently understood. In the present study, we exploit the high spatial resolution of functional magnetic resonance imaging (fMRI) at 7T, the retinotopic organization of early visual cortex, and machine-learning techniques to investigate whether visual imagery of letter shapes preserves the topographic organization of perceived shapes. Sub-millimeter resolution fMRI images were obtained from early visual cortex in six subjects performing visual imagery of four different letter shapes. Predictions of imagery voxel activation patterns based on a population receptive field-encoding model and physical letter stimuli provided first evidence in favor of detailed topographic organization. Subsequent visual field reconstructions of imagery data based on the inversion of the encoding model further showed that visual imagery preserves the geometric profile of letter shapes. These results open new avenues for decoding, as we show that a denoising autoencoder can be used to pretrain a classifier purely based on perceptual data before fine-tuning it on imagery data. Finally, we show that the autoencoder can project imagery-related voxel activations onto their perceptual counterpart allowing for visually recognizable reconstructions even at the single-trial level. The latter may eventually be utilized for the development of content-based BCI letter-speller systems.
引用
收藏
页码:1167 / 1183
页数:17
相关论文
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