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Published in: Dynamic Games and Applications 1/2022

14-02-2022

Game-Theoretic Frameworks for Epidemic Spreading and Human Decision-Making: A Review

Authors: Yunhan Huang, Quanyan Zhu

Published in: Dynamic Games and Applications | Issue 1/2022

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Abstract

This review presents and reviews various solved and open problems in developing, analyzing, and mitigating epidemic spreading processes under human decision-making. We provide a review of a range of epidemic models and explain the pros and cons of different epidemic models. We exhibit the art of coupling between epidemic models and decision models in the existing literature. More specifically, we provide answers to fundamental questions in human decision-making amid epidemics, including what interventions to take to combat the disease, who are decision-makers, and when and how to take interventions, and how to make interventions. Among many decision models, game-theoretic models have become increasingly crucial in modeling human responses or behavior amid epidemics in the last decade. In this review, we motivate the game-theoretic approach to human decision-making amid epidemics. This review provides an overview of the existing literature by developing a multi-dimensional taxonomy, which categorizes existing literature based on multiple dimensions, including (1) types of games, such as differential games, stochastic games, evolutionary games, and static games; (2) types of interventions, such as social distancing, vaccination, quarantine, and taking antidotes; (3) the types of decision-makers, such as individuals, adversaries, and central authorities at different hierarchical levels. A fine-grained dynamic game framework is proposed to capture the essence of game-theoretic decision-making amid epidemics. We showcase three representative frameworks with unique ways of integrating game-theoretic decision-making into the epidemic models from a vast body of literature. Each of the three frameworks has their unique way of modeling and analyzing and develops results from different angles. In the end, we identify several main open problems and research gaps left to be addressed and filled.

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Literature
1.
go back to reference Abouelkheir I, El Kihal F, Rachik M, Elmouki I (2019) Optimal impulse vaccination approach for an sir control model with short-term immunity. Mathematics 7(5):420 Abouelkheir I, El Kihal F, Rachik M, Elmouki I (2019) Optimal impulse vaccination approach for an sir control model with short-term immunity. Mathematics 7(5):420
2.
go back to reference Adiga A, Venkat S, Vullikanti A (2016) To delay or not: temporal vaccination games on networks. In: IEEE INFOCOM 2016—the 35th annual IEEE international conference on computer communications. IEEE, pp 1–9 Adiga A, Venkat S, Vullikanti A (2016) To delay or not: temporal vaccination games on networks. In: IEEE INFOCOM 2016—the 35th annual IEEE international conference on computer communications. IEEE, pp 1–9
3.
go back to reference Akhil P, Altman E, Sundaresan R, LINCS P (2019) A mean-field approach for controlling singularly perturbed multi-population sis epidemics. arXiv preprint arXiv:1902.05713 Akhil P, Altman E, Sundaresan R, LINCS P (2019) A mean-field approach for controlling singularly perturbed multi-population sis epidemics. arXiv preprint arXiv:​1902.​05713
4.
go back to reference Ali A, Altman E, Chahed T, Fiems D, Panda M, Sassatelli L (2012) Estimating file-spread in delay tolerant networks under two-hop routing. In: International conference on research in networking. Springer, pp 277–290 Ali A, Altman E, Chahed T, Fiems D, Panda M, Sassatelli L (2012) Estimating file-spread in delay tolerant networks under two-hop routing. In: International conference on research in networking. Springer, pp 277–290
5.
go back to reference Allen E (2007) Modeling with Itô stochastic differential equations, vol 22. Springer, BerlinMATH Allen E (2007) Modeling with Itô stochastic differential equations, vol 22. Springer, BerlinMATH
6.
go back to reference Allen LJ (2008) An introduction to stochastic epidemic models. In: Brauer F, van den Driessche P, Wu J (eds) Mathematical epidemiology. Springer, Berlin, pp 81–130 Allen LJ (2008) An introduction to stochastic epidemic models. In: Brauer F, van den Driessche P, Wu J (eds) Mathematical epidemiology. Springer, Berlin, pp 81–130
7.
go back to reference Altman E (2012) An epidemic game between contents in a wireless network. In: 2012 international symposium on wireless communication systems (ISWCS). IEEE, pp 1088–1091 Altman E (2012) An epidemic game between contents in a wireless network. In: 2012 international symposium on wireless communication systems (ISWCS). IEEE, pp 1088–1091
8.
go back to reference Altman E (2013) A stochastic game approach for competition over popularity in social networks. Dyn Games Appl 3(2):313–323MathSciNetMATH Altman E (2013) A stochastic game approach for competition over popularity in social networks. Dyn Games Appl 3(2):313–323MathSciNetMATH
9.
go back to reference Altman E, Başar T, De Pellegrini F (2010) Optimal monotone forwarding policies in delay tolerant mobile ad-hoc networks. Perform Eval 67(4):299–317 Altman E, Başar T, De Pellegrini F (2010) Optimal monotone forwarding policies in delay tolerant mobile ad-hoc networks. Perform Eval 67(4):299–317
10.
go back to reference Amaral MA, de Oliveira MM, Javarone MA (2021) An epidemiological model with voluntary quarantine strategies governed by evolutionary game dynamics. Chaos Solitons Fractals 143:110616MathSciNet Amaral MA, de Oliveira MM, Javarone MA (2021) An epidemiological model with voluntary quarantine strategies governed by evolutionary game dynamics. Chaos Solitons Fractals 143:110616MathSciNet
11.
go back to reference Andersson H, Britton T (2012) Stochastic epidemic models and their statistical analysis, vol 151. Springer, BerlinMATH Andersson H, Britton T (2012) Stochastic epidemic models and their statistical analysis, vol 151. Springer, BerlinMATH
12.
go back to reference Ansumali S, Kaushal S, Kumar A, Prakash MK, Vidyasagar M (2020) Modelling a pandemic with asymptomatic patients, impact of lockdown and herd immunity, with applications to sars-cov-2. Annu Rev Control Ansumali S, Kaushal S, Kumar A, Prakash MK, Vidyasagar M (2020) Modelling a pandemic with asymptomatic patients, impact of lockdown and herd immunity, with applications to sars-cov-2. Annu Rev Control
13.
go back to reference Aurell A, Carmona R, Dayanikli G, Lauriere M (2020) Optimal incentives to mitigate epidemics: a Stackelberg mean field game approach. arXiv preprint arXiv:2011.03105 Aurell A, Carmona R, Dayanikli G, Lauriere M (2020) Optimal incentives to mitigate epidemics: a Stackelberg mean field game approach. arXiv preprint arXiv:​2011.​03105
14.
go back to reference Bagagiolo F, Bauso D (2014) Mean-field games and dynamic demand management in power grids. Dyn Games Appl 4(2):155–176MathSciNetMATH Bagagiolo F, Bauso D (2014) Mean-field games and dynamic demand management in power grids. Dyn Games Appl 4(2):155–176MathSciNetMATH
15.
