[1]World Health Organization. Measles fact sheet No. 286 [DB/OL]. [20171003].http://www.who.int/immunization/diseases/measles/en/.<br />
[2]西太平洋区域委员会. 消除麻疹[R]. 西太平洋区域委员会,2012.<br />
Western Pacific Regional Committee. Elimination of measles [R]. 2012.<br />
[3]Aspects G. Global measles and rubella strategic plan, 20122020[J]. Genetic Aspects, 2012.<br />
[4]Organization W H. Global Health Observatory (GHO) data [J]. 2016. Available online: http://www.who.int/gho/immunization/measles/en/.<br />
[5]张括生, 尚莉丽. 建国60年来麻疹流行病学特点及其防治措施[J]. 中医药临床杂志, 2011, 23(9): 759762.<br />
Zhang Kuosheng, Shang Lili. Measles epidemiological characteristics and preventive measures in the founding of 60 years [J]. Clinical Journal of Traditional Chinese Medicine, 2011, 23 (9): 759762.<br />
[6]许文波. 麻疹病毒的分子流行病学[J]. 中国疫苗和免疫, 2001, 7(1):5459.<br />
Xu Wenbo. The molecular epidemiology of measles virus[J]. Chinese Journal of Vaccines and Immunization, 2001, 7(1):5459.<br />
[7]汤杰. 麻疹抗体血清学研究现状[J]. 公共卫生与预防医学, 2010, 21(5): 4849.<br />
Tang Jie. The current situation of measles antibody serology [J]. Journal of Public Health and Preventive Medicine, 2010, 21(5): 4849.<br />
[8]Chen G, Zhang W, Li S, et al. Is short-term exposure to ambient fine particles associated with measles incidence in China? A multi-city study[J]. Environmental Research, 2017, 156(2017):306311. <br />
[9]Schenzle D. An age-structured model of pre-and post-vaccination measles transmission [J]. Mathematical Medicine and Biology: a Journal of the IMA, 1984, 1(2): 169191.<br />
[10] Ramsay M, Gay N, Miller E, et al. The epidemiology of measles in England and Wales: rationale for the 1994 national vaccination campaign [J]. Communicable disease report. CDR Review, 1994, 4(12): R1416.<br />
[11] Bjornstad O N, Finkenstadt B F, Grenfell B T. Dynamics of measles epidemics: estimating scaling of transmission rates using a time series SIR model [J]. Ecological Monographs, 2002, 72(2): 169184.<br />
[12] Keeling M J, Rohani P. Modeling Infectious Diseases in Humans and Animals [M]. Princeton: Princeton University Press, 2008.<br />
[13] Vynnycky E, White R G. An Introduction to Infectious Disease Modelling [M]. New York: Oxford University Press, 2010.<br />
[14] 青岛市统计局. 青岛统计年鉴[M]. 北京:中国统计出版社, 1997.<br />
[15] Finkenstdt B F, Grenfell B T. Time series modelling of childhood diseases: a dynamical systems approach [J]. Journal of the Royal Statistical Society, 2000, 49(2): 187205.<br />
[16] 陈小华, 许洁, 臧国庆. 成人麻疹112例流行病学和临床特征[J]. 中华传染病杂志, 2006, 24(3): 183185.<br />
Chen Xiaohua, Xu Jie, Zang Guoqing. The analysis of epidemiological and clinical characteristics of 112 cases patients with adult-measles[J]. Chinese Journal of Infectious Diseases, 2006, 24(3): 183185.<br />
[17] Metcalf C J E, Bjornstad O N, Grenfell B T, et al. Seasonality and comparative dynamics of six childhood infections in pre-vaccination Copenhagen[J]. Proceedings of the Royal Society of London B: Biological Sciences, 2009, 276(1676): 41114118.<br />
