ウイルスの社会史とは? わかりやすく解説

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ウイルスの社会史

出典: フリー百科事典『ウィキペディア(Wikipedia)』 (2022/06/11 21:08 UTC 版)

ウイルスの社会史 (ウイルスのしゃかいし) では、ウイルスとウイルス感染が人類の歴史へ与えた影響について記述する。ウイルスを原因とする伝染病は、約12,000年前の新石器革命で人間の行動が変化し、人口が密集した農業共同体が形成されたときに始まった。これによってウイルスは急速に拡散し、その後風土病となった。植物や家畜のウイルスも増加し、人間が農耕牧畜に依存するようになるにつれ、ジャガイモポティウイルス英語版や家畜の牛疫といった病気が壊滅的な結果をもたらすようになった。


  1. ^ a b c d McMichael AJ (2004). “Environmental and social influences on emerging infectious diseases: past, present and future”. Philosophical Transactions of the Royal Society B 359 (1447): 1049–1058. doi:10.1098/rstb.2004.1480. PMC 1693387. PMID 15306389. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1693387/. 
  2. ^ Clark, p. 56
  3. ^ Barrett and Armelagos, p. 28
  4. ^ Villarreal, p. 344
  5. ^ Hughes AL, Irausquin S, Friedman R (2010). “The evolutionary biology of poxviruses”. Infection, Genetics and Evolution 10 (1): 50–59. doi:10.1016/j.meegid.2009.10.001. PMC 2818276. PMID 19833230. http://linkinghub.elsevier.com/retrieve/pii/S1567-1348(09)00216-0 2014年12月19日閲覧。. 
  6. ^ Georges AJ, Matton T, Courbot-Georges MC (2004). “[Monkey-pox, a model of emergent then reemergent disease]” (French). Médecine et Maladies Infectieuses 34 (1): 12–19. doi:10.1016/j.medmal.2003.09.008. PMID 15617321. 
  7. ^ a b Tucker, p. 6
  8. ^ Clark, p. 20
  9. ^ Barker, p. 1
  10. ^ a b Gibbs AJ, Ohshima K, Phillips MJ, Gibbs MJ (2008). Lindenbach, Brett. ed. “The prehistory of potyviruses: their initial radiation was during the dawn of agriculture”. PLoS ONE 3 (6): e2523. Bibcode2008PLoSO...3.2523G. doi:10.1371/journal.pone.0002523. PMC 2429970. PMID 18575612. https://doi.org/10.1371/journal.pone.0002523 2014年12月19日閲覧。. 
  11. ^ Fargette D, Pinel-Galzi A, Sérémé D, Lacombe S, Hébrard E, Traoré O, Konaté G (2008). Holmes, Edward C.. ed. “Diversification of rice yellow mottle virus and related viruses spans the history of agriculture from the neolithic to the present”. PLOS Pathogens 4 (8): e1000125. doi:10.1371/journal.ppat.1000125. PMC 2495034. PMID 18704169. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2495034/. 
  12. ^ Zeder MA (2008). “Domestication and early agriculture in the Mediterranean Basin: origins, diffusion, and impact”. Proceedings of the National Academy of Sciences of the United States of America 105 (33): 11597–11604. Bibcode2008PNAS..10511597Z. doi:10.1073/pnas.0801317105. PMC 2575338. PMID 18697943. http://www.pnas.org/cgi/pmidlookup?view=long&pmid=18697943 2014年12月19日閲覧。. 
  13. ^ McNeill, p. 71
  14. ^ Baker, pp. 40–50
  15. ^ McNeill, p. 73
  16. ^ Clark, p. 57–58
  17. ^ a b Crawford (2000), p. 225
  18. ^ White DW, Suzanne Beard R, Barton ES (2012). “Immune modulation during latent herpesvirus infection”. Immunological Reviews 245 (1): 189–208. doi:10.1111/j.1600-065X.2011.01074.x. PMC 3243940. PMID 22168421. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3243940/. 
  19. ^ Shors, p. 13
  20. ^ Donadoni, p. 292
  21. ^ Taylor, p. 4
  22. ^ Zimmer, p. 82
  23. ^ a b Levins, pp. 297–298
  24. ^ Dobson, pp. 140–141
  25. ^ Karlen, p. 57
  26. ^ Furuse Y, Suzuki A, Oshitani H (2010). “Origin of measles virus: divergence from rinderpest virus between the 11th and 12th centuries”. Virology Journal 7: 52. doi:10.1186/1743-422X-7-52. PMC 2838858. PMID 20202190. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2838858/. 
  27. ^ a b c Retief F, Cilliers L (2010). “Measles in antiquity and the Middle Ages”. South African Medical Journal 100 (4): 216–217. PMID 20459960. 