go back to reference Başar T, Olsder GJ (1998) Dynamic noncooperative game theory. SIAM, PhiladelphiaMATH Başar T, Olsder GJ (1998) Dynamic noncooperative game theory. SIAM, PhiladelphiaMATH
16.
go back to reference Bauch CT, Earn DJ (2004) Vaccination and the theory of games. Proc Natl Acad Sci 101(36):13391–13394MathSciNetMATH Bauch CT, Earn DJ (2004) Vaccination and the theory of games. Proc Natl Acad Sci 101(36):13391–13394MathSciNetMATH
17.
go back to reference Bernoulli D (1760) Essai d’une nouvelle analyse de la mortalité causée par la petite vérole, et des avantages de l’inoculation pour la prévenir. Histoire de l’Acad., Roy. Sci.(Paris) avec Mem, pp 1–45 Bernoulli D (1760) Essai d’une nouvelle analyse de la mortalité causée par la petite vérole, et des avantages de l’inoculation pour la prévenir. Histoire de l’Acad., Roy. Sci.(Paris) avec Mem, pp 1–45
18.
go back to reference Bhattacharyya S, Bauch C (2010) A game dynamic model for delayer strategies in vaccinating behaviour for pediatric infectious diseases. J Theor Biol 267(3):276–282MathSciNetMATH Bhattacharyya S, Bauch C (2010) A game dynamic model for delayer strategies in vaccinating behaviour for pediatric infectious diseases. J Theor Biol 267(3):276–282MathSciNetMATH
19.
go back to reference Bieck C, Marshall A (2020) Redirecting resources to promote post-pandemic growth. Strategy & Leadership Bieck C, Marshall A (2020) Redirecting resources to promote post-pandemic growth. Strategy & Leadership
20.
go back to reference Blume L, Easley D, Kleinberg J, Kleinberg R, Tardos É (2013) Network formation in the presence of contagious risk. ACM Trans Econ Comput 1(2):1–20 Blume L, Easley D, Kleinberg J, Kleinberg R, Tardos É (2013) Network formation in the presence of contagious risk. ACM Trans Econ Comput 1(2):1–20
21.
go back to reference Breban R, Vardavas R, Blower S (2007) Mean-field analysis of an inductive reasoning game: application to influenza vaccination. Phys Rev E 76(3):031127 Breban R, Vardavas R, Blower S (2007) Mean-field analysis of an inductive reasoning game: application to influenza vaccination. Phys Rev E 76(3):031127
22.
go back to reference Cator E, Van Mieghem P (2012) Second-order mean-field susceptible-infected-susceptible epidemic threshold. Phys Rev E 85(5):056111 Cator E, Van Mieghem P (2012) Second-order mean-field susceptible-infected-susceptible epidemic threshold. Phys Rev E 85(5):056111
23.
go back to reference Chang SL, Piraveenan M, Pattison P, Prokopenko M (2020) Game theoretic modelling of infectious disease dynamics and intervention methods: a review. J Biol Dyn 14(1):57–89MathSciNetMATH Chang SL, Piraveenan M, Pattison P, Prokopenko M (2020) Game theoretic modelling of infectious disease dynamics and intervention methods: a review. J Biol Dyn 14(1):57–89MathSciNetMATH
24.
go back to reference Chapman GB, Li M, Vietri J, Ibuka Y, Thomas D, Yoon H, Galvani AP (2012) Using game theory to examine incentives in influenza vaccination behavior. Psychol Sci 23(9):1008–1015 Chapman GB, Li M, Vietri J, Ibuka Y, Thomas D, Yoon H, Galvani AP (2012) Using game theory to examine incentives in influenza vaccination behavior. Psychol Sci 23(9):1008–1015
26.
go back to reference Chimmula VKR, Zhang L (2020) Time series forecasting of Covid-19 transmission in Canada using LSTM networks. Chaos Solitons Fractals 135:109864 Chimmula VKR, Zhang L (2020) Time series forecasting of Covid-19 transmission in Canada using LSTM networks. Chaos Solitons Fractals 135:109864
27.
go back to reference Dashtbali M, Malek A, Mirzaie M (2020) Optimal control and differential game solutions for social distancing in response to epidemics of infectious diseases on networks. Optim Control Appl Methods 41(6):2149–2165MathSciNetMATH Dashtbali M, Malek A, Mirzaie M (2020) Optimal control and differential game solutions for social distancing in response to epidemics of infectious diseases on networks. Optim Control Appl Methods 41(6):2149–2165MathSciNetMATH
28.
go back to reference Di Lauro F, Kiss IZ, Rus D, Della Santina C (2020) Covid-19 and flattening the curve: a feedback control perspective. IEEE Control Syst Lett 5(4):1435–1440MathSciNet Di Lauro F, Kiss IZ, Rus D, Della Santina C (2020) Covid-19 and flattening the curve: a feedback control perspective. IEEE Control Syst Lett 5(4):1435–1440MathSciNet
29.
go back to reference Draief M, Massoulie L (2009) Epidemics and rumours in complex networks. Cambridge University Press, CambridgeMATH Draief M, Massoulie L (2009) Epidemics and rumours in complex networks. Cambridge University Press, CambridgeMATH
30.
go back to reference Eksin C (2019) Control of stochastic disease network games via influential individuals. In: 2019 IEEE 58th conference on decision and control (CDC). IEEE, pp 6893–6898 Eksin C (2019) Control of stochastic disease network games via influential individuals. In: 2019 IEEE 58th conference on decision and control (CDC). IEEE, pp 6893–6898
31.
go back to reference Eksin C, Shamma JS, Weitz JS (2017) Disease dynamics in a stochastic network game: a little empathy goes a long way in averting outbreaks. Sci Rep 7(1):1–13 Eksin C, Shamma JS, Weitz JS (2017) Disease dynamics in a stochastic network game: a little empathy goes a long way in averting outbreaks. Sci Rep 7(1):1–13
32.
go back to reference Erdem M, Safan M, Castillo-Chavez C (2017) Mathematical analysis of an SIQR influenza model with imperfect quarantine. Bull Math Biol 79(7):1612–1636MathSciNetMATH Erdem M, Safan M, Castillo-Chavez C (2017) Mathematical analysis of an SIQR influenza model with imperfect quarantine. Bull Math Biol 79(7):1612–1636MathSciNetMATH
33.
go back to reference Fall A, Iggidr A, Sallet G, Tewa JJ (2007) Epidemiological models and Lyapunov functions. Math Model Nat Phenom 2(1):62–83MathSciNetMATH Fall A, Iggidr A, Sallet G, Tewa JJ (2007) Epidemiological models and Lyapunov functions. Math Model Nat Phenom 2(1):62–83MathSciNetMATH
34.
