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The Impact of COVID-19 Pandemic on Population Mobility in the Czech Republic and Slovakia


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World Health Organization. (2006, October). SARS: how a global epidemic was stopped. WHO Regional Office for the Western Pacific. Retrieved November 10, 2022, from https://apps.who.int/iris/handle/10665/207501 Search in Google Scholar

Maier, B.F. & Brockmann, D. (2020). Effective containment explains subexponential growth in recent confirmed COVID-19 cases in China. Science 368(6492), 742-746. DOI: 10.1126/science.abb4557. Open DOISearch in Google Scholar

Bulková, Z., Židová, Z., Gašparík, J., Zitrický, V. & Pečený, L. (2022, October). COVID.19 measures and rail transport market in Slovakia – impacts and consequences. In 22nd International Scientific Conference Globalization and its socio-economic consequences 2022, 12-13 October 2022 (123-132). Rajecké Teplice, Slovak Republic. Retrieved MMMM DD, YYYY, from https://globalizacia.com/wp-content/uploads/2023/02/Globalizacia_2022.pdf Search in Google Scholar

Salvador, C.E., Berg, M.K., Yu, Q., Martin, A.S. & Kitayama, S. (2020). Relational Mobility Predicts Faster Spread of COVID-19: A 39-Country Study. Psychological Science 31(10), 1236-1244. DOI: 10.1177/0956797620958118. Open DOISearch in Google Scholar

Andersen, K.G., Rambaut, A., Lipkin, W.I., Holmes, E.C. & Garry, R.F. (2020). The proximal origin of SARS-CoV-2. Nature Medicine 26(4), 450-452. DOI: 10.1038/s41591-020-0820-9. Open DOISearch in Google Scholar

Štefancová, V., Čulík, K., Hudcovič, T. & Kubaľák, S. (2022, October). Impact of the COVID-19 pandemic on urban public transport - A case study in Slovakia. In 26th International Scientific Conference Transport Means 2022, 5-7 October 2022 (pp. 22-26). Kaunas, Lithuania, Virtual. Retrieved MMMM DD, YYYY, from https://transportmeans.ktu.edu/wp-content/uploads/sites/307/2023/02/Transport-Means-2022-Part-I.pdf Search in Google Scholar

Mendolia, S., Stavrunova, O. & Yerokhin, O. (2021). Determinants of the community mobility during the COVID-19 epidemic: The role of government regulations and information. Journal of Economic Behavior & Organization 184, 199-231. DOI: 10.1016/j.jebo.2021.01.023. Open DOISearch in Google Scholar

Harantová, V., Mazanec, J., Štefancová, V., Mašek, J. & Foltýnová, H.B. (2023). Two-step cluster analysis of passenger mobility segmentation during the COVID-19 pandemic. Mathematics 11(3). DOI: 10.3390/math11030583. Open DOISearch in Google Scholar

Bundza, O.Z., Sakhno, V.P., Poliakov, V.M. & Yashchenko, D.M. (2020). Mobility of the metrobus. Ways of improvement. The Archives of Automotive Engineering – Archiwum Motoryzacji 89(3), 61-73. DOI: 10.14669/AM.VOL89.ART5. Open DOISearch in Google Scholar

Askitas, N., Tatsiramos, K. & Verheyden, B. (2020, March). Lockdown Strategies, Mobility Patterns and COVID-19. IZA – Institute of Labor Economics. Discussion Paper, 13293. Retrieved November 10, 2022, from https://www.iza.org/en/publications/dp/13293/lockdown-strategies-mobility-patterns-and-covid-19 Search in Google Scholar

Boot, Arnoud W.A., Carletti, E. Haselmann, R., Kotz, H.H., Krahnen, J.P., Pelizzon, L., Schaefer, S.M. & Subrahmanyam, M.G. (2020, March). The Coronavirus and financial stability. SAFE Policy Letters 78, Leibniz Institute for Financial Research SAFE. Retrieve November 10, 2022, from https://ideas.repec.org/p/zbw/safepl/78.html Search in Google Scholar

Cresswell, T. (2021). Valuing mobility in a post COVID-19 world. Mobilities 16(1), 51-65. DOI: 10.1080/17450101.2020.1863550. Open DOISearch in Google Scholar

