Effect of temperature on fast transmission of COVID-19 in low per … – Nature.com

Green, M. H. How a microbe becomes a pandemic: A new story of the Black Death. Lancet Microbe 1, e311e312 (2020).

Article CAS PubMed Google Scholar

Keilman, L. J. Seasonal influenza (Flu). Nurs. Clin. North Am. 54, 227243 (2019).

Article PubMed Google Scholar

Bos, K. I. et al. A draft genome of Yersinia pestis from victims of the Black Death. Nature 478, 506510 (2011).

Article ADS CAS PubMed PubMed Central Google Scholar

Djalante, R. et al. Review and analysis of current responses to COVID-19 in Indonesia: Period of January to March 2020. Progress Disast. Sci. 6, 100091 (2020).

Article Google Scholar

Gould, E. Emerging viruses and the significance of climate change. Clin. Microbiol. Infect. 15, 503 (2009).

Article CAS PubMed Google Scholar

Malik, S., Hussain, S. & Waqas, M. S. effect of water quality and different meals on growth of Catla catla and Labeo rohita. Big Data Water Resour. Eng. 1, 0408 (2020).

Article Google Scholar

Kandel, N., Chungong, S., Omaar, A. & Xing, J. Health security capacities in the context of COVID-19 outbreak: An analysis of International Health Regulations annual report data from 182 countries. Lancet 395, 10471053 (2020).

Article CAS PubMed PubMed Central Google Scholar

WHO. Country & technical guidance-coronavirus disease. COVID-19. (2019).

Chaudhry, A. K. & Sachdeva, P. Coronavirus disease 2019 (COVID-19): A new challenge in untreated wastewater. Can. J. Civ. Eng. 47, 10051009 (2020).

Article CAS Google Scholar

Zhu, N. et al. A novel coronavirus from patients with pneumonia in China, 2019. N. Engl. J. Med. 382, 727733 (2020).

Article CAS PubMed PubMed Central Google Scholar

Shang, Y., Tao, Y., Dong, J., He, F. & Tu, J. Deposition features of inhaled viral droplets may lead to rapid secondary transmission of COVID-19. J. Aerosol. Sci. 154, 105745 (2021).

Article CAS PubMed PubMed Central Google Scholar

Huang, J. et al. The oscillation-outbreaks characteristic of the COVID-19 pandemic. Natl. Sci. Rev. 8, 20 (2021).

Article Google Scholar

Mou, J. Research on the impact of COVID19 on global economy. IOP Conf. Ser. Earth Environ. Sci. 546, 032043 (2020).

Article Google Scholar

El Keshky, M. E. S., Basyouni, S. S. & Al Sabban, A. M. Getting through COVID-19: The Pandemics impact on the psychology of sustainability, quality of life, and the global economya systematic review. Front. Psychol. 11, 25 (2020).

Article Google Scholar

Beckman, J., Baquedano, F. & Countryman, A. The impacts of COVID-19 on GDP, food prices, and food security. Q Open 1, 25 (2021).

Article Google Scholar

Rasul, G. Twin challenges of COVID-19 pandemic and climate change for agriculture and food security in South Asia. Environ. Challenges 2, 100027 (2021).

Article CAS Google Scholar

Islam, Z. et al. Food security, conflict, and COVID-19: Perspective from Afghanistan. Am. J. Trop. Med. Hyg. 106, 2124 (2022).

Article CAS Google Scholar

Islam, M., Jannat, A., AlRafi, D. A. & Aruga, K. Potential economic impacts of the COVID-19 pandemic on South Asian economies: A review. World 1, 283299 (2020).

Article Google Scholar

MSPI. Ministry of Statistics and Programme Implementation (2020).

FAO. Responding to the Impact of the COVID-19 Outbreak on Food Value Chains Through Efficient Logistics (FAO, 2020). https://doi.org/10.4060/ca8466en

Book Google Scholar

UNICEF. Water, Sanitation, Hygiene, and Waste Management for the COVID-19 Virus: Interim Guidance (2020).

Sumner, A., Hoy, C. & Ortiz-Juarez, E. Estimates of the Impact of COVID-19 on Global Poverty Vol. 2020 (UNU-WIDER, 2020).

Book Google Scholar

Yokomatsu, M. et al. A multi-sector multi-region economic growth model of drought and the value of water: A case study in Pakistan. Int. J. Disast. Risk Reduct. 43, 101368 (2020).

Article Google Scholar

Iqbal, M. M., Shoaib, M., Farid, H. U. & Lee, J. L. Assessment of water quality profile using numerical modeling approach in major climate classes of Asia. Int. J. Environ. Res. Public Health 15, 2258 (2018).