go back to reference Farhadi F, Tavafoghi H, Teneketzis D, Golestani SJ (2019) An efficient dynamic allocation mechanism for security in networks of interdependent strategic agents. Dyn Games Appl 9(4):914–941MathSciNetMATH Farhadi F, Tavafoghi H, Teneketzis D, Golestani SJ (2019) An efficient dynamic allocation mechanism for security in networks of interdependent strategic agents. Dyn Games Appl 9(4):914–941MathSciNetMATH
35.
go back to reference Feng Y, Ding L, Huang YH, Guan ZH (2016) Epidemic spreading on random surfer networks with infected avoidance strategy. Chin Phys B 25(12):128903 Feng Y, Ding L, Huang YH, Guan ZH (2016) Epidemic spreading on random surfer networks with infected avoidance strategy. Chin Phys B 25(12):128903
36.
go back to reference Feng Y, Ding L, Huang YH, Zhang L (2016) Epidemic spreading on weighted networks with adaptive topology based on infective information. Physica A 463:493–502MathSciNetMATH Feng Y, Ding L, Huang YH, Zhang L (2016) Epidemic spreading on weighted networks with adaptive topology based on infective information. Physica A 463:493–502MathSciNetMATH
38.
go back to reference Fudenberg D, Tirole J (1991) Game theory. MIT Press, CambridgeMATH Fudenberg D, Tirole J (1991) Game theory. MIT Press, CambridgeMATH
39.
go back to reference Funk S, Gilad E, Watkins C, Jansen VA (2009) The spread of awareness and its impact on epidemic outbreaks. Proc Natl Acad Sci 106(16):6872–6877MATH Funk S, Gilad E, Watkins C, Jansen VA (2009) The spread of awareness and its impact on epidemic outbreaks. Proc Natl Acad Sci 106(16):6872–6877MATH
40.
go back to reference Ganesh A, Massoulié L, Towsley D (2005) The effect of network topology on the spread of epidemics. In: Proceedings IEEE 24th annual joint conference of the IEEE computer and communications societies, vol 2. IEEE, pp 1455–1466 Ganesh A, Massoulié L, Towsley D (2005) The effect of network topology on the spread of epidemics. In: Proceedings IEEE 24th annual joint conference of the IEEE computer and communications societies, vol 2. IEEE, pp 1455–1466
41.
go back to reference Gast N, Gaujal B, Le Boudec JY (2012) Mean field for Markov decision processes: from discrete to continuous optimization. IEEE Trans Autom Control 57(9):2266–2280MathSciNetMATH Gast N, Gaujal B, Le Boudec JY (2012) Mean field for Markov decision processes: from discrete to continuous optimization. IEEE Trans Autom Control 57(9):2266–2280MathSciNetMATH
42.
go back to reference Goeree JK, Holt CA, Palfrey TR (2010) Quantal response equilibria. In: Behavioural and experimental economics. Springer, pp 234–242 Goeree JK, Holt CA, Palfrey TR (2010) Quantal response equilibria. In: Behavioural and experimental economics. Springer, pp 234–242
43.
go back to reference Gosak M, Kraemer MU, Nax HH, Perc M, Pradelski BS (2021) Endogenous social distancing and its underappreciated impact on the epidemic curve. Sci Rep 11(1):1–10 Gosak M, Kraemer MU, Nax HH, Perc M, Pradelski BS (2021) Endogenous social distancing and its underappreciated impact on the epidemic curve. Sci Rep 11(1):1–10
45.
go back to reference Granell C, Gómez S, Arenas A (2014) Competing spreading processes on multiplex networks: awareness and epidemics. Phys Rev E 90(1):012808 Granell C, Gómez S, Arenas A (2014) Competing spreading processes on multiplex networks: awareness and epidemics. Phys Rev E 90(1):012808
46.
go back to reference Gray A, Greenhalgh D, Hu L, Mao X, Pan J (2011) A stochastic differential equation sis epidemic model. SIAM J Appl Math 71(3):876–902MathSciNetMATH Gray A, Greenhalgh D, Hu L, Mao X, Pan J (2011) A stochastic differential equation sis epidemic model. SIAM J Appl Math 71(3):876–902MathSciNetMATH
49.
go back to reference Gubar E, Zhitkova EM, Kupchinenko E, Petriakova N (2015) Two modes of vaccination program in controlled sir model. Contrib Game Theory Manag 8:84–98MathSciNetMATH Gubar E, Zhitkova EM, Kupchinenko E, Petriakova N (2015) Two modes of vaccination program in controlled sir model. Contrib Game Theory Manag 8:84–98MathSciNetMATH
50.
go back to reference Hayel Y, Zhu Q (2017) Epidemic protection over heterogeneous networks using evolutionary Poisson games. IEEE Trans Inf Forensics Secur 12(8):1786–1800 Hayel Y, Zhu Q (2017) Epidemic protection over heterogeneous networks using evolutionary Poisson games. IEEE Trans Inf Forensics Secur 12(8):1786–1800
51.
go back to reference Herrera JL, Srinivasan R, Brownstein JS, Galvani AP, Meyers LA (2016) Disease surveillance on complex social networks. PLoS Comput Biol 12(7):e1004928 Herrera JL, Srinivasan R, Brownstein JS, Galvani AP, Meyers LA (2016) Disease surveillance on complex social networks. PLoS Comput Biol 12(7):e1004928
52.
go back to reference Horák K, Bošanskỳ B (2019) Solving partially observable stochastic games with public observations. In: Proceedings of the AAAI conference on artificial intelligence, vol 33-01, pp 2029–2036 Horák K, Bošanskỳ B (2019) Solving partially observable stochastic games with public observations. In: Proceedings of the AAAI conference on artificial intelligence, vol 33-01, pp 2029–2036
53.
go back to reference Hossain MS, Muhammad G, Guizani N (2020) Explainable AI and mass surveillance system-based healthcare framework to combat COVID-I9 like pandemics. IEEE Network 34(4):126–132 Hossain MS, Muhammad G, Guizani N (2020) Explainable AI and mass surveillance system-based healthcare framework to combat COVID-I9 like pandemics. IEEE Network 34(4):126–132
54.
go back to reference Hota AR, Godbole J, Bhariya P, Paré PE (2020) A closed-loop framework for inference, prediction and control of sir epidemics on networks. arXiv preprint arXiv:2006.16185 Hota AR, Godbole J, Bhariya P, Paré PE (2020) A closed-loop framework for inference, prediction and control of sir epidemics on networks. arXiv preprint arXiv:​2006.​16185
55.
go back to reference Hota AR, Sneh T, Gupta K (2020) Impacts of game-theoretic activation on epidemic spread over dynamical networks. arXiv preprint arXiv:2011.00445 Hota AR, Sneh T, Gupta K (2020) Impacts of game-theoretic activation on epidemic spread over dynamical networks. arXiv preprint arXiv:​2011.​00445
56.
