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T. Yabe | K. Tsubouchi | J. Xue | J. Ma | S. V. Ukkusuri | S. Ukkusuri | T. Yabe | K. Tsubouchi | J. Ma | J. Xue
[1] Khalil Sima'an,et al. Graph Convolutional Encoders for Syntax-aware Neural Machine Translation , 2017, EMNLP.
[2] Xiaoyang Wang,et al. Traffic Flow Prediction via Spatial Temporal Graph Neural Network , 2020, WWW.
[3] Márcia R. Ferreira,et al. A structured open dataset of government interventions in response to COVID-19 , 2020, Scientific Data.
[4] M. Lipsitch,et al. Projecting the transmission dynamics of SARS-CoV-2 through the postpandemic period , 2020, Science.
[5] Max Welling,et al. Modeling Relational Data with Graph Convolutional Networks , 2017, ESWC.
[6] Vinay Kumar Reddy Chimmula,et al. Time series forecasting of COVID-19 transmission in Canada using LSTM networks , 2020, Chaos, Solitons & Fractals.
[7] Tzu-Chen Huang,et al. condLSTM-Q: A novel deep learning model for predicting Covid-19 mortality in fine geographical Scale , 2020, Quant. Biol..
[8] Shao-Lun Huang,et al. Online Disease Diagnosis with Inductive Heterogeneous Graph Convolutional Networks , 2021, WWW.
[9] Yizong Cheng,et al. Mean Shift, Mode Seeking, and Clustering , 1995, IEEE Trans. Pattern Anal. Mach. Intell..
[10] Jeffrey D Sachs,et al. Projecting hospital utilization during the COVID-19 outbreaks in the United States , 2020, Proceedings of the National Academy of Sciences.
[11] Aneela Zameer,et al. Predictions for COVID-19 with deep learning models of LSTM, GRU and Bi-LSTM , 2020, Chaos, Solitons & Fractals.
[12] Jieping Ye,et al. Deep Multi-View Spatial-Temporal Network for Taxi Demand Prediction , 2018, AAAI.
[13] Yujie Fan,et al. Dr.Emotion: Disentangled Representation Learning for Emotion Analysis on Social Media to Improve Community Resilience in the COVID-19 Era and Beyond , 2021, WWW.
[14] Lijing Wang,et al. Examining Deep Learning Models with Multiple Data Sources for COVID-19 Forecasting , 2020, 2020 IEEE International Conference on Big Data (Big Data).
[15] Kota Tsubouchi,et al. Surveillance of early stage COVID-19 clusters using search query logs and mobile device-based location information , 2020, Scientific Reports.
[16] Satish V. Ukkusuri,et al. Scaling of contact networks for epidemic spreading in urban transit systems , 2020, Scientific Reports.
[17] Jimeng Sun,et al. STAN: Spatio-Temporal Attention Network for Pandemic Prediction Using Real World Evidence. , 2020, ArXiv.
[18] Jure Leskovec,et al. Mobility network models of COVID-19 explain inequities and inform reopening , 2020, Nature.
[19] Rui Yan,et al. Multilingual COVID-QA: Learning towards Global Information Sharing via Web Question Answering in Multiple Languages , 2021, WWW.
[20] Jure Leskovec,et al. Inductive Representation Learning on Large Graphs , 2017, NIPS.
[21] Stefan Feuerriegel,et al. Predicting COVID-19 Spread from Large-Scale Mobility Data , 2021, KDD.
[22] Pang Wei Koh,et al. Supporting COVID-19 Policy Response with Large-scale Mobility-based Modeling , 2021, medRxiv.
[23] G. Cacciapaglia,et al. Second wave COVID-19 pandemics in Europe: a temporal playbook , 2020, Scientific Reports.
[24] Song Gao,et al. Multiscale dynamic human mobility flow dataset in the U.S. during the COVID-19 epidemic , 2020, Scientific data.
[25] Xu Zhong,et al. Revisiting the use of web search data for stock market movements , 2019, Scientific Reports.
[26] Jimmy Ba,et al. Adam: A Method for Stochastic Optimization , 2014, ICLR.
[27] G. Leung,et al. First-wave COVID-19 transmissibility and severity in China outside Hubei after control measures, and second-wave scenario planning: a modelling impact assessment , 2020, The Lancet.