Article PubMed PubMed Central Google Scholar

IPCC. AR4 Climate Change 2007: The Physical Science Basis (2007).

Hridoy, A.-E.E., Mohiman, A., Tusher, S. S. H., Nowraj, S. Z. A. & Rahman, M. A. Impact of meteorological parameters on COVID-19 transmission in Bangladesh: A spatiotemporal approach. Theor. Appl. Climatol. 144, 273285 (2021).

Article ADS PubMed PubMed Central Google Scholar

Sarkodie, S. A. & Owusu, P. A. Impact of meteorological factors on COVID-19 pandemic: Evidence from top 20 countries with confirmed cases. Environ. Res. 191, 110101 (2020).

Article CAS PubMed PubMed Central Google Scholar

Bochenek, B. et al. Impact of meteorological conditions on the dynamics of the COVID-19 pandemic in Poland. Int. J. Environ. Res. Public Health 18, 3951 (2021).

Article CAS PubMed PubMed Central Google Scholar

Huang, Z. et al. Optimal temperature zone for the dispersal of COVID-19. Sci. Total Environ. 736, 139487 (2020).

Article ADS CAS PubMed PubMed Central Google Scholar

Huang, J. et al. Global prediction system for COVID-19 pandemic. Sci. Bull. (Beijing) 65, 18841887 (2020).

Article ADS CAS PubMed Google Scholar

Liang, L. & Gong, P. Climate change and human infectious diseases: A synthesis of research findings from global and spatio-temporal perspectives. Environ. Int. 103, 99108 (2017).

Article PubMed Google Scholar

Bourdrel, T., Bind, M.-A., Bjot, Y., Morel, O. & Argacha, J.-F. Cardiovascular effects of air pollution. Arch. Cardiovasc. Dis. 110, 634642 (2017).

Article PubMed PubMed Central Google Scholar

Wu, X., Lu, Y., Zhou, S., Chen, L. & Xu, B. Impact of climate change on human infectious diseases: Empirical evidence and human adaptation. Environ. Int. 86, 1423 (2016).

Article PubMed Google Scholar

Lipfert, F. W. Long-term associations of morbidity with air pollution: A catalog and synthesis. J. Air Waste Manage. Assoc. 68, 1228 (2018).

Article CAS Google Scholar

Lee, B.-J., Kim, B. & Lee, K. Air pollution exposure and cardiovascular disease. Toxicol. Res. 30, 7175 (2014).

Article CAS PubMed PubMed Central Google Scholar

Yamasaki, L., Murayama, H. & Hashizume, M. The impact of temperature on the transmissibility and virulence of COVID-19 in Tokyo, Japan. Sci. Rep. 11, 24477 (2021).

Article ADS CAS PubMed PubMed Central Google Scholar

Yang, H.-Y. & Lee, J. K. W. The impact of temperature on the risk of COVID-19: A multinational study. Int. J. Environ. Res. Public Health 18, 4052 (2021).

Article CAS PubMed PubMed Central Google Scholar

Sasikumar, K., Nath, D., Nath, R. & Chen, W. Impact of extreme hot climate on COVID-19 outbreak in India. Geohealth 4, 25 (2020).

Article Google Scholar

Ganslmeier, M., Furceri, D. & Ostry, J. D. The impact of weather on COVID-19 pandemic. Sci. Rep. 11, 22027 (2021).

Article ADS CAS PubMed PubMed Central Google Scholar

Ritchie, H. Coronavirus Source Data. https://ourworldindata.org/coronavirus-source-data (2021).

CDCW. Climate Data. https://en.climate-data.org/asia/ (2020).

IMF. World Economic Outlook Databases. (2020).

Altamimi, A. & Ahmed, A. E. Climate factors and incidence of Middle East respiratory syndrome coronavirus. J. Infect. Public Health 13, 704708 (2020).

Article PubMed Google Scholar

Abduljalil, J. M. & Abduljalil, B. M. Epidemiology, genome, and clinical features of the pandemic SARS-CoV-2: A recent view. New Microbes New Infect. 35, 100672 (2020).

Article CAS PubMed PubMed Central Google Scholar

Jahangiry, L. et al. Risk perception related to COVID-19 among the Iranian general population: An application of the extended parallel process model. BMC Public Health 20, 1571 (2020).

Article CAS PubMed PubMed Central Google Scholar

Originally posted here:

Effect of temperature on fast transmission of COVID-19 in low per ... - Nature.com

Related Posts
Tags: