1.
Multiscale Functional Connectome Abnormality Predicts Cognitive Ou..
[856]
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2.
Hierarchical Graph Convolutional Network Built by Multiscale Atlas..
[633]
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3.
Multi-Class ASD Classification via Label Distribution Learning wit..
[555]
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4.
Deep attentive spatio-temporal feature learning for automatic rest..
[526]
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5.
An artificial-intelligence-based age-specific template constructio..
[509]
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6.
Common feature learning for brain tumor MRI synthesis by context-a..
[477]
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7.
Altered Connectedness of the Brain Chronnectome During the Progres..
[475]
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8.
Consistent and Accurate Segmentation for Serial Infant Brain MR ..
[427]
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9.
Predicting Brain Amyloid-beta PET Grades with Graph Convolutional ..
[423]
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10.
Comparing the blood oxygen level-dependent fluctuation power of be..
[384]
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11.
Outcome prediction of unconscious patients based on weighted spars..
[376]
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12.
Development of Infant Brain Functional Connectome Gradients during..
[365]
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13.
一种嗅觉刺激系统
[361]
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14.
LoCI-DiffCom: Longitudinal Consistency-Informed Diffusion Model fo..
[360]
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15.
Seizure detection by brain-connectivity analysis using dynamic gra..
[355]
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16.
Alterations of dynamic redundancy of functional brain subnetworks ..
[353]
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17.
Modeling Life-Span Brain Age from Large-Scale Dataset Based on M..
[352]
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18.
一种嗅觉刺激系统
[337]
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19.
A Comprehensive Quality Assessment on Fast MRI Acquisition with un..
[322]
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20.
AutoEncoder-Driven Multimodal Collaborative Learning for Medical I..
[321]
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21.
适用于阿尔茨海默特征评估的脑部功能磁共振图像分析系统、方法、介质及..
[320]
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22.
MITracker: Multi-View Integration for Visual Object Tracking
[318]
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23.
Cas-DiffCom: Cascaded Diffusion Model for Infant Longitudinal Supe..
[316]
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24.
Memory-based Cross-modal Semantic Alignment Network for Radiology ..
[310]
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25.
Individualized assessment of brain A deposition with fMRI using de..
[298]
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26.
A Unified Multi-Modality Fusion Framework for Deep Spatio-Temporal..
[286]
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27.
Divergent and Convergent Imaging Markers Between Bipolar and Unipo..
[283]
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28.
Mapping the evolution of regional brain network efficiency and its..
[283]
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29.
Identifying Alzheimer’s Disease-Induced Topology Alterations in S..
[280]
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30.
Regionalized Infant Brain Cortical Development Based on Multi-view..
[260]
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31.
MUC: Mixture of Uncalibrated Cameras for Robust 3D Human Body Reco..
[256]
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32.
Optimizing and Evaluating Fast 3D MultiPlex (MTP) Imaging for Infa..
[254]
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33.
Mining fMRI Dynamics with Parcellation Prior for Brain Disease Dia..
[248]
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34.
Revolutionizing Disease Diagnosis with simultaneous functional PET..
[248]
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35.
Accelerating DWI Data Acquisition: Reconstruction Using Graph-Driv..
[245]
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36.
SEE: Semantically Aligned EEG-to-Text Translation
[244]
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37.
A Comprehensive Quality Assessment on AIassisted Fast MRI Acquisit..
[242]
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38.
Modular Graph Encoding and Hierarchical Readout for Functional Bra..
[239]
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39.
DYNAMIC GRADIENT MODULATION FOR ENHANCED RESTING-STATE FMRI DENOIS..
[236]
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40.
Deep learning reveals the common spectrum underlying multiple brai..
[233]
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41.
Behavioral observation and assessment protocol for language and so..
[232]
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42.
Brain Metabolic Network Redistribution in Patients with White Matt..
[226]
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43.
Chinese Baby Connectome Project (CBCP): Advanced and Comprehensive..
[224]
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44.
DEEP SCRUBBING: A RECONSTRUCTION-BASED APPROACH FOR AUTOMATIC AND ..
[221]
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45.
Connectome-based predictive modelling of ageing, overall cognitive..
[219]
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46.
Revolutionizing Disease Diagnosis with simultaneous functional PET..
[211]
|
47.
T2T-Bridge: Direct Diffusion Bridge Model for Thick-to-Thin Slice ..
[210]
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48.
PREDICTING FUTURE COGNITIVE DEVELOPMENT USING PAST BRAIN FMRI WITH..
[210]
|
49.
基于脑网络和机器学习的AD早期诊断研究
[200]
|
50.
SEE: Semantically Aligned EEG-to-Text Translation
[200]
|
51.
Exploring the Relationship Between Brain Structural and Antipsycho..
[194]
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52.
Constructing fine-grained spatiotemporal neonatal functional atlas..
[191]
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53.
MoAR-Diff: Controlled Diffusion Model for Infant Brain MR Motion A..
[190]
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54.
Harmonizing Multi-Modality Biases in Infant Development Analysis w..
[183]
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55.
Short-term restriction of physical and social activities effects o..
[172]
|
56.
MUC: Mixture of Uncalibrated Cameras for Robust 3D Human Body Reco..
[166]
|
57.
“看见”脑发育 推进科学养育
[159]
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58.
Predicting antipsychotic drug doses for BPSD: A transfer learning ..
[157]
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59.
Mixed Integer Linear Programming for Discrete Sampling Scheme Desi..
[151]
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60.
Mapping infant brain functional regionalization with multiview fun..
[139]
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61.
SRM-Net: Joint Sampling and Reconstruction and Mapping Network for..
[137]
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62.
WSSADN: A Weakly Supervised Spherical Age-Disentanglement Network ..
[133]
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63.
Generalizable Transformer-based Automatic MRI Quality Control for ..
[131]
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64.
gResDM: A Graph-driven Residual Diffusion Model for Accelerating D..
[131]
|
65.
MULTI-LEVEL SPATIO-TEMPORAL GRAPH TRANSFORMER FOR INDIVIDUALIZED M..
[107]
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66.
Comparison of Fat Navigators and Optical Camera Based Retrospectiv..
[104]
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67.
Probabilistic Maps of White Matter Hyperintensity in Chinese Aging..
[96]
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68.
Spatio-Temporal Graph Transformer networks on brain functional con..
[92]
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69.
Auditory tract maturation in early infancy: Links to speech produc..
[82]
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70.
Dual-Evidence Guided Reconstruction for Child-Centric Human Mesh R..
[72]
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71.
Longitudinal Image Synthesis for Early Brain Development with Age ..
[64]
|
72.
Short-Term Restriction of Physical and Social Activities Effects o..
[61]
|
73.
A Deep Learning Approach to Longitudinal Infant MRI Synthesis
[60]
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74.
Early development of infant brain structure-function coupling indi..
[60]
|
75.
Year-by-year White Matter Hyperintensity Probabilistic Atlases bas..
[27]
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76.
Development of Infant Brain Structure-function Coupling Indicates..
[25]
|
77.
面向学龄儿童脑智发育研究的多模态MRI脑影像序列参数与扫描规范专家共..
[10]
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78.
Evaluating the evolution and inter-individual variability of infan..
[6]
|