Logo-ijhpm
Int J Health Policy Manag. 2020;9(12): 508-516. doi: 10.34172/ijhpm.2020.130
PMID: 32729281        PMCID: PMC7947653

Original Article

COVID-19 Intervention Scenarios for a Long-term Disease Management

Gudrun Wallentin 1 * ORCID, Dana Kaziyeva 1, Eva Reibersdorfer-Adelsberger 1

Cited by CrossRef:


1- Tang J, Vinayavekhin S, Weeramongkolkul M, Suksanon C, Pattarapremcharoen K, Thiwathittayanuphap S, Leelawat N. Agent-Based Simulation and Modeling of COVID-19 Pandemic: A Bibliometric Analysis. JDR. 2022;17(1):93 [Crossref]
2- Jonnalagadda S, Prathyusha Y, Kumar V, Aparna Y. Systematic Review and Meta Analysis on Symptoms and Comorbidities Associated with COVID-19 Disease. J Pure Appl Microbiol. 2022;16(4):2337 [Crossref]
3- Jia S, Meng X, Zhang T. THE EFFECTIVENESS OF HUMAN INTERVENTIONS AGAINST COVID-19 BASED ON EVOLUTIONARY GAME THEORY. jaac. 2022;12(5):1748 [Crossref]
4- Pozo-Martin F, Beltran Sanchez M, Müller S, Diaconu V, Weil K, El Bcheraoui C. Comparative effectiveness of contact tracing interventions in the context of the COVID-19 pandemic: a systematic review. Eur J Epidemiol. 2023;38(3):243 [Crossref]
5- MacRury C, Polituchyi N, Prałat P, Siuta K, Szufel P. Optimizing transport frequency in multi-layered urban transportation networks for pandemic prevention. Public Transp. 2024;16(2):381 [Crossref]
6- Maslova I, Manolov A, Glushchenko O, Kozlov I, Tsurkis V, Popov N, Samoilov A, Lukashev A, Ilina E. Limitations in creating artificial populations in agent-based epidemic modeling: a systematic review. Journal of microbiology, epidemiology and immunobiology. 2024;101(4):530 [Crossref]
7- Li J, Giabbanelli P. Returning to a Normal Life via COVID-19 Vaccines in the United States: A Large-scale Agent-Based Simulation Study. JMIR Med Inform. 2021;9(4):e27419 [Crossref]
8- Kolasa K, Mazzi F, Leszczuk-Czubkowska E, Zrubka Z, Péntek M. State of the Art in Adoption of Contact Tracing Apps and Recommendations Regarding Privacy Protection and Public Health: Systematic Review. JMIR Mhealth Uhealth. 2021;9(6):e23250 [Crossref]
9- Petropoulos F, Apiletti D, Assimakopoulos V, Babai M, Barrow D, Ben Taieb S, Bergmeir C, Bessa R, Bijak J, Boylan J, Browell J, Carnevale C, Castle J, Cirillo P, Clements M, Cordeiro C, Cyrino Oliveira F, De Baets S, Dokumentov A, Ellison J, Fiszeder P, Franses P, Frazier D, Gilliland M, Gönül M, Goodwin P, Grossi L, Grushka-Cockayne Y, Guidolin M, Guidolin M, Gunter U, Guo X, Guseo R, Harvey N, Hendry D, Hollyman R, Januschowski T, Jeon J, Jose V, Kang Y, Koehler A, Kolassa S, Kourentzes N, Leva S, Li F, Litsiou K, Makridakis S, Martin G, Martinez A, Meeran S, Modis T, Nikolopoulos K, Önkal D, Paccagnini A, Panagiotelis A, Panapakidis I, Pavía J, Pedio M, Pedregal D, Pinson P, Ramos P, Rapach D, Reade J, Rostami-Tabar B, Rubaszek M, Sermpinis G, Shang H, Spiliotis E, Syntetos A, Talagala P, Talagala T, Tashman L, Thomakos D, Thorarinsdottir T, Todini E, Trapero Arenas J, Wang X, Winkler R, Yusupova A, Ziel F. Forecasting: theory and practice. International Journal of Forecasting. 2022;38(3):705 [Crossref]
10- Fu M, Wang L, Zhu J, Zheng B, Uddin M. [Retracted] Emergency Optimization Decision‐Making with Incomplete Probabilistic Information under the Background of COVID‐19. Complexity. 2021;2021(1) [Crossref]
11- Belval E, Bayham J, Thompson M, Dilliott J, Buchwald A. Modeling the systemic risks of COVID-19 on the wildland firefighting workforce. Sci Rep. 2022;12(1) [Crossref]
12- Kaszowska-Mojsa J, Włodarczyk P. To Freeze or Not to Freeze? Epidemic Prevention and Control in the DSGE Model Using an Agent-Based Epidemic Component. Entropy. 2020;22(12):1345 [Crossref]