  28. ^ a b Zuckerman, Arie J. (1987). Principles and practice of clinical virology. New York: Wiley. p. 459. ISBN 0-471-90341-8 
  29. ^ 生物コーナー」『化学と生物』第21巻第2号、1983年2月25日、 114–115、 doi:10.1271/kagakutoseibutsu1962.21.114ISSN 1883-6852
  30. ^ Mahy, (a) p. 10
  31. ^ Gottfried RS (1977). “Population, plague, and the sweating sickness: demographic movements in late fifteenth-century England”. The Journal of British Studies 17 (1): 12–37. doi:10.1086/385710. PMID 11632234. 
  32. ^ a b c d e f Mahy, (b) p. 243
  33. ^ a b Shors, p. 352
  34. ^ Mortimer, (2009) p. 211
  35. ^ Pickett, p. 10
  36. ^ Riedel S (2005). “Edward Jenner and the history of smallpox and vaccination”. Proceedings (Baylor University. Medical Center) 18 (1): 21–25. doi:10.1080/08998280.2005.11928028. PMC 1200696. PMID 16200144. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1200696/. 
  37. ^ Clark, p. 21
  38. ^ Gilchrist, p. 41
  39. ^ Barrett, p. 15
  40. ^ a b Barrett, p. 87
  41. ^ Quinn, pp. 40–41
  42. ^ McNeill, p. 229
  43. ^ a b Penn, pp. 325–326
  44. ^ Kohn, p. 100
  45. ^ Kohn, pp. 100–101
  46. ^ a b Mortimer (2012), p. 278
  47. ^ Quinn, p. 41
  48. ^ Karlen, p. 81
  49. ^ Quinn, p. 40
  50. ^ Elmer, p. xv
  51. ^ Porter, p. 9
  52. ^ Quinn, p. 9
  53. ^ Quinn, pp. 39–57
  54. ^ Dobson, p. 172
  55. ^ Quinn, p. 59
  56. ^ a b Potter CW (2001). “A history of influenza”. Journal of Applied Microbiology 91 (4): 572–579. doi:10.1046/j.1365-2672.2001.01492.x. PMID 11576290. http://onlinelibrary.wiley.com/resolve/openurl?genre=article&sid=nlm:pubmed&issn=1364-5072&date=2001&volume=91&issue=4&spage=572 2014年12月19日閲覧。. 
  57. ^ Quinn, p. 71
  58. ^ Quinn, p. 72
  59. ^ Dobson, p. 174
  60. ^ a b Glynn, p. 31
  61. ^ Tucker, p. 10
  62. ^ Berdan, pp. 182–183
  63. ^ Glynn, p. 33
  64. ^ Standford, p. 108
  65. ^ Barrett and Armelagos, p. 42
  66. ^ Oldstone, pp. 61–68
  67. ^ Valdiserri p. 3
  68. ^ a b Tucker, pp. 12–13
  69. ^ Glynn, p. 145
  70. ^ Sloan AW (1987). “Thomas Sydenham, 1624–1689”. South African Medical Journal 72 (4): 275–278. PMID 3303370. 
  71. ^ Mahy, (b) p. 514
  72. ^ Kohn, p.29
  73. ^ Dobson, pp. 146–147
  74. ^ a b Patterson KD (1992). “Yellow fever epidemics and mortality in the United States, 1693–1905”. Social Science & Medicine 34 (8): 855–865. doi:10.1016/0277-9536(92)90255-O. PMID 1604377. 
  75. ^ Chakraborty, pp. 16–17
  76. ^ Crawford (2011), pp. 121–122
  77. ^ Mahy, (a) pp. 10–11
  78. ^ Crawford (2011), p. 122
  79. ^ Zuckerman, Larry, p. 21
  80. ^ Tucker, pp. 16–17
  81. ^ Rhodes, p. 17
  82. ^ Tucker, p. 17
  83. ^ Lane, p. 137
  84. ^ Rhodes, p. 21
  85. ^ Lane, pp. 138–139
  86. ^ Zimmer, p. 83
  87. ^ Booss, p. 57
  88. ^ Reid, p. 16
  89. ^ Greenwood, p. 354
  90. ^ Reid, p. 18
  91. ^ Reid, p. 19
  92. ^ a b Lane, p. 140
  93. ^ Brunton, pp. 39–45
  94. ^ Glynn, p. 153
  95. ^ Brunton, p. 91
  96. ^ Glynn, p. 161
  97. ^ Glynn, p. 163
  98. ^ Glynn, p. 164
  99. ^ Yuhong, Wu (2001). “Rabies and rabid rogs in Sumerian and Akkadian Literature”. Journal of the American Oriental Society 121 (1): 32–43. doi:10.2307/606727. JSTOR 606727. 
