arrow
Return

Visual-Guided Dual-Spatial Interaction Network for Fine-Grained Brain Semantic Decoding

delete2024-01-01
delete0
PRE
AI
J
Jiajia Tang
Y
Yutao Yang
Q
Qibin Zhao
Y
Yu Ding
J
Jianhai Zhang
Y
Yang Song
W
Wanzeng Kong *
DOI:10.1109/TIM.2024.3480232delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
Brain semantic decoding has received a surge of attention in the computer vision and neuroscience disciplines. However, existing techniques ignore the sparse and implicit semantic analysis issue of the brain signal, leading to coarse-grained brain semantic decoding. In this article, a visual-guided dual-spatial interaction network (VDIN) is first proposed to significantly facilitate the fine-grained brain semantic decoding, with the multiway guidance of the visual message (text and image). Specifically, the local dual-spatial interaction operation is proposed to exploit the explicit-implicit coupling semantic cues between brain and text, via the text-aware space. Moreover, the above operation simultaneously attends to the multilevel semantic cues between brain and image from the more high-resolution image-aware space. Furthermore, the global dual-spatial interaction operation is utilized to integrate and modify the obtained local semantic cues into the global one. This naturally boosts the investigation of visual-brain consistency and complementary, leading to the more expressive and fine-grained brain semantic decoding architecture. For evaluation, VDIN was verified on the public brain-visual benchmark EEGCVPR40, and the experiments demonstrated that the proposed model outperforms the best baseline with an improvement of 15.97%. Note that our model still achieves competitive performance even considering the brain-spatial space associated with fewer channels.
Keywords:
Brain semantic decoding
dual-spatial inter- action
image-aware semantic analysis
text-aware semantic analysis
text-aware semantic analysis
visual-guided analysis
visual-guided analysis
visual-guided analysis

Journal

IEEE Transactions on Instrumentation and Measurement cover
IEEE Transactions on Instrumentation and Measurement
IF:
5.9
Papers:
1.9W
Citations:
5.8W

Organization

H
Hangzhou Dianzi University
Scholars:
1.3W
Papers: 9.6K
Citations: 7.5K
R
riken
Scholars:
2.2W
Papers: 1.9W
Citations: 24