go back to reference Hota AR, Sundaram S (2016) Interdependent security games on networks under behavioral probability weighting. IEEE Trans Control Netw Syst 5(1):262–273MathSciNetMATH Hota AR, Sundaram S (2016) Interdependent security games on networks under behavioral probability weighting. IEEE Trans Control Netw Syst 5(1):262–273MathSciNetMATH
57.
go back to reference Hota AR, Sundaram S (2016) Optimal network topologies for mitigating security and epidemic risks. In: 2016 54th annual Allerton conference on communication, control, and computing (Allerton). IEEE, pp 1129–1136 Hota AR, Sundaram S (2016) Optimal network topologies for mitigating security and epidemic risks. In: 2016 54th annual Allerton conference on communication, control, and computing (Allerton). IEEE, pp 1129–1136
58.
go back to reference Hota AR, Sundaram S (2018) Game-theoretic choice of curing rates against networked sis epidemics by human decision-makers. arXiv preprint arXiv:1810.01293 Hota AR, Sundaram S (2018) Game-theoretic choice of curing rates against networked sis epidemics by human decision-makers. arXiv preprint arXiv:​1810.​01293
59.
go back to reference Hota AR, Sundaram S (2019) Game-theoretic vaccination against networked sis epidemics and impacts of human decision-making. IEEE Trans Control Netw Syst 6(4):1461–1472MathSciNetMATH Hota AR, Sundaram S (2019) Game-theoretic vaccination against networked sis epidemics and impacts of human decision-making. IEEE Trans Control Netw Syst 6(4):1461–1472MathSciNetMATH
60.
go back to reference Huang CT, Sakib MN, Njilla L, Kamhoua C (2019) A game theoretic approach for making iot device connectivity decisions during malware outbreak. In: 2019 international conference on computing, networking and communications (ICNC). IEEE, pp 457–462 Huang CT, Sakib MN, Njilla L, Kamhoua C (2019) A game theoretic approach for making iot device connectivity decisions during malware outbreak. In: 2019 international conference on computing, networking and communications (ICNC). IEEE, pp 457–462
61.
go back to reference Huang Y, Chen J, Huang L, Zhu Q (2020) Dynamic games for secure and resilient control system design. Natl Sci Rev 7(7):1125–1141 Huang Y, Chen J, Huang L, Zhu Q (2020) Dynamic games for secure and resilient control system design. Natl Sci Rev 7(7):1125–1141
62.
go back to reference Huang Y, Ding L, Feng Y (2016) A novel epidemic spreading model with decreasing infection rate based on infection times. Physica A 444:1041–1048MathSciNetMATH Huang Y, Ding L, Feng Y (2016) A novel epidemic spreading model with decreasing infection rate based on infection times. Physica A 444:1041–1048MathSciNetMATH
63.
go back to reference Huang Y, Ding L, Feng Y, Pan J (2016) Epidemic spreading in random walkers with heterogeneous interaction radius. J Stat Mech: Theory Exp 2016(10):103501MathSciNetMATH Huang Y, Ding L, Feng Y, Pan J (2016) Epidemic spreading in random walkers with heterogeneous interaction radius. J Stat Mech: Theory Exp 2016(10):103501MathSciNetMATH
64.
go back to reference Huang Y, Kavitha V, Zhu Q (2019) Continuous-time Markov decision processes with controlled observations. In: 2019 57th annual Allerton conference on communication, control, and computing (Allerton). IEEE, pp 32–39 Huang Y, Kavitha V, Zhu Q (2019) Continuous-time Markov decision processes with controlled observations. In: 2019 57th annual Allerton conference on communication, control, and computing (Allerton). IEEE, pp 32–39
65.
go back to reference Huang Y, Zhu Q (2019) Achieving social optimum in dynamic weight adaptation for virus mitigation: a potential differential game approach. IFAC-PapersOnLine 52(20):241–246 Huang Y, Zhu Q (2019) Achieving social optimum in dynamic weight adaptation for virus mitigation: a potential differential game approach. IFAC-PapersOnLine 52(20):241–246
66.
go back to reference Huang Y, Zhu Q (2020) A differential game approach to decentralized virus-resistant weight adaptation policy over complex networks. IEEE Trans Control Netw Syst 7(2):944–955MathSciNetMATH Huang Y, Zhu Q (2020) A differential game approach to decentralized virus-resistant weight adaptation policy over complex networks. IEEE Trans Control Netw Syst 7(2):944–955MathSciNetMATH
67.
go back to reference Ibuka Y, Li M, Vietri J, Chapman GB, Galvani AP (2014) Free-riding behavior in vaccination decisions: an experimental study. PLoS ONE 9(1):e87164 Ibuka Y, Li M, Vietri J, Chapman GB, Galvani AP (2014) Free-riding behavior in vaccination decisions: an experimental study. PLoS ONE 9(1):e87164
68.
go back to reference Isaacs R (1999) Differential games: a mathematical theory with applications to warfare and pursuit, control and optimization. Courier Corporation Isaacs R (1999) Differential games: a mathematical theory with applications to warfare and pursuit, control and optimization. Courier Corporation
70.
go back to reference Kephart JO, White SR (1992) Directed-graph epidemiological models of computer viruses. In: Computation: the micro and the macro view. World Scientific, pp 71–102 Kephart JO, White SR (1992) Directed-graph epidemiological models of computer viruses. In: Computation: the micro and the macro view. World Scientific, pp 71–102
71.
go back to reference Kermack WO, McKendrick AG (1932) Contributions to the mathematical theory of epidemics. II. The problem of endemicity. Proc R Soc Lond Ser A Contain Pap Math Phys Charact 138(834):55–83MATH Kermack WO, McKendrick AG (1932) Contributions to the mathematical theory of epidemics. II. The problem of endemicity. Proc R Soc Lond Ser A Contain Pap Math Phys Charact 138(834):55–83MATH
72.
go back to reference Khanafer A, Başar T, Gharesifard B (2014) Stability properties of infection diffusion dynamics over directed networks. In: 53rd IEEE conference on decision and control. IEEE, pp 6215–6220 Khanafer A, Başar T, Gharesifard B (2014) Stability properties of infection diffusion dynamics over directed networks. In: 53rd IEEE conference on decision and control. IEEE, pp 6215–6220
73.
go back to reference Khouzani M, Sarkar S, Altman E (2011) Saddle-point strategies in malware attack. IEEE J Sel Areas Commun 30(1):31–43 Khouzani M, Sarkar S, Altman E (2011) Saddle-point strategies in malware attack. IEEE J Sel Areas Commun 30(1):31–43
74.
go back to reference Khouzani M, Sarkar S, Altman E (2012) Maximum damage malware attack in mobile wireless networks. IEEE/ACM Trans Netw 20(5):1347–1360 Khouzani M, Sarkar S, Altman E (2012) Maximum damage malware attack in mobile wireless networks. IEEE/ACM Trans Netw 20(5):1347–1360
75.
go back to reference Köhler J, Schwenkel L, Koch A, Berberich J, Pauli P, Allgöwer F (2020) Robust and optimal predictive control of the covid-19 outbreak. Ann Rev Control Köhler J, Schwenkel L, Koch A, Berberich J, Pauli P, Allgöwer F (2020) Robust and optimal predictive control of the covid-19 outbreak. Ann Rev Control
76.
go back to reference Kryscio RJ, Lefévre C (1989) On the extinction of the S-I-S stochastic logistic epidemic. J Appl Probab 26(4):685–694MathSciNetMATH Kryscio RJ, Lefévre C (1989) On the extinction of the S-I-S stochastic logistic epidemic. J Appl Probab 26(4):685–694MathSciNetMATH
77.
go back to reference Kim SB, Yoon M, Ku NS, Kim MH, Song JE, Ahn JY, Jeong SJ, Kim C, Kwon H-D, Lee J (2014) Mathematical modeling of HIV prevention measures including pre-exposure prophylaxis on HIV incidence in South Korea. PloS ONE 9(3):e90080 Kim SB, Yoon M, Ku NS, Kim MH, Song JE, Ahn JY, Jeong SJ, Kim C, Kwon H-D, Lee J (2014) Mathematical modeling of HIV prevention measures including pre-exposure prophylaxis on HIV incidence in South Korea. PloS ONE 9(3):e90080
78.
go back to reference Lagos AR, Kordonis I, Papavassilopoulos G (2020) Games of social distancing during an epidemic: local vs statistical information. arXiv preprint arXiv:2007.05185 Lagos AR, Kordonis I, Papavassilopoulos G (2020) Games of social distancing during an epidemic: local vs statistical information. arXiv preprint arXiv:​2007.​05185
79.
go back to reference Lee W, Liu S, Tembine H, Li W, Osher S (2021) Controlling propagation of epidemics via mean-field control. SIAM J Appl Math 81(1):190–207MathSciNetMATH Lee W, Liu S, Tembine H, Li W, Osher S (2021) Controlling propagation of epidemics via mean-field control. SIAM J Appl Math 81(1):190–207MathSciNetMATH
80.
go back to reference Legenvre FX, Hayel Y, Altman E (2016) Potential game approach to virus attacks in network with general topology. In: International conference on network games, control, and optimization. Springer, pp 169–176 Legenvre FX, Hayel Y, Altman E (2016) Potential game approach to virus attacks in network with general topology. In: International conference on network games, control, and optimization. Springer, pp 169–176
81.
go back to reference Li K, Zhang H, Zhu G, Small M, Fu X (2019) Suboptimal control and targeted constant control for semi-random epidemic networks. IEEE Trans Syst Man Cybern Syst Li K, Zhang H, Zhu G, Small M, Fu X (2019) Suboptimal control and targeted constant control for semi-random epidemic networks. IEEE Trans Syst Man Cybern Syst
82.
go back to reference Li XJ, Li C, Li X (2017) Minimizing social cost of vaccinating network sis epidemics. IEEE Trans Netw Sci Eng 5(4):326–335 Li XJ, Li C, Li X (2017) Minimizing social cost of vaccinating network sis epidemics. IEEE Trans Netw Sci Eng 5(4):326–335
83.
go back to reference Liu X, Lin K, Wang L, Zhang H (2020) Stochastic evolutionary game analysis between special committees and CEO: incentive and supervision. Dyn Games Appl 11:1–18MathSciNetMATH Liu X, Lin K, Wang L, Zhang H (2020) Stochastic evolutionary game analysis between special committees and CEO: incentive and supervision. Dyn Games Appl 11:1–18MathSciNetMATH
84.
go back to reference Liu XT, Wu ZX, Zhang L (2012) Impact of committed individuals on vaccination behavior. Phys Rev E 86(5):051132 Liu XT, Wu ZX, Zhang L (2012) Impact of committed individuals on vaccination behavior. Phys Rev E 86(5):051132
85.
go back to reference Maggi L, De Pellegrini F, Reiffers A, Herings PJJ, Altman E (2014) Coordination of epidemic control policies: a game theoretic perspective. In: 2014 7th international conference on NETwork games, control and optimization (NetGCoop). IEEE, pp 180–187 Maggi L, De Pellegrini F, Reiffers A, Herings PJJ, Altman E (2014) Coordination of epidemic control policies: a game theoretic perspective. In: 2014 7th international conference on NETwork games, control and optimization (NetGCoop). IEEE, pp 180–187
86.
go back to reference Mahrouf M, Lotfi EM, Hattaf K, Yousfi N (2020) Non-pharmaceutical interventions and vaccination controls in a stochastic SIVR epidemic model. Differ Equ Dyn Syst 1–19 Mahrouf M, Lotfi EM, Hattaf K, Yousfi N (2020) Non-pharmaceutical interventions and vaccination controls in a stochastic SIVR epidemic model. Differ Equ Dyn Syst 1–19
87.
go back to reference Mai VS, Battou A, Mills K (2018) Distributed algorithm for suppressing epidemic spread in networks. IEEE Control Syst Lett 2(3):555–560MathSciNet Mai VS, Battou A, Mills K (2018) Distributed algorithm for suppressing epidemic spread in networks. IEEE Control Syst Lett 2(3):555–560MathSciNet
88.
go back to reference Masson AR, Hayel Y, Altman E (2017) Posting behavior dynamics and active filtering for content diversity in social networks. IEEE Trans Signal Inf Process Netw 3(2):376–387MathSciNet Masson AR, Hayel Y, Altman E (2017) Posting behavior dynamics and active filtering for content diversity in social networks. IEEE Trans Signal Inf Process Netw 3(2):376–387MathSciNet
90.
go back to reference Mercer TR, Salit M (2021) Testing at scale during the COVID-19 pandemic. Nat Rev Genet 22:1–12 Mercer TR, Salit M (2021) Testing at scale during the COVID-19 pandemic. Nat Rev Genet 22:1–12
92.
go back to reference Muggy L, Stamm JLH (2020) Decentralized beneficiary behavior in humanitarian supply chains: models, performance bounds, and coordination mechanisms. Ann Oper Res 284(1):333–365MathSciNetMATH Muggy L, Stamm JLH (2020) Decentralized beneficiary behavior in humanitarian supply chains: models, performance bounds, and coordination mechanisms. Ann Oper Res 284(1):333–365MathSciNetMATH
93.
go back to reference Nagurney A, Dutta P (2019) Supply chain network competition among blood service organizations: a generalized nash equilibrium framework. Ann Oper Res 275(2):551–586MathSciNetMATH Nagurney A, Dutta P (2019) Supply chain network competition among blood service organizations: a generalized nash equilibrium framework. Ann Oper Res 275(2):551–586MathSciNetMATH
94.
