Parkin, D. M., & Bray, F. (2006). Chapter 2: The burden of HPVrelated cancers. Vaccine, 24, S11–S25. https://doi.org/10.1016/J.VACCINE.2006.05.111
Watson, M., Saraiya, M., Ahmed, F., Cardinez, C. J., Reichman, M. E., Weir, H. K., & Richards, T. B. (2008). Using population-based cancer registry data to assess the burden of human papillomavirus-associated cancers in the United States: Overview of methods. Cancer, 113 (S10), 2841–54. https://doi.org/10.1002/cncr.23758
Hibbitts, S. (2009). Should boys receive the human papillomavirus vaccine? Yes. BMJ, 339, b4928. https://doi.org/10.1136/BMJ.B4928 ICO/IARC Information Centre on HPV and Cancer. (2018). United Kingdom Human Papillomavirus and Related Cancers, Fact Sheet 2018.
Watson, M., Saraiya, M., Ahmed, F., Cardinez, C. J., Reichman, M. E., Weir, H. K., & Richards, T. B. (2008). Using population-based cancer registry data to assess the burden of human papillomavirus-associated cancers in the United States: Overview of methods. Cancer, 113 (S10), 2841–2854. https://doi.org/10.1002/cncr.23758
Yanofsky, V. R., Patel, R. V, & Goldenberg, G. (2012). Genital warts: a comprehensive review. The Journal of Clinical and Aesthetic Dermatology, 5 (6), 25–36.
Hu, D., & Goldie, S. (2008). The economic burden of noncervical human papillomavirus disease in the United States. American Journal of Obstetrics and Gynecology, 198 (5), 500.e1–500.e7. https://doi.org/10.1016/J.AJOG.2008.03.064
Gomez-Gardenes, J., Latora, V., Moreno, Y., & Profumo, E. (2008). Spreading of sexually transmitted diseases in heterosexual populations. Proceedings of the National Academy of Sciences of the United States of America, 105 (5), 1399–404. https://doi.org/10.1073/pnas.0707332105
Blas, M. M., Brown, B., Menacho, L., Alva, I. E., Silva-Santisteban, A., & Carcamo, C. (2015). HPV Prevalence in multiple anatomical sites among men who have sex with men in Peru. PLOS ONE, 10 (10), e0139524. https://doi.org/10.1371/journal.pone.0139524
McQuillan, G., Kruszon-Moran, D., Markowitz, L. E., Unger, E. R., & Paulose-Ram, R. (2017). Prevalence of HPV in Adults aged 18–69: United States, 2011–2014. NCHS Data Brief, (280), 1–8. Retrieved from http://www.ncbi.nlm.nih.gov/pubmed/28463105
D’Souza, G., Wiley, D. J., Li, X., Chmiel, J. S., Margolick, J. B., Cranston, R. D., & Jacobson, L. P. (2008). Incidence and epidemiology of anal cancer in the multicenter AIDS cohort study. Journal of Acquired Immune Deficiency Syndromes (1999), 48 (4), 491–99. https://doi.org/10.1097/QAI.0b013e31817aebfe
Johnson, L. G., Madeleine, M. M., Newcomer, L. M., Schwartz, S. M., & Daling, J. R. (2004). Anal cancer incidence and survival: the surveillance, epidemiology, and end results experience, 1973–2000. Cancer, 101 (2), 281–8. https://doi.org/10.1002/cncr.20364
Qualters, J. R., Lee, N. C., Smith, R. A., & Aubert, R. E. (1987). Breast and cervical cancer surveillance, United States, 1973–1987. Morbidity and Mortality Weekly Report: Surveillance Summaries. Centers for Disease Control & Prevention (CDC). U. S. Cancer Statistics Working Group.
U. S. Cancer Statistics Data Visualizations Tool, based on November 2017 submission data (1999–2015): U. S. Department of Health and Human Services, Centers for Disease Control and Prevention and National Cancer Institute; www.cdc.gov/cancer/dataviz, June 2018.
