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从人类大脑活动中重建 3D 对比图像。

3D Contrast Image Reconstruction From Human Brain Activity.

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2020 Dec;28(12):2699-2710. doi: 10.1109/TNSRE.2020.3035818. Epub 2021 Jan 28.

Abstract

Several studies demonstrated that functional magnetic resonance imaging (fMRI) signals in early visual cortex can be used to reconstruct 2-dimensional (2D) visual contents. However, it remains unknown how to reconstruct 3-dimensional (3D) visual stimuli from fMRI signals in visual cortex. 3D visual stimuli contain 2D visual features and depth information. Moreover, binocular disparity is an important cue for depth perception. Thus, it is more challenging to reconstruct 3D visual stimuli than 2D visual stimuli from the fMRI signals of visual cortex. This study aimed to reconstruct 3D visual images by constructing three decoding models: contrast-decoding, disparity-decoding and contrast-disparity-decoding models, and testing these models with fMRI data from humans viewing 3D contrast images. The results revealed that the 3D contrast stimuli can be reconstructed from the visual cortex. And the early visual regions (V1, V2) showed predominant advantages in reconstructing the contrast in 3D images for the contrast-decoding model. The dorsal visual regions (V3A, V7 and MT) showed predominant advantages in decoding the disparity in 3D images for the disparity-decoding model. The combination of the early and dorsal visual regions showed predominant advantages in decoding both the contrast and disparity for the contrast-disparity-decoding model. The results suggested that the contrast and disparity in 3D images were mainly represented in the early and dorsal visual regions separately. The two visual systems may interact with each other to decode 3D-contrast images.

摘要

几项研究表明,早期视觉皮层的功能磁共振成像(fMRI)信号可用于重建二维(2D)视觉内容。然而,目前尚不清楚如何从视觉皮层的 fMRI 信号中重建三维(3D)视觉刺激。3D 视觉刺激包含 2D 视觉特征和深度信息。此外,双眼视差是深度感知的重要线索。因此,从视觉皮层的 fMRI 信号重建 3D 视觉刺激比重建 2D 视觉刺激更具挑战性。本研究旨在通过构建三个解码模型:对比度解码、视差解码和对比度视差解码模型,来重建 3D 视觉图像,并使用人类观看 3D 对比图像的 fMRI 数据来测试这些模型。结果表明,可以从视觉皮层重建 3D 对比刺激。对于对比度解码模型,早期视觉区域(V1、V2)在重建 3D 图像对比度方面具有明显优势。对于视差解码模型,背侧视觉区域(V3A、V7 和 MT)在解码 3D 图像视差方面具有明显优势。早期和背侧视觉区域的组合在解码对比度和视差方面具有明显优势。结果表明,3D 图像的对比度和视差主要分别在早期和背侧视觉区域中表示。两个视觉系统可能相互作用以解码 3D 对比图像。

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