Brail, S. (2021). Patterns amidst the turmoil: COVID-19 and cities. Environment and Planning B: Urban Analytics and City Science 48(4), 598-603. DOI: 10.1177/23998083211009638. Open DOISearch in Google Scholar

Awad-Núñez, S., Julio, R., Moya-Gómez, B., Gomez, J. & Sastre González, J. (2021). Acceptability of sustainable mobility policies under a post-COVID-19 scenario. Evidence from Spain. Transport Policy 106, 205-214. DOI: 10.1016/j.tranpol.2021.04.010. Open DOISearch in Google Scholar

Girardot, K. & Pancake, L. (2022). Outcomes of a COVID Mobility Team. Clinical Nurse Specialist 36(3), 153-160. DOI: 10.1097/NUR.0000000000000671. Open DOISearch in Google Scholar

Palguta, J., Levínský, R. & Škoda, S. (2022). Do elections accelerate the COVID-19 pandemic? Journal of Population Economics 35, 197-240. DOI: 10.1007/s00148-021-00870-l. Open DOISearch in Google Scholar

Carteni, A., Di Francesco, L. & Martino, M. (2020). How mobility habits influenced the spread of the COVID-19 pandemic: Results from the Italian case study. The Science of the total environment 741, 140489. DOI: 10.1016/i.scitotenv.2020.140489. Open DOISearch in Google Scholar

Caselli, F., Grigoli, F., Sandri, D. & Spilimbergo, A. (2022). Mobility Under the COVID-19 Pandemic: Asymmetric Effects Across Gender and Age. IMF Economic Review 70, 105-138. DOI: 10.1057/s41308-021-00149-l. Open DOISearch in Google Scholar

Chan-Yeung, M. & Xu, R.H. (2003). SARS: epidemiology. Respirology 8(1), 9-14. DOI: 10.1046/Í.1440-1843.2003.00518.X. Open DOISearch in Google Scholar

Donnelly, C.A., Malik, M.R., Elkholy, A., Cauchemez, S. & Van Kerkhove, M.D. (2019). Worldwide Reduction in MERS Cases and Deaths since 2016. Emerging infectious diseases 25(9), 1758-1760. DOI: 10.3201/eid2509.190143. Open DOISearch in Google Scholar

Kahanec, M., Lafférs, L. & Schmidpeter, B. (2021). The impact of repeated mass antigen testing for COVID-19 on the prevalence of the disease. Journal of Population Economics 34(4), 1105-1140. DOI: 10.1007/s00148-021-00856-z. Open DOISearch in Google Scholar

Iacus, S.M., Santamaria, C., Sermi, F., Spyratos, S., Tarchi, D. & Vespe, M. (2020). Human mobility and COVID-19 initial dynamics. Nonlinear Dynamics 101(3), 1901-1919. DOI: 10.1007/s11071-020-05854-6. Open DOISearch in Google Scholar

Iaquinto, B.L. (2020). Tourist as vector: Viral mobilities of COVID-19. Dialogues in Human Geography 10(2), 174-177. DOI: 10.1177/2043820620934250. Open DOISearch in Google Scholar

Heiler, G., Reisch, T., Hurt, J., Forghani, M., Omani, A., Hanbury, A. & Karimipour, F. (2020). Country-wide Mobility Changes Observed Using Mobile Phone Data During COVID-19 Pandemic. In 8th IEEE International Conference on Big Data 2020, 10-13 December 2020 (3123-3132), Virtual, Atlanta. DOI: 10.1109/BigData50022.2020.9378374. Open DOISearch in Google Scholar

Kellerman, A. (2022). Personal Spatial Mobilities after the COVID-19 Pandemic: A Speculative View. Journal of Urban Technology 29(3), 145-158. DOI: 10.1080/10630732.2022.2044743. Open DOISearch in Google Scholar

Bulková, Z., Dedík, M., Štefancová, V. & Gašparík, J. (2022, October). Proposal of the systematic measures to support rail passenger transport during the pandemic period. In 26th International Scientific Conference Transport Means 2022, 5-7 October 2022 (pp. 378-383). Kaunas, Lithuania, Virtual. Retrieved MMMM DD, YYYY, from https://transportmeans.ktu.edu/wp-content/uploads/sites/307/2023/02/Transport-Means-2022-Part-I.pdf Search in Google Scholar

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