[28] Xiao Huang,et al. Twitter reveals human mobility dynamics during the COVID-19 pandemic , 2020, PloS one.
[29] Yaoyun Zhang,et al. COVID-19 SignSym: a fast adaptation of a general clinical NLP tool to identify and normalize COVID-19 signs and symptoms to OMOP common data model , 2021, J. Am. Medical Informatics Assoc..
[30] Zhiyuan Liu,et al. Graph Neural Networks: A Review of Methods and Applications , 2018, AI Open.
[31] Michalis Vazirgiannis,et al. Transfer Graph Neural Networks for Pandemic Forecasting , 2020, AAAI.
[32] Philip S. Yu,et al. Spatial temporal incidence dynamic graph neural networks for traffic flow forecasting , 2020, Inf. Sci..
[33] Yiyue Qian,et al. $\alpha$-Satellite: An AI-Driven System and Benchmark Datasets for Dynamic COVID-19 Risk Assessment in the United States , 2020, IEEE Journal of Biomedical and Health Informatics.
[34] Kenli Li,et al. Gated Residual Recurrent Graph Neural Networks for Traffic Prediction , 2019, AAAI.
[35] A. Sarker,et al. Self-reported COVID-19 symptoms on Twitter: an analysis and a research resource , 2020, medRxiv.
[36] Yoshihide Sekimoto,et al. Non-Compulsory Measures Sufficiently Reduced Human Mobility in Japan during the COVID-19 Epidemic , 2020, 2005.09423.
[37] Baiying Lei,et al. Do not forget interaction: Predicting fatality of COVID-19 patients using logistic regression , 2020, ArXiv.
[38] Nikhil Muralidhar,et al. Steering a Historical Disease Forecasting Model Under a Pandemic: Case of Flu and COVID-19 , 2020, AAAI.
[39] Svetlana Lazebnik,et al. Out of the Box: Reasoning with Graph Convolution Nets for Factual Visual Question Answering , 2018, NeurIPS.
[40] Haoyi Xiong,et al. C-Watcher: A Framework for Early Detection of High-Risk Neighborhoods Ahead of COVID-19 Outbreak , 2020, AAAI.
[41] David M. Pennock,et al. Predicting consumer behavior with Web search , 2010, Proceedings of the National Academy of Sciences.
[42] Max Welling,et al. Semi-Supervised Classification with Graph Convolutional Networks , 2016, ICLR.
[43] Luyang Liu,et al. Examining COVID-19 Forecasting using Spatio-Temporal Graph Neural Networks , 2020, ArXiv.
[44] Satish V. Ukkusuri,et al. Modeling disease spreading with adaptive behavior considering local and global information dissemination , 2020, 2008.10853.
[45] Satish V. Ukkusuri,et al. Quantifying spatial homogeneity of urban road networks via graph neural networks , 2021, ArXiv.
[46] Jing Xu,et al. MiniSeg: An Extremely Minimum Network for Efficient COVID-19 Segmentation , 2020, AAAI.
[47] Xianfeng Tang,et al. Revisiting Spatial-Temporal Similarity: A Deep Learning Framework for Traffic Prediction , 2018, AAAI.
[48] Kota Tsubouchi,et al. Early Warning of COVID-19 Hotspots using Mobility of High Risk Users from Web Search Queries , 2020, ArXiv.
[49] Tadeusz Kufel. ARIMA-based forecasting of the dynamics of confirmed Covid-19 cases for selected European countries , 2020 .
[50] Yoshua Bengio,et al. Learning Phrase Representations using RNN Encoder–Decoder for Statistical Machine Translation , 2014, EMNLP.
[51] Efthimios Kaxiras,et al. Multiple Epidemic Wave Model of the COVID-19 Pandemic: Modeling Study , 2020, Journal of medical Internet research.
[52] Chao Huang,et al. Traffic Flow Forecasting with Spatial-Temporal Graph Diffusion Network , 2021, AAAI.
[53] Lei Zhang,et al. Mobile device data reveal the dynamics in a positive relationship between human mobility and COVID-19 infections , 2020, Proceedings of the National Academy of Sciences.
[54] Yong-Yeol Ahn,et al. Evidence from internet search data shows information-seeking responses to news of local COVID-19 cases , 2020, Proceedings of the National Academy of Sciences.