paper-with-me

Papers

Rest2Visual: Predicting Visually Evoked fMRI from Resting-State Scans

2025-09-17 · Chuyang Zhou, Ziao Ji, Daochang Liu, Dongang Wang, Chenyu Wang, Chang Xu arxiv

Understanding how spontaneous brain activity relates to stimulus-driven neural responses is a fundamental challenge in cognitive neuroscience. While task-based functional magnetic resonance imaging (fMRI) captures localized stimulus-evoked brain activation, its acquisition is costly, time-consuming, and difficult to scale across populations. In contrast, resting-state fMRI (rs-fMRI) is task-free and abundant, but lacks direct interpretability. We introduce Rest2Visual, a conditional generative model that predicts visually evoked fMRI (ve-fMRI) from resting-state input and 2D visual stimuli. It follows a volumetric encoder--decoder design, where multiscale 3D features from rs-fMRI are modulated by image embeddings via adaptive normalization, enabling spatially accurate, stimulus-specific activation synthesis. To enable model training, we construct a large-scale triplet dataset from the Natural Scenes Dataset (NSD), aligning each rs-fMRI volume with stimulus images and their corresponding ve-fMRI activation maps. Quantitative evaluation shows that the predicted activations closely match ground truth across standard similarity and representational metrics, and support successful image reconstruction in downstream decoding. Notably, the predicted maps preserve subject-specific structure, demonstrating the model's capacity to generate individualized functional surrogates. Our results provide compelling evidence that individualized spontaneous neural activity can be transformed into stimulus-aligned representations, opening new avenues for scalable, task-free functional brain modeling.

📄 PDF Abstract BibTeX arXiv:2509.13612

Code (0)

등록된 구현이 없습니다.

Tasks

Image Reconstruction

Similar Papers 제목 키워드 기반

UniBrain: Unify Image Reconstruction and Captioning All in One Diffusion Model from Human Brain Activity

2023-08-14 · Weijian Mai, Zhijun Zhang

Image reconstruction and captioning from brain activity evoked by visual stimuli allow researchers to further understand the connection between the human brain and the visual perception system. While deep generative mode…

AllBrain DecodingImage CaptioningImage Reconstruction

From Connectomic to Task-evoked Fingerprints: Individualized Prediction of Task Contrasts fromResting-state Functional Connectivity

2020-08-07 · Gia H. Ngo, Meenakshi Khosla, Keith Jamison, Amy Kuceyeski 외

Resting-state functional MRI (rsfMRI) yields functional connectomes that can serve as cognitive fingerprints of individuals. Connectomic fingerprints have proven useful in many machine learning tasks, such as predicting …

BIG-bench Machine LearningFunctional ConnectivitySpecificity

From Connectomic to Task-evoked Fingerprints: Individualized Prediction of Task Contrasts from Resting-state Functional Connectivity

2020-08-07 · Gia H. Ngo, Meenakshi Khosla, Keith Jamison, Amy Kuceyeski 외

Resting-state functional MRI (rsfMRI) yields functional connectomes that can serve as cognitive fingerprints of individuals. Connectomic fingerprints have proven useful in many machine learning tasks, such as predicting …

BIG-bench Machine LearningFunctional ConnectivitySpecificity

MindSemantix: Deciphering Brain Visual Experiences with a Brain-Language Model

2024-05-29 · Ziqi Ren, Jie Li, Xuetong Xue, Xin Li 외

Deciphering the human visual experience through brain activities captured by fMRI represents a compelling and cutting-edge challenge in the field of neuroscience research. Compared to merely predicting the viewed image i…

Brain DecodingLanguage ModelingLanguage ModellingSelf-Supervised Learning

Time-varying EEG spectral power predicts evoked and spontaneous fMRI motor brain activity

2025-04-14 · Neil Mehta, Ines Goncalves, Alberto Montagna, Mathis Fleury 외

Simultaneous EEG-fMRI recordings are increasingly used to investigate brain activity by leveraging the complementary high spatial and high temporal resolution of fMRI and EEG signals respectively. It remains unclear, how…

EEGRhythm