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Thomas A. House
Person information
- affiliation: University of Manchester, School of Mathematics, UK
- affiliation: University of Warwick, Mathematics Institute, Coventry, UK
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2020 – today
- 2024
- [j14]Jacob Curran-Sebastian, Lorenzo Pellis, Ian M. Hall, Thomas A. House:
Calculation of Epidemic First Passage and Peak Time Probability Distributions. SIAM/ASA J. Uncertain. Quantification 12(2): 242-261 (2024) - [j13]Aarzoo Dhiman, Elad Yom-Tov, Lorenzo Pellis, Michael Edelstein, Richard Pebody, Andrew Hayward, Thomas A. House, Thomas Finnie, David Guzman, Vasileios Lampos, Rob Aldridge, Sarah Beale, Thomas Byrne, Jana Kovar, Isobel Braithwaite, Ellen Fragaszy, Wing Lam Erica Fong, Cyril Geismar, Susan Hoskins, Annalan Navaratnam, Vincent Nguyen, Parth Patel, Maddie Shrotri, Alexei Yavlinsky, Pia Hardelid, Linda Wijlaars, Eleni Nastouli, Moira Spyer, Anna Aryee, Rachel A. McKendry, Tao Cheng, Anne Johnson, Susan Michie, Jo Gibbs, Richard Gilson, Alison Rodger, Ingemar J. Cox:
Estimating the household secondary attack rate and serial interval of COVID-19 using social media. npj Digit. Medicine 7(1) (2024) - [j12]Filippo Pagani, Augustin Chevallier, Sam Power, Thomas A. House, Simon L. Cotter:
NuZZ: Numerical Zig-Zag for general models. Stat. Comput. 34(1): 61 (2024) - 2022
- [j11]Joe Hilton, Heather Riley, Lorenzo Pellis, Rabia Aziza, Samuel P. C. Brand, Ivy K. Kombe, John Ojal, Andrea Parisi, Matt J. Keeling, D. James Nokes, Robert Manson-Sawko, Thomas A. House:
A computational framework for modelling infectious disease policy based on age and household structure with applications to the COVID-19 pandemic. PLoS Comput. Biol. 18(9): 1010390 (2022) - [j10]Christopher E. Overton, Lorenzo Pellis, Helena B. Stage, Francesca Scarabel, Joshua Burton, Christophe Fraser, Ian M. Hall, Thomas A. House, Chris P. Jewell, Anel Nurtay, Filippo Pagani, Katrina A. Lythgoe:
EpiBeds: Data informed modelling of the COVID-19 hospital burden in England. PLoS Comput. Biol. 18(9): 1010406 (2022) - 2020
- [i5]Simon L. Cotter, Thomas A. House, Filippo Pagani:
The NuZZ: Numerical ZigZag Sampling for General Models. CoRR abs/2003.03636 (2020) - [i4]Jack R. McKenzie, Peter A. Appleby, Thomas A. House, Neil Walton:
Fast Approximate Bayesian Contextual Cold Start Learning (FAB-COST). CoRR abs/2008.08038 (2020)
2010 – 2019
- 2019
- [j9]William G. Dixon, Anna L. Beukenhorst, Belay Birlie Yimer, Louise Cook, Antonio Gasparrini, Tal El-Hay, Bruce Hellman, Ben James, Ana M. Vicedo-Cabrera, Malcolm Maclure, Ricardo Silva, John D. Ainsworth, Huai Leng Pisaniello, Thomas A. House, Mark Lunt, Carolyn Gamble, Caroline Sanders, David M. Schultz, Jamie C. Sergeant, John McBeth:
How the weather affects the pain of citizen scientists using a smartphone app. npj Digit. Medicine 2 (2019) - 2018
- [j8]Timothy M. Kinyanjui, Jo Middleton, Stefan Güttel, Jackie Cassell, Joshua V. Ross, Thomas A. House:
Scabies in residential care homes: Modelling, inference and interventions for well-connected population sub-units. PLoS Comput. Biol. 14(3) (2018) - [j7]Edward M. Hill, Thomas A. House, Madhur S. Dhingra, Wantanee Kalpravidh, Subhash Morzaria, Muzaffar G. Osmani, Eric Brum, Mat Yamage, Md. A. Kalam, Diann J. Prosser, John Y. Takekawa, Xiangming Xiao, Marius Gilbert, Michael J. Tildesley:
The impact of surveillance and control on highly pathogenic avian influenza outbreaks in poultry in Dhaka division, Bangladesh. PLoS Comput. Biol. 14(9) (2018) - [c1]Alex Bishop, Istvan Z. Kiss, Thomas A. House:
Consistent Approximation of Epidemic Dynamics on Degree-Heterogeneous Clustered Networks. COMPLEX NETWORKS (1) 2018: 376-391 - 2016
- [j6]Matt J. Keeling, Thomas A. House, Alison J. Cooper, Lorenzo Pellis:
Systematic Approximations to Susceptible-Infectious-Susceptible Dynamics on Networks. PLoS Comput. Biol. 12(12) (2016) - 2015
- [j5]Thomas A. House, Jonathan M. Read, Leon Danon, Matthew J. Keeling:
Testing the hypothesis of preferential attachment in social network formation. EPJ Data Sci. 4(1): 13 (2015) - 2014
- [j4]Penelope A. Hancock, Yasmin Rehman, Ian M. Hall, Obaghe Edeghere, Leon Danon, Thomas A. House, Matthew J. Keeling:
Strategies for Controlling Non-Transmissible Infection Outbreaks Using a Large Human Movement Data Set. PLoS Comput. Biol. 10(9) (2014) - 2013
- [i3]Charo I. Del Genio, Thomas A. House:
Endemic infections are always possible on regular networks. CoRR abs/1310.3128 (2013) - [i2]Martin Ritchie, Luc Berthouze, Thomas A. House, Istvan Z. Kiss:
Higher-order structure and epidemic dynamics in clustered networks. CoRR abs/1310.5047 (2013) - 2012
- [j3]Thomas A. House:
Lie Algebra Solution of Population Models Based on Time-Inhomogeneous Markov Chains. J. Appl. Probab. 49(2): 472-481 (2012) - 2010
- [j2]Thomas A. House:
Generalized Network Clustering and its Dynamical Implications. Adv. Complex Syst. 13(3): 281-291 (2010) - [j1]Thomas A. House, Matt J. Keeling:
The Impact of Contact Tracing in Clustered Populations. PLoS Comput. Biol. 6(3) (2010) - [i1]Leon Danon, Ashley P. Ford, Thomas A. House, Chris P. Jewell, Matt J. Keeling, Gareth O. Roberts, Joshua V. Ross, Matthew C. Vernon:
Networks and the Epidemiology of Infectious Disease. CoRR abs/1011.5950 (2010)
Coauthor Index
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