[18] Finkenstädt B F, Grenfell B T. Time series modelling of childhood diseases: a dynamical systems approach [J]. Journal of the Royal Statistical Society, 2000, 49(2): 187205.<br />
[19] Joseph C A, Noah N D. Epidemiology of chickenpox in England and Wales, 196785 [J]. British Medical Journal, 1988, 296(6623): 673676.<br />
[20] Ferguson N M, Anderson R M, Garnett G P. Mass vaccination to control chickenpox:the influence of zoster [J]. Proceedings of the National Academy of Sciences of the United States of America, 1996, 93(14): 72317235.<br />
[21] Lixia W, Guang Z, Lee L A, et al. Progress in accelerated measles control in the People’s Republic of China, 19912000 [J]. Journal of Infectious Diseases, 2003, 187(Supple.1): 252257.<br />
[22] Martinez-Bakker M, King A A, Rohani P. Unraveling the transmission ecology of polio [J]. PLoS Biology, 2015, 13(6): e1002172.<br />
[23] Ferrari M J, Grais R F, Bharti N, et al. The dynamics of measles in sub-Saharan Africa [J]. Nature, 2008, 451(7179):67984.<br />
[24] 陈佶, 范学志, 赵继军. 手足口病传染率季节性及其与人口流动的关系[J]. 复杂系统与复杂性科学, 2017, 14(03): 97102.<br />
Chen Ji, Fan Xuezhi, Zhao jijun. Transmission rate seasonality of hand foot and mouth disease and its relationship with population flux[J]. Complex Systems and Complexity Science, 2017, 14(03): 97102.<br />
[25] Keeling M J, Rohani P, Grenfell B T. Seasonally forced disease dynamics explored as switching between attractors [J]. Physica D: Nonlinear Phenomena, 2001, 148(3): 317335.<br />
[26] 仲连发, 张志诚, 赵继军. 基于年龄结构的中国大陆手足口病流行特性的分析[J]. 中华疾病控制杂志, 2015, 19(7): 651654.<br />
[27] Li S, Ma C, Hao L, et al. Demographic transition and the dynamics of measles in six provinces in China: a modeling study [J]. PLoS Medicine, 2017, 14(4): e1002255.<br />
[28] 谭吉宾, 曹卫华, 逢增昌, 等. 青岛市19902003年成人麻疹病例流行病学特征分析[J]. 中国计划免疫, 2004, 10(4): 225227.<br />
Tan Jibin, Cao Weihua, Feng Zengchang, et al. Analysis on eipidemiological characteristics of adult measles during 19902003 in Qingdao city [J]. Chinese Journal of Vaccines and Immunization, 2004, 10 (4): 225227.<br />
[29] 杨杨, 邢远, 侯铁军, 等. 西安市 20082013 年麻疹流行病学特征分析[J]. 中华疾病控制杂志, 2015 (3): 307309.<br />
Yang Yang, Xing Yuan, Hou Tiejun, et al. Epidemiological characteristics of measles in 20082013 in Xi'an [J]. Chinese Journal of Disease Control & Prevention, 2015 (3): 307309.<br />
[30] 曾臻, 靳玉惠. 20102014 年合肥市麻疹流行病学特征分析[J]. 现代预防医学, 2016, 7: 006.<br />
Zeng Zhen, Jin Yuhui. Epidemiological Analysis of Measles in Hefei City in 20102014[J]. Modern Preventive Medicine, 2016, 7: 006.<br />
[31] 姜立坤, 胡丽楠, 范晨璐, 等. 哈尔滨市麻疹流行病学特征分析[J]. 中国卫生标准管理, 2015, 6(15): 56.<br />
Jiang Likun, Hu Linan, Fan Chenlu, et al. Epidemiological Analysis of Measles in Harbin[J]. Chinese Health Standards Management, 2015, 6(15): 56.<br />
[32] 赵佳楠, 薛超, 仲连发,等. 重庆市手足口病接触率及感染力分析[J]. 科学通报, 2016, 61(22): 24752482.<br />
Zhao Jianan, Xue Chao, Zhong Lianfa, et al. Transmission rate and contact force analysis of hand foot and mouth disease in Chongqing [J]. Chinese science Bulletin, 2016(22): 24752482.