Akaike H (1970) Statistical predictor identification. Ann Inst Stat Math 22(1):203–217
Google Scholar
Arnold C (2014) Disease burdens associated with PM2.5 exposure: how a new model provided global estimates. Environ. Health Perspect 122(4):397–403
Google Scholar
Chauhan AJ (2003) Air pollution and infection in respiratory illness. Br Med Bull 68(1):95–112
CAS
Google Scholar
Chen PS, Tsai FT, Lin CK, Yang CY, Chan CC, Young CY, Lee CH (2010) Ambient influenza and avian influenza virus during dust storm days and background days. Environ Health Perspect 118(9):1211–1216
CAS
Google Scholar
Chen BH, Sumi A, Toyoda S, Hu Q, Zhou DJ, Mise K et al (2015) Time series analysis of reported cases of hand, foot, and mouth disease from 2010 to 2013 in WuHan, China. BMC Infect Dis 15(1):495–509
Google Scholar
Chen G, Zhang W, Li S, Williams G, Liu C, Morgan GG, Jaakkola JJK, Guo Y (2017) Is short-term exposure to ambient fine particles associated with measles incidence in China? A multi-city study. Environ Res 156:306–311
CAS
Google Scholar
Chow JC (2006) Health effects of fine particulate air pollution: lines that connect. J Air Waste Manage Assoc 56(6):707–708
CAS
Google Scholar
Cui J, Yin P, Wang LJ, Liu SW, Li YC, Liu YN et al (2016) Burden of chronic obstructive pulmonary disease attributable to ambient ozone pollution in 1990 and 2013 in China. Chin J Prev Med 50(5):391–396
CAS
Google Scholar
De Jong JG (1965) The survival of measles virus in air, in relation to the epidemiology of measles. Arch Gesamte Virusforsch 16:97–102
Google Scholar
De Jong JG, Winkler KC (1963) Survival of measles virus in air. Antonie Van Leeuwenhoek 29(1):327–328
Google Scholar
Dockery DW (2009) Health effects of particulate air pollution. Ann Epidemiol 19:257–263
Google Scholar
Dominici F, Mcdermott A, Zeger SL, Samet JM (2002) On the use of generalized additive models in time-series studies of air pollution and health. Am J Epidemiol 156(3):193–203
Google Scholar
Faustini A, Rapp R, Forastiere F (2014) Nitrogen dioxide and mortality: review and meta-analysis of long-term studies. Eur Respir J 44(3):744–753
CAS
Google Scholar
Forouzanfar MH, Alexander L, Anderson HR, Bachman VF, Biryukov S, Brauer M et al (2015) Global, regional, and national comparative risk assessment of 79 behavioural, environmental and occupational, and metabolic risks or clusters of risks in 188 countries, 1990~2013: a systematic analysis for the Global Burden of Disease Study, 2013. Lancent. 386:2287–2323
Google Scholar
Hao L, Ma C, Ma J, An Z, Luo H, Liang X (2010) Analysis on epidemiological characteristics of measles in China from 2008-2009. Chin J Vaccines Vaccination 16(04):293-296+370
Google Scholar
Harigane K, Sumi A, Mise K, Kobayashi N (2015) The role of temperature in reported chickenpox cases from 2000 to 2011 in Japan. Epidemiol Infect 143(12):2666–2678
CAS
Google Scholar
Hastie TJ, Tibshirani RJ (1986) Generalized additive models. Stat Sci 1(3):297–310
Google Scholar
Holzmann H, Hengel H, Tenbusch M, Doerr HW (2016) Eradication of measles: remaining challenges. Med Microbiol Immunol 205(3):201–208
CAS
Google Scholar
Hong YC, Leem JH, Ha EH, Christiani DC (1999) PM(10) exposure, gaseous pollutants, and daily mortality in Inchon, South Korea. Environ Health Perspect 107(11):873–878
CAS
Google Scholar
Jiang DB, Wang SG, Lang XM, Shang KZ, Yang DB (2001) The characteristics of stratification of lower-layer atmospheric temperature and their relations with air pollution in Lanzhou proper. J Lanzhou Univ (04):133–138
Katsouyanni K, Touloumi G, Spix C, Schwartz J, Balducci F, Medina S, Rossi G, Wojtyniak B, Sunyer J, Bacharova L, Schouten JP, Ponka A, Anderson HR (1997) Short term effects of ambient sulphur dioxide and particulate matter on mortality in 12 European cities: results from time series data from the aphea project. BMJ 314(7095):1658–1663
CAS
Google Scholar
Lee JT, Kim H, Hong YC, Kwon HJ, Schwartz J, Christiani DC (2000) Air pollution and daily mortality in seven major cities of Korea, 1991-1997. Environ Res 84(3):247–254
CAS
Google Scholar
Liu YY, Liu ZD, Lao JH, Zhang J, Jiang BF (2018) Effect of meteorological factors and their interaction on hand-foot-mouth disease in Nanning city, China during 2008 to 2011. J Shandong Univ Health Sci 56(8):95–100
Google Scholar
Ma YX (2007) Spatio-temporal distribution characteristics of several major infectious diseases in Gansu Province and their response and prediction to climate change. Doctoral dissertation, Lanzhou University