go back to reference Nåsell I (1996) The quasi-stationary distribution of the closed endemic SIS model. Adv Appl Probab 28(3):895–932MathSciNetMATH Nåsell I (1996) The quasi-stationary distribution of the closed endemic SIS model. Adv Appl Probab 28(3):895–932MathSciNetMATH
95.
go back to reference Netrapalli P, Sanghavi S (2012) Learning the graph of epidemic cascades. ACM SIGMETRICS Perform Eval Rev 40(1):211–222 Netrapalli P, Sanghavi S (2012) Learning the graph of epidemic cascades. ACM SIGMETRICS Perform Eval Rev 40(1):211–222
96.
go back to reference Newman M (2010) Networks: an introduction. Oxford University Press, OxfordMATH Newman M (2010) Networks: an introduction. Oxford University Press, OxfordMATH
97.
go back to reference Nowzari C, Preciado VM, Pappas GJ (2016) Analysis and control of epidemics: a survey of spreading processes on complex networks. IEEE Control Syst Mag 36(1):26–46MathSciNetMATH Nowzari C, Preciado VM, Pappas GJ (2016) Analysis and control of epidemics: a survey of spreading processes on complex networks. IEEE Control Syst Mag 36(1):26–46MathSciNetMATH
98.
go back to reference Ogura M, Preciado VM (2016) Efficient containment of exact sir Markovian processes on networks. In: 2016 IEEE 55th conference on decision and control (CDC). IEEE, pp 967–972 Ogura M, Preciado VM (2016) Efficient containment of exact sir Markovian processes on networks. In: 2016 IEEE 55th conference on decision and control (CDC). IEEE, pp 967–972
99.
go back to reference Omic J, Orda A, Van Mieghem P (2009) Protecting against network infections: a game theoretic perspective. In: IEEE INFOCOM 2009. IEEE, pp 1485–1493 Omic J, Orda A, Van Mieghem P (2009) Protecting against network infections: a game theoretic perspective. In: IEEE INFOCOM 2009. IEEE, pp 1485–1493
100.
go back to reference Panda M, Ali A, Chahed T, Altman E (2014) Tracking message spread in mobile delay tolerant networks. IEEE Trans Mob Comput 14(8):1737–1750 Panda M, Ali A, Chahed T, Altman E (2014) Tracking message spread in mobile delay tolerant networks. IEEE Trans Mob Comput 14(8):1737–1750
101.
go back to reference Paré PE, Beck CL, Başar, T (2020) Modeling, estimation, and analysis of epidemics over networks: an overview. Annu Rev Control Paré PE, Beck CL, Başar, T (2020) Modeling, estimation, and analysis of epidemics over networks: an overview. Annu Rev Control
102.
go back to reference Paré PE, Beck CL, Nedić A (2017) Epidemic processes over time-varying networks. IEEE Trans Control Netw Syst 5(3):1322–1334MathSciNetMATH Paré PE, Beck CL, Nedić A (2017) Epidemic processes over time-varying networks. IEEE Trans Control Netw Syst 5(3):1322–1334MathSciNetMATH
103.
go back to reference Parino F, Zino L, Porfiri M, Alessandro R (2021) Modelling and predicting the effect of social distancing and travel restrictions on covid-19 spreading. J R Soc Interface 18(175):20200875 Parino F, Zino L, Porfiri M, Alessandro R (2021) Modelling and predicting the effect of social distancing and travel restrictions on covid-19 spreading. J R Soc Interface 18(175):20200875
104.
go back to reference Pastor-Satorras R, Vespignani A (2001) Epidemic dynamics and endemic states in complex networks. Phys Rev E 63(6):066117 Pastor-Satorras R, Vespignani A (2001) Epidemic dynamics and endemic states in complex networks. Phys Rev E 63(6):066117
105.
go back to reference Pastor-Satorras R, Vespignani A (2001) Epidemic spreading in scale-free networks. Phys Rev Lett 86(14):3200 Pastor-Satorras R, Vespignani A (2001) Epidemic spreading in scale-free networks. Phys Rev Lett 86(14):3200
106.
go back to reference Patro GK, Chakraborty A, Banerjee A, Ganguly N (2020) Towards safety and sustainability: designing local recommendations for post-pandemic world. In: Fourteenth ACM conference on recommender systems, pp 358–367 Patro GK, Chakraborty A, Banerjee A, Ganguly N (2020) Towards safety and sustainability: designing local recommendations for post-pandemic world. In: Fourteenth ACM conference on recommender systems, pp 358–367
107.
go back to reference Pejó B, Biczók G (2020) Corona games: Masks, social distancing and mechanism design. In: Proceedings of the 1st ACM SIGSPATIAL international workshop on modeling and understanding the spread of COVID-19, pp 24–31 Pejó B, Biczók G (2020) Corona games: Masks, social distancing and mechanism design. In: Proceedings of the 1st ACM SIGSPATIAL international workshop on modeling and understanding the spread of COVID-19, pp 24–31
108.
go back to reference Pezzutto M, Rosselló NB, Schenato L, Garone E (2021) Smart testing and selective quarantine for the control of epidemics. Annu Rev Control Pezzutto M, Rosselló NB, Schenato L, Garone E (2021) Smart testing and selective quarantine for the control of epidemics. Annu Rev Control
109.
go back to reference Poletti P, Ajelli M, Merler S (2012) Risk perception and effectiveness of uncoordinated behavioral responses in an emerging epidemic. Math Biosci 238(2):80–89MathSciNetMATH Poletti P, Ajelli M, Merler S (2012) Risk perception and effectiveness of uncoordinated behavioral responses in an emerging epidemic. Math Biosci 238(2):80–89MathSciNetMATH
110.
go back to reference Poletti P, Caprile B, Ajelli M, Pugliese A, Merler S (2009) Spontaneous behavioural changes in response to epidemics. J Theor Biol 260(1):31–40MathSciNetMATH Poletti P, Caprile B, Ajelli M, Pugliese A, Merler S (2009) Spontaneous behavioural changes in response to epidemics. J Theor Biol 260(1):31–40MathSciNetMATH
111.
go back to reference Possieri C, Rizzo A (2019) A mathematical framework for modeling propagation of infectious diseases with mobile individuals. In: 2019 IEEE 58th conference on decision and control (CDC). IEEE, pp 3750–3755 Possieri C, Rizzo A (2019) A mathematical framework for modeling propagation of infectious diseases with mobile individuals. In: 2019 IEEE 58th conference on decision and control (CDC). IEEE, pp 3750–3755
112.
go back to reference Preciado VM, Zargham M, Enyioha C, Jadbabaie A, Pappas G (2013) Optimal vaccine allocation to control epidemic outbreaks in arbitrary networks. In: 52nd IEEE conference on decision and control. IEEE, pp 7486–7491 Preciado VM, Zargham M, Enyioha C, Jadbabaie A, Pappas G (2013) Optimal vaccine allocation to control epidemic outbreaks in arbitrary networks. In: 52nd IEEE conference on decision and control. IEEE, pp 7486–7491
113.
