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Paper · arXiv 2308.02510

Seeing through the Brain: Image Reconstruction of Visual Perception from Human Brain Signals

Yu-Ting Lan, Kan Ren, Yansen Wang, Wei-Long Zheng, Dongsheng Li, Bao-Liang Lu, Lili Qiu

23 upvotesJuly 27, 2023arXiv 预印本
AI 摘要

A pipeline named NeuroImagen uses EEG signals and a latent diffusion model to reconstruct high-resolution visual images, demonstrating superior performance in image reconstruction.

visual stimuli reconstructionelectroencephalographyEEGmulti-level perceptual information decodinglatent diffusion modelhigh-resolution visual stimuli images

Abstract

Seeing is believing, however, the underlying mechanism of how human visual perceptions are intertwined with our cognitions is still a mystery. Thanks to the recent advances in both neuroscience and artificial intelligence, we have been able to record the visually evoked brain activities and mimic the visual perception ability through computational approaches. In this paper, we pay attention to visual stimuli reconstruction by reconstructing the observed images based on portably accessible brain signals, i.e., electroencephalography (EEG) data. Since EEG signals are dynamic in the time-series format and are notorious to be noisy, processing and extracting useful information requires more dedicated efforts; In this paper, we propose a comprehensive pipeline, named NeuroImagen, for reconstructing visual stimuli images from EEG signals. Specifically, we incorporate a novel multi-level perceptual information decoding to draw multi-grained outputs from the given EEG data. A latent diffusion model will then leverage the extracted information to reconstruct the high-resolution visual stimuli images. The experimental results have illustrated the effectiveness of image reconstruction and superior quantitative performance of our proposed method.

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