Noone, A. M., Howlader, N., Krapcho, M., Miller, D., Brest, A., Yu, M., Ruhl, J., Tatalovich, Z., Mariotto, A., Lewis, D. R., Chen, H. S., Feuer, E. J., Cronin, K. A. (eds). SEER Cancer Statistics Review, 1975–2015, National Cancer Institute. Bethesda, MD, https://seer.cancer.gov/csr/1975_2015/, External based on November 2017 SEER data submission, posted to the SEER website, April 2018.
Chin‐Hong, P. V., Vittinghoff, E., Cranston, R. D., Buchbinder, S., Cohen, D., Colfax, G., Palefsky, J. M. (2004). Age‐specific prevalence of anal human papillomavirus infection in HIV‐negative sexually active men who have sex with men: The EXPLORE Study. The Journal of Infectious Diseases, 190 (12), 2070–76. https://doi.org/10.1086/425906
Brisson, M., Benard, E., Drolet, M., Bogaards, J. A., Baussano, I., Vanska, S., Walsh, C. (2016). Population-level impact, herd immunity, and elimination after human papillomavirus vaccination: a systematic review and meta-analysis of predictions from transmission-dynamic models. Lancet. Public Health, 1 (1), e8–e17. https://doi.org/10.1016/S2468–2667 (16) 30001–9
Keeling, M. J., Broadfoot, K. A., & Datta, S. (2017). The impact of current infection levels on the cost-benefit of vaccination. Epidemics, 21, 56–62. https://doi.org/10.1016/J.EPIDEM.2017.06.004
Joint Committee on Vaccination and Immunisation. (2018). Statement on HPV vaccination. Retrieved from https://www.gov.uk/government/publications/jcvi-statement-extending-the-hpv-vaccination-programmeconclusions
Joint Committee on Vaccination and Immunisation. (2018). Interim statement on extending the HPV vaccination programme. Retrieved March 7, 2019, from https://www.gov.uk/government/publications/jcvi-statementextending-the-hpv-vaccination-programme
Carrier (англ.).
Условно-патогенные инфекции – виды инфекций, развивающихся в благоприятных для себя условиях (включая снижение иммунитета жертвы); они способны использовать представляющиеся им возможности для развития, поэтому их также называют «оппортунистическими инфекциями». – Прим. пер.
Mabey, D., Flasche, S., & Edmunds, W. J. (2014). Airport screening for Ebola. BMJ (Clinical Research Ed.), 349, g6202. https://doi.org/10.1136/bmj.g6202
Castillo-Chavez, C., Castillo-Garsow, C. W., & Yakubu, A. – A. (2003). Mathematical Models of Isolation and Quarantine. JAMA: The Journal of the American Medical Association, 290 (21), 2876–77. https://doi.org/10.1001/jama.290.21.2876
Day, T., Park, A., Madras, N., Gumel, A., & Wu, J. (2006). When is quarantine a useful control strategy for emerging infectious diseases? American Journal of Epidemiology, 163 (5), 479–85. https://doi.org/10.1093/aje/kwj056
Peak, C. M., Childs, L. M., Grad, Y. H., & Buckee, C. O. (2017). Comparing nonpharmaceutical interventions for containing emerging epidemics. Proceedings of the National Academy of Sciences of the United States of America, 114 (15), 4023–8. https://doi.org/10.1073/pnas.1616438114
Agusto, F. B., Teboh-Ewungkem, M. I., & Gumel, A. B. (2015). Mathematical assessment of the effect of traditional beliefs and customs on the transmission dynamics of the 2014 Ebola outbreaks. BMC Medicine, 13 (1), 96. https://doi.org/10.1186/s12916–015–0318–3
Также его называют коллективным иммунитетом или иммунитетом толпы. – Прим. ред.
Majumder, M. S., Cohn, E. L., Mekaru, S. R., Huston, J. E., & Brownstein, J. S. (2015). Substandard vaccination compliance and the 2015 measles outbreak. JAMA Pediatrics, 169 (5), 494. https://doi.org/10.1001/jamapediatrics.2015.0384
Measles, Mumps, Rubella (англ.).
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