go back to reference Pretorius Carel, Stover John, Bollinger Lori, Bacaër Nicolas, Williams Brian (2010) Evaluating the cost-effectiveness of pre-exposure prophylaxis (PrEP) and its impact on HIV-1 transmission in South Africa. PLoS ONE 5(11):e13646 Pretorius Carel, Stover John, Bollinger Lori, Bacaër Nicolas, Williams Brian (2010) Evaluating the cost-effectiveness of pre-exposure prophylaxis (PrEP) and its impact on HIV-1 transmission in South Africa. PLoS ONE 5(11):e13646
114.
go back to reference Reluga TC (2010) Game theory of social distancing in response to an epidemic. PLoS Comput Biol 6(5):e1000793MathSciNet Reluga TC (2010) Game theory of social distancing in response to an epidemic. PLoS Comput Biol 6(5):e1000793MathSciNet
115.
go back to reference Reluga TC, Bauch CT, Galvani AP (2006) Evolving public perceptions and stability in vaccine uptake. Math Biosci 204(2):185–198MathSciNetMATH Reluga TC, Bauch CT, Galvani AP (2006) Evolving public perceptions and stability in vaccine uptake. Math Biosci 204(2):185–198MathSciNetMATH
116.
go back to reference Rhee I, Shin M, Hong S, Lee K, Kim SJ, Chong S (2011) On the levy-walk nature of human mobility. IEEE/ACM Trans Netw 19(3):630–643 Rhee I, Shin M, Hong S, Lee K, Kim SJ, Chong S (2011) On the levy-walk nature of human mobility. IEEE/ACM Trans Netw 19(3):630–643
117.
go back to reference Rieger MO, He-Ulbricht Y (2020) German and Chinese dataset on attitudes regarding COVID-19 policies, perception of the crisis, and belief in conspiracy theories. Data Brief 33:106384 Rieger MO, He-Ulbricht Y (2020) German and Chinese dataset on attitudes regarding COVID-19 policies, perception of the crisis, and belief in conspiracy theories. Data Brief 33:106384
118.
go back to reference Rothe C, Schunk M, Sothmann P, Bretzel G, Froeschl G, Wallrauch C, Zimmer T, Thiel V, Janke C, Guggemos W et al (2020) Transmission of 2019-NCOV infection from an asymptomatic contact in Germany. N Engl J Med 382(10):970–971 Rothe C, Schunk M, Sothmann P, Bretzel G, Froeschl G, Wallrauch C, Zimmer T, Thiel V, Janke C, Guggemos W et al (2020) Transmission of 2019-NCOV infection from an asymptomatic contact in Germany. N Engl J Med 382(10):970–971
119.
go back to reference Romer D, Jamieson KH (2020) Conspiracy theories as barriers to controlling the spread of COVID-19 in the US. Soc Sci Med 263:113356 Romer D, Jamieson KH (2020) Conspiracy theories as barriers to controlling the spread of COVID-19 in the US. Soc Sci Med 263:113356
120.
go back to reference Saha S, Adiga A, Vullikanti AKS (2014) Equilibria in epidemic containment games. In: Proceedings of the twenty-eighth AAAI conference on artificial intelligence, pp 777–783 Saha S, Adiga A, Vullikanti AKS (2014) Equilibria in epidemic containment games. In: Proceedings of the twenty-eighth AAAI conference on artificial intelligence, pp 777–783
122.
go back to reference Shen S, Li H, Han R, Vasilakos AV, Wang Y, Cao Q (2014) Differential game-based strategies for preventing malware propagation in wireless sensor networks. IEEE Trans Inf Forensics Secur 9(11):1962–1973 Shen S, Li H, Han R, Vasilakos AV, Wang Y, Cao Q (2014) Differential game-based strategies for preventing malware propagation in wireless sensor networks. IEEE Trans Inf Forensics Secur 9(11):1962–1973
123.
go back to reference Sparks R, Keighley T, Muscatello D (2011) Optimal exponentially weighted moving average (EWMA) plans for detecting seasonal epidemics when faced with non-homogeneous negative binomial counts. J Appl Stat 38(10):2165–2181MathSciNetMATH Sparks R, Keighley T, Muscatello D (2011) Optimal exponentially weighted moving average (EWMA) plans for detecting seasonal epidemics when faced with non-homogeneous negative binomial counts. J Appl Stat 38(10):2165–2181MathSciNetMATH
124.
go back to reference Stamm JLH, Serban N, Swann J, Wortley P (2017) Quantifying and explaining accessibility with application to the 2009 H1N1 vaccination campaign. Health Care Manag Sci 20(1):76–93 Stamm JLH, Serban N, Swann J, Wortley P (2017) Quantifying and explaining accessibility with application to the 2009 H1N1 vaccination campaign. Health Care Manag Sci 20(1):76–93
125.
126.
go back to reference Tembine H, Le Boudec JY, El-Azouzi R, Altman E (2009) Mean field asymptotics of Markov decision evolutionary games and teams. In: 2009 international conference on game theory for networks. IEEE, pp 140–150 Tembine H, Le Boudec JY, El-Azouzi R, Altman E (2009) Mean field asymptotics of Markov decision evolutionary games and teams. In: 2009 international conference on game theory for networks. IEEE, pp 140–150
127.
go back to reference Theodorakopoulos G, Le Boudec JY, Baras JS (2012) Selfish response to epidemic propagation. IEEE Trans Autom Control 58(2):363–376MathSciNetMATH Theodorakopoulos G, Le Boudec JY, Baras JS (2012) Selfish response to epidemic propagation. IEEE Trans Autom Control 58(2):363–376MathSciNetMATH
129.
go back to reference Trajanovski S, Hayel Y, Altman E, Wang H, Van Mieghem P (2015) Decentralized protection strategies against sis epidemics in networks. IEEE Trans Control Netw Syst 2(4):406–419MathSciNetMATH Trajanovski S, Hayel Y, Altman E, Wang H, Van Mieghem P (2015) Decentralized protection strategies against sis epidemics in networks. IEEE Trans Control Netw Syst 2(4):406–419MathSciNetMATH
130.
go back to reference Trajanovski S, Kuipers FA, Hayel Y, Altman E, Van Mieghem P (2017) Designing virus-resistant, high-performance networks: a game-formation approach. IEEE Trans Control Netw Syst 5(4):1682–1692MathSciNetMATH Trajanovski S, Kuipers FA, Hayel Y, Altman E, Van Mieghem P (2017) Designing virus-resistant, high-performance networks: a game-formation approach. IEEE Trans Control Netw Syst 5(4):1682–1692MathSciNetMATH
131.
go back to reference Tsemogne O, Hayel Y, Kamhoua C, Deugoué G (2021) Game theoretic modeling of cyber deception against epidemic botnets in internet of things. IEEE Internet Things J Tsemogne O, Hayel Y, Kamhoua C, Deugoué G (2021) Game theoretic modeling of cyber deception against epidemic botnets in internet of things. IEEE Internet Things J
132.
go back to reference Valler NC, Prakash BA, Tong H, Faloutsos M, Faloutsos C (2011) Epidemic spread in mobile ad hoc networks: determining the tipping point. In: International conference on research in networking. Springer, pp 266–280 Valler NC, Prakash BA, Tong H, Faloutsos M, Faloutsos C (2011) Epidemic spread in mobile ad hoc networks: determining the tipping point. In: International conference on research in networking. Springer, pp 266–280
133.
go back to reference Van Mieghem P, van de Bovenkamp R (2015) Accuracy criterion for the mean-field approximation in susceptible–infected–susceptible epidemics on networks. Phys Rev E 91(3):032812 Van Mieghem P, van de Bovenkamp R (2015) Accuracy criterion for the mean-field approximation in susceptible–infected–susceptible epidemics on networks. Phys Rev E 91(3):032812
134.
go back to reference Van Mieghem P, Omic J, Kooij R (2008) Virus spread in networks. IEEE/ACM Trans Netw 17(1):1–14 Van Mieghem P, Omic J, Kooij R (2008) Virus spread in networks. IEEE/ACM Trans Netw 17(1):1–14
136.
go back to reference Wang J, Wang W, Wang C (2020) Modeling and analysis of conflicting information propagation in a finite time horizon. IEEE/ACM Trans Netw 28(3):972–985 Wang J, Wang W, Wang C (2020) Modeling and analysis of conflicting information propagation in a finite time horizon. IEEE/ACM Trans Netw 28(3):972–985
137.
go back to reference Wang Y, Chakrabarti D, Wang C, Faloutsos C (2003) Epidemic spreading in real networks: An eigenvalue viewpoint. In: 22nd international symposium on reliable distributed systems, 2003. Proceedings. IEEE, pp 25–34 Wang Y, Chakrabarti D, Wang C, Faloutsos C (2003) Epidemic spreading in real networks: An eigenvalue viewpoint. In: 22nd international symposium on reliable distributed systems, 2003. Proceedings. IEEE, pp 25–34
138.
go back to reference Wang Z, Xia C, Chen Z, Chen G (2020) Epidemic propagation with positive and negative preventive information in multiplex networks. IEEE Trans Cybern 51(1454):1462 Wang Z, Xia C, Chen Z, Chen G (2020) Epidemic propagation with positive and negative preventive information in multiplex networks. IEEE Trans Cybern 51(1454):1462
139.
go back to reference Watkins NJ, Nowzari C, Pappas GJ (2019) Robust economic model predictive control of continuous-time epidemic processes. IEEE Trans Autom Control 65(3):1116–1131MathSciNetMATH Watkins NJ, Nowzari C, Pappas GJ (2019) Robust economic model predictive control of continuous-time epidemic processes. IEEE Trans Autom Control 65(3):1116–1131MathSciNetMATH
140.
go back to reference Watkins NJ, Nowzari C, Preciado VM, Pappas GJ (2016) Optimal resource allocation for competitive spreading processes on bilayer networks. IEEE Trans Control Netw Syst 5(1):298–307MathSciNetMATH Watkins NJ, Nowzari C, Preciado VM, Pappas GJ (2016) Optimal resource allocation for competitive spreading processes on bilayer networks. IEEE Trans Control Netw Syst 5(1):298–307MathSciNetMATH
141.
go back to reference Xu Z, Khanafer A, Başar T (2015) Competition over epidemic networks: Nash and Stackelberg games. In: 2015 American control conference (ACC). IEEE, pp 2063–2068 Xu Z, Khanafer A, Başar T (2015) Competition over epidemic networks: Nash and Stackelberg games. In: 2015 American control conference (ACC). IEEE, pp 2063–2068
142.
go back to reference Xue D, Hirche S (2018) Distributed topology manipulation to control epidemic spreading over networks. IEEE Trans Signal Process 67(5):1163–1174MathSciNetMATH Xue D, Hirche S (2018) Distributed topology manipulation to control epidemic spreading over networks. IEEE Trans Signal Process 67(5):1163–1174MathSciNetMATH
143.
go back to reference Yaesoubi R, Cohen T (2011) Generalized Markov models of infectious disease spread: a novel framework for developing dynamic health policies. Eur J Oper Res 215(3):679–687MathSciNetMATH Yaesoubi R, Cohen T (2011) Generalized Markov models of infectious disease spread: a novel framework for developing dynamic health policies. Eur J Oper Res 215(3):679–687MathSciNetMATH
144.
go back to reference Yang W (2021) Modeling COVID-19 pandemic with hierarchical quarantine and time delay. Dyn Games Appl 1–23 Yang W (2021) Modeling COVID-19 pandemic with hierarchical quarantine and time delay. Dyn Games Appl 1–23
145.
go back to reference Zhang HF, Yang Z, Wu ZX, Wang BH, Zhou T (2013) Braess’s paradox in epidemic game: better condition results in less payoff. Sci Rep 3(1):1–8 Zhang HF, Yang Z, Wu ZX, Wang BH, Zhou T (2013) Braess’s paradox in epidemic game: better condition results in less payoff. Sci Rep 3(1):1–8
146.
go back to reference Zhang L, Xu J (2019) Differential security game in heterogeneous device-to-device offloading network under epidemic risks. IEEE Trans Netw Sci Eng 7(3):1852–1861MathSciNet Zhang L, Xu J (2019) Differential security game in heterogeneous device-to-device offloading network under epidemic risks. IEEE Trans Netw Sci Eng 7(3):1852–1861MathSciNet
148.
go back to reference Zhao D, Wang L, Wang Z, Xiao G (2018) Virus propagation and patch distribution in multiplex networks: modeling, analysis, and optimal allocation. IEEE Trans Inf Forensics Secur 14(7):1755–1767 Zhao D, Wang L, Wang Z, Xiao G (2018) Virus propagation and patch distribution in multiplex networks: modeling, analysis, and optimal allocation. IEEE Trans Inf Forensics Secur 14(7):1755–1767
149.
go back to reference Zhu L, Zhou X, Li Y, Zhu Y (2019) Stability and bifurcation analysis on a delayed epidemic model with information-dependent vaccination. Phys Scr 94(12):125202 Zhu L, Zhou X, Li Y, Zhu Y (2019) Stability and bifurcation analysis on a delayed epidemic model with information-dependent vaccination. Phys Scr 94(12):125202
Metadata
Title
Game-Theoretic Frameworks for Epidemic Spreading and Human Decision-Making: A Review
Authors
Yunhan Huang
Quanyan Zhu
Publication date
14-02-2022
Publisher
Springer US
Published in
Dynamic Games and Applications / Issue 1/2022
Print ISSN: 2153-0785
Electronic ISSN: 2153-0793
DOI
https://doi.org/10.1007/s13235-022-00428-0

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