Cohorting to isolate asymptomatic spreaders: An agent-based simulation study on the Mumbai Suburban Railway
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Jiangzhuo Chen | Lijing Wang | Aniruddha Adiga | Madhav Marathe | Rajesh Sundaresan | Milind Tambe | Srini Venkatramanan | Alok Talekar | Sharad Shriram | Nidhin Vaidhiyan | Gaurav Aggarwal | Adam Sadilek | Ashish Tendulkar | M. Marathe | A. Sadilek | Jiangzhuo Chen | R. Sundaresan | A. Tendulkar | G. Aggarwal | Lijing Wang | M. Tambe | N. Vaidhiyan | A. Adiga | S. Venkatramanan | S. Shriram | A. Talekar
[1] D. M. Segura-Angel,et al. Local protection bubbles: an interpretation of the decrease in the velocity of coronavirus's spread in the city of Sao Paulo , 2020, medRxiv.
[2] David A. W. Barton,et al. Analytical Modelling of the Spread of Disease in Confined and Crowded Spaces , 2013, Scientific Reports.
[3] Maureen L. Cropper,et al. Urban Poverty and Transport: The Case of Mumbai , 2005 .
[4] C. Whittaker,et al. Estimates of the severity of coronavirus disease 2019: a model-based analysis , 2020, The Lancet Infectious Diseases.
[5] Piet Van Mieghem,et al. Epidemic processes in complex networks , 2014, ArXiv.
[6] Anil Vullikanti,et al. Using data-driven agent-based models for forecasting emerging infectious diseases. , 2017, Epidemics.
[7] Claudio Castellano,et al. Epidemic spreading and aging in temporal networks with memory , 2018, Physical Review. E.
[8] Aravind Srinivasan,et al. Modelling disease outbreaks in realistic urban social networks , 2004, Nature.
[9] Jürgen Hackl,et al. Epidemic Spreading in Urban Areas Using Agent-Based Transportation Models , 2019, Future Internet.
[10] E. Glaeser,et al. How Much Does Covid-19 Increase with Mobility? Evidence from New York and Four Other U.S. Cities , 2020 .
[11] A. Kucharski,et al. The effectiveness of social bubbles as part of a Covid-19 lockdown exit strategy, a modelling study , 2020, medRxiv.
[12] Achla Marathe,et al. Effect of modelling slum populations on influenza spread in Delhi , 2016, BMJ Open.
[13] Anil Vullikanti,et al. Designing Effective and Practical Interventions to Contain Epidemics , 2020, AAMAS.
[14] Isabel J. Raabe,et al. Social network-based distancing strategies to flatten the COVID-19 curve in a post-lockdown world , 2020, Nature Human Behaviour.
[15] Samarth Swarup,et al. Computational epidemiology as a challenge domain for multiagent systems , 2014, AAMAS.
[16] Joseph Y. J. Chow,et al. Impact of COVID-19 Behavioral Inertia on Reopening Strategies for New York City Transit , 2020, International Journal of Transportation Science and Technology.
[17] Madhav V. Marathe,et al. EpiSimdemics: An efficient algorithm for simulating the spread of infectious disease over large realistic social networks , 2008, 2008 SC - International Conference for High Performance Computing, Networking, Storage and Analysis.
[18] Mandy L. Wilson,et al. Disparities in spread and control of influenza in slums of Delhi: findings from an agent-based modelling study , 2018, BMJ Open.
[19] Mathieu Génois,et al. Temporal Gillespie Algorithm: Fast Simulation of Contagion Processes on Time-Varying Networks , 2015, PLoS Comput. Biol..
[20] J. Harris,et al. The Subways Seeded the Massive Coronavirus Epidemic in New York City , 2020, SSRN Electronic Journal.
[21] Alessia Antelmi,et al. A Design-Methodology for Epidemic Dynamics via Time-Varying Hypergraphs , 2020, AAMAS.
[22] Kevin A. Henry,et al. A Nationwide Comparison of Driving Distance Versus Straight-Line Distance to Hospitals , 2012, The Professional geographer : the journal of the Association of American Geographers.
[23] Madhav V. Marathe,et al. Computational epidemiology , 2013, CACM.
[24] Peter M. A. Sloot,et al. Simulating city-level airborne infectious diseases , 2011, Comput. Environ. Urban Syst..
[25] Kay W. Axhausen,et al. Agent-based simulation of travel demand: Structure and computational performance of MATSim-T , 2008 .
[26] Samarth Swarup,et al. Behavior Model Calibration for Epidemic Simulations , 2018, AAMAS.
[27] Shawn T. Brown,et al. The Role of Subway Travel in an Influenza Epidemic: A New York City Simulation , 2011, Journal of Urban Health.
[28] M. Marathe,et al. Interplay of global multi-scale human mobility, social distancing, government interventions, and COVID-19 dynamics , 2020, medRxiv.
[29] Nihesh Rathod,et al. City-Scale Agent-Based Simulators for the Study of Non-pharmaceutical Interventions in the Context of the COVID-19 Epidemic , 2020, Journal of the Indian Institute of Science.
[30] Anders Johansson,et al. Analysing the link between public transport use and airborne transmission: mobility and contagion in the London underground , 2018, Environmental Health.