Ma C, Luo HM, An ZJ, Zhang P, Wen N, Xia W et al (2008) Analysis on epidemiological characteristic and measures of measles control in China during 2006-2007. Chin J Vaccines Immun (03):208–213
Ma C, Jia HM, Su QR (2016) Surveillance and response to measles outbreaks in China, 2009-2015. Chin J Vaccines Immun (5):481–486
Ma YX, Zhou J, Yang S, Zhao Y, Zheng X (2017) Assessment for the impact of dust events on measles incidence in western China. Atmos Environ 157:1–9
CAS
Google Scholar
Maji S, Ahmed S, Siddiqui WA, Ghosh S (2016) Short term effects of criteria air pollutants on daily mortality in Delhi, India. Atmos Environ 150:210–219
Google Scholar
Moss WJ (2017) Measles. Lancet 390(10111):2490–2502
Google Scholar
Nel A (2005) Atmosphere: enhanced: air pollution-related illness: effects of particles. Science 308(5723):804–806
CAS
Google Scholar
Qi HC, Chen Y, Xu DL, Su HL, Zhan LW, Xu ZY, Huang Y, He Q, Hu Y, Lynn H, Zhang Z (2018) Impact of meteorological factors on the incidence of childhood hand, foot, and mouth disease (hfmd) analyzed by dlnms-based time series approach. Infect Dis Poverty 7(1):7–17
Google Scholar
Qian Z, He Q, Lin HM, Kong L, Bentley CM, Liu W, Zhou D (2008) High temperatures enhanced acute mortality effects of ambient particle pollution in the “oven” city of Wuhan, China. Environ Health Perspect 116(9):1172–1178
CAS
Google Scholar
Ren C, Tong S (2006) Temperature modifies the health effects of particulate matter in Brisbane, Australia. Int J Biometeorol 51(2):87–96
Google Scholar
Ruiz MC, Leon T, Diaz Y, Michelangeli F (2009) Molecular biology of rotavirus entry and replication. Sci World J 9:1476–1497
CAS
Google Scholar
Sedlmaier N, Hoppenheidt K, Krist H, Lehmann S, Lang HM, Büttner (2009) Generation of avian influenza virus (aiv) contaminated fecal fine particulate matter (pm2.5): genome and infectivity detection and calculation of immission. Vet Microbiol 139(1–2):156–164
CAS
Google Scholar
Sun WJ, Liu M, Yin Q, Tong JL, Huang ZW (2016) Changes of air pollution in Lanzhou in recent ten years and suggestions for its control. Sci Tech Inf Gansu 45(10):8–13
Google Scholar
Tao Y, Song J, Qiang L, Wang Y, Li ZB (2014) Time series analysis between meteorological factors and measles in Chengguan District, Lanzhou. China Environ Sci (11):2964–2969
Tian L, Liang F, Xu M, Jia L, Pan X, Clements ACA (2018) Spatio-temporal analysis of the relationship between meteorological factors and hand-foot-mouth disease in Beijing, China. BMC Infect Dis 18(1):158–168
Google Scholar
Wang WJ, Zhang J, Zhang CJ, Zhang CZ, Huang FS (2018) A case crossover study on the impact of daily average temperature on the incidence of measles, Jining city. Prev Med Trib 24(020):81–83
Google Scholar
WHO (2019) Media centre: measles. https://www.who.int/en/news-room/fact-sheets/detail/measles. Date accessed: 15 Aug 2019
Wolfson LJ, Hersh BS, Strebel PM, Gacic-Dobo M, Hoekstra EJ, Mcfarland JW (2007) Has the 2005 measles mortality reduction goal been achieved? A natural history modelling study. Lancet. 369(9557):191–200
Google Scholar
Wong CM, Ou CQ, Chan KP, Chau YK, Thach TQ, Yang L, Chung RY, Thomas GN, Peiris JS, Wong TW, Hedley AJ, Lam TH (2008) The effects of air pollution on mortality in socially deprived urban areas in Hong Kong, China. Environ Health Perspect 116(9):1189–1194
CAS
Google Scholar
Wu PY, Li YC, Wu HDI (2007) Risk factors for chickenpox incidence in Taiwan from a large-scale computerized database. Int J Dermatol 46(4):362–366
Google Scholar
Xue XP, Zhang ZQ, Zhang YP (2009) The relationship between measles incidence and climate change in Taiyuan. Prev Med Trib 15(11):1071–1073
Google Scholar
Yang Q, Fu C, Wang N, Dong Z, Hu W, Wang M (2014) The effects of weather conditions on measles incidence in Guangzhou, southern China. Hum Vaccines Immunother 10(4):1104–1110
Google Scholar
Yang Y, Geng X, Liu X, Wang W, Zhang J (2016) Association between the incidence of varicella and meteorological conditions in Jinan, eastern China, 2012–2014. BMC Infect Dis 16(1):179–187
Google Scholar
Zhang HM, Ruan CL, Guo LP, Wang H (2014) The meteorological epidemiological characteristic analysis and discussion of measles onset in Handan during 1972-2010. Chinese J Pest Control (5):480–483
Zhang MX, Ai JW, Li Y, Zhang BY, Zhang WH (2016) Measles outbreak among adults, northeastern china, 2014. Emerging Infect Dis 22(1):144–146
CAS
Google Scholar