The forecast of COVID-19 spread risk at the county level
暂无分享,去创建一个
Borko Furht | Lili Xu | Roger Dev | Arjuna Chala | Murtadha D. Hssayeni | Behnaz Ghoraani | Jesse Shaw
[1] Luyang Liu,et al. Examining COVID-19 Forecasting using Spatio-Temporal Graph Neural Networks , 2020, ArXiv.
[2] F. Piazza,et al. Analysis and forecast of COVID-19 spreading in China, Italy and France , 2020, Chaos, Solitons & Fractals.
[3] Adnan Sözen,et al. Comparative analysis and forecasting of COVID-19 cases in various European countries with ARIMA, NARNN and LSTM approaches , 2020, Chaos, Solitons & Fractals.
[4] Angelica M. Walker,et al. A mechanistic model and therapeutic interventions for COVID-19 involving a RAS-mediated bradykinin storm , 2020, eLife.
[5] Y. Wang,et al. Ensemble Forecasts of Coronavirus Disease 2019 (COVID-19) in the U.S. , 2020, medRxiv.
[6] A. Rodriguez,et al. DeepCOVID: An Operational Deep Learning-driven Framework for Explainable Real-time COVID-19 Forecasting , 2020, medRxiv.
[7] M. Xiong,et al. Artificial Intelligence Forecasting of Covid-19 in China , 2020, International Journal of Educational Excellence.
[8] S. Rajaram,et al. Forecasting of Novel Corona Virus Disease (Covid‐19) Using LSTM and XG Boosting Algorithms , 2021 .
[9] Jure Leskovec,et al. Mobility network models of COVID-19 explain inequities and inform reopening , 2020, Nature.
[10] Wojciech Zaremba,et al. Recurrent Neural Network Regularization , 2014, ArXiv.
[11] Nikhil V. Divekar,et al. Wearable , 2018, Encyclopedia of Education and Information Technologies.
[12] Gourav Dey,et al. Artificial Intelligence (AI) Provided Early Detection of the Coronavirus (COVID-19) in China and Will Influence Future Urban Health Policy Internationally , 2020, AI.
[13] Vijay V. Raghavan,et al. A novel data-driven model for real-time influenza forecasting , 2017, bioRxiv.
[14] Tianqi Chen,et al. XGBoost: A Scalable Tree Boosting System , 2016, KDD.
[15] Ganna Rozhnova,et al. Impact of delays on effectiveness of contact tracing strategies for COVID-19: a modelling study , 2020, The Lancet Public Health.
[16] F. Dominici,et al. Aggregated mobility data could help fight COVID-19 , 2020, Science.
[17] Predictive and Preventive Measures for Covid-19 Pandemic , 2021, Algorithms for Intelligent Systems.
[18] E. Topol,et al. Prevalence of Asymptomatic SARS-CoV-2 Infection , 2021, Annals of Internal Medicine.
[19] T. Park,et al. Forecasting of the COVID-19 pandemic situation of Korea , 2021, Genomics & informatics.
[20] W. O. Kermack,et al. A contribution to the mathematical theory of epidemics , 1927 .
[21] B. Furht,et al. Deep Learning applications for COVID-19 , 2021, Journal of Big Data.
[22] Johannes Bracher,et al. Evaluating epidemic forecasts in an interval format , 2020, PLoS Comput. Biol..
[23] A. Harvey,et al. Time Series Models Based on Growth Curves with Applications to Forecasting Coronavirus , 2020 .
[24] Mamta Mittal,et al. An Eye on the Future of COVID-19: Prediction of Likely Positive Cases and Fatality in India over a 30-Day Horizon Using the Prophet Model , 2020, Disaster Medicine and Public Health Preparedness.
[25] O. Olugbara,et al. A genetic algorithm for prediction of RNA-seq malaria vector gene expression data classification using SVM kernels , 2021 .
[26] Ali Ahmadian,et al. Prediction modelling of COVID using machine learning methods from B-cell dataset , 2021, Results in Physics.
[27] Marco Piangerelli,et al. A Bayesian approach for monitoring epidemics in presence of undetected cases , 2020, Chaos, Solitons & Fractals.
[28] Public Mobility Data Enables Covid-19 Forecasting and Management at Local and Global Scales , 2020 .
[29] Murtadha D. Hssayeni,et al. Wearable Sensors for Estimation of Parkinsonian Tremor Severity during Free Body Movements , 2019, Sensors.
[30] Taghi M. Khoshgoftaar,et al. Modeling and tracking Covid-19 cases using Big Data analytics on HPCC system platform , 2021, Journal of Big Data.
[31] A review on COVID-19 forecasting models , 2021, Neural computing & applications.
[32] Yong Yu,et al. A Review of Recurrent Neural Networks: LSTM Cells and Network Architectures , 2019, Neural Computation.
[33] N. Jain,et al. An Emotion Care Model using Multimodal Textual Analysis on COVID-19 , 2021, Chaos, Solitons & Fractals.
[34] Ellyn Ayton,et al. Forecasting influenza-like illness dynamics for military populations using neural networks and social media , 2017, PloS one.
[35] Ayodele Ariyo Adebiyi,et al. Optimized hybrid investigative based dimensionality reduction methods for malaria vector using KNN classifier , 2021, J. Big Data.
[36] Abeer Mohsin Saleh,et al. Analysis and best parameters selection for person recognition based on gait model using CNN algorithm and image augmentation , 2021, J. Big Data.
[37] A. Vespignani,et al. Modeling the impact of social distancing, testing, contact tracing and household quarantine on second-wave scenarios of the COVID-19 epidemic , 2020, medRxiv.
[38] C. Buckee,et al. Wrong but Useful - What Covid-19 Epidemiologic Models Can and Cannot Tell Us. , 2020, The New England journal of medicine.
[39] Eric J Topol,et al. Prevalence of Asymptomatic SARS-CoV-2 Infection , 2020, Annals of Internal Medicine.
[40] Peter X.-K. Song,et al. A Spatiotemporal Epidemiological Prediction Model to Inform County-Level COVID-19 Risk in the United States , 2020 .