  100. ^ Reid, pp. 93–94
  101. ^ Reid, p. 96
  102. ^ Reid, pp. 97–98
  103. ^ Dobson, p. 159
  104. ^ Dobson, pp. 159–160
  105. ^ Dreesen DW (1997). “A global review of rabies vaccines for human use”. Vaccine 15: S2–6. doi:10.1016/S0264-410X(96)00314-3. PMID 9218283. 
  106. ^ Kristensson K, Dastur DK, Manghani DK, Tsiang H, Bentivoglio M (1996). “Rabies: interactions between neurons and viruses. A review of the history of Negri inclusion bodies”. Neuropathology and Applied Neurobiology 22 (3): 179–187. doi:10.1111/j.1365-2990.1996.tb00893.x. PMID 8804019. 
  107. ^ Crawford (2000), p. 14
  108. ^ Kruger DH, Schneck P, Gelderblom HR (2000). “Helmut Ruska and the visualisation of viruses”. Lancet 355 (9216): 1713–1717. doi:10.1016/S0140-6736(00)02250-9. PMID 10905259. 
  109. ^ Crawford (2000), p. 15
  110. ^ Oldstone, pp. 22–40
  111. ^ Baker, p. 70
  112. ^ Levins, pp. 123–125, 157–168, 195–198, 199–205
  113. ^ Karlen, p. 229
  114. ^ Mahy, (b) p. 585
  115. ^ Dobson, p. 202
  116. ^ Taubenberger JK, Morens DM (April 2010). “Influenza: the once and future pandemic”. Public Health Reports 125 Suppl 3 (Suppl 3): 16–26. PMC 2862331. PMID 20568566. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2862331/. 
  117. ^ Carter, p. 315
  118. ^ van den Hoogen BG, Bestebroer TM, Osterhaus AD, Fouchier RA (2002). “Analysis of the genomic sequence of a human metapneumovirus”. Virology 295 (1): 119–132. doi:10.1006/viro.2001.1355. PMID 12033771. 
  119. ^ Frazer IH, Lowy DR, Schiller JT (2007). “Prevention of cancer through immunization: Prospects and challenges for the 21st century”. European Journal of Immunology 37 (Suppl 1): S148–155. doi:10.1002/eji.200737820. PMID 17972339. 
  120. ^ Wolfe ND, Heneine W, Carr JK, Garcia AD, Shanmugam V, Tamoufe U, Torimiro JN, Prosser AT, Lebreton M, Mpoudi-Ngole E, McCutchan FE, Birx DL, Folks TM, Burke DS, Switzer WM (2005). “Emergence of unique primate T-lymphotropic viruses among central African bushmeat hunters”. Proceedings of the National Academy of Sciences of the United States of America 102 (22): 7994–7999. Bibcode2005PNAS..102.7994W. doi:10.1073/pnas.0501734102. PMC 1142377. PMID 15911757. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1142377/. 
  121. ^ Pirio GA, Kaufmann J (2010). “Polio eradication is just over the horizon: the challenges of global resource mobilization”. Journal of Health Communication 15 Suppl 1: 66–83. doi:10.1080/10810731003695383. PMID 20455167. 
  122. ^ Arslan D, Legendre M, Seltzer V, Abergel C, Claverie JM (2011). “Distant mimivirus relative with a larger genome highlights the fundamental features of Megaviridae”. Proceedings of the National Academy of Sciences of the United States of America 108 (42): 17486–17491. Bibcode2011PNAS..10817486A. doi:10.1073/pnas.1110889108. PMC 3198346. PMID 21987820. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3198346/. 
  123. ^ Zimmer, p. 93
  124. ^ Glynn, p. 219
  125. ^ Oldstone, p. 4
  126. ^ Wolfe, p. 113
  127. ^ a b Glynn, p. 200
  128. ^ a b Crawford (2000), p. 220
  129. ^ Karlen, p. 154
  130. ^ Shors, p. 388
  131. ^ Glynn, p. 201
  132. ^ Glynn, pp. 202–203
  133. ^ Belongia EA, Naleway AL (2003). “Smallpox vaccine: the good, the bad, and the ugly”. Clinical Medicine & Research 1 (2): 87–92. doi:10.3121/cmr.1.2.87. PMC 1069029. PMID 15931293. http://www.clinmedres.org/cgi/pmidlookup?view=long&pmid=15931293 2014年12月19日閲覧。. 
  134. ^ Glynn, pp. 186–189
  135. ^ Schrick, Livia; Tausch, Simon H.; Dabrowski, P. Wojciech; Damaso, Clarissa R.; Esparza, José; Nitsche, Andreas (10 12, 2017). “An Early American Smallpox Vaccine Based on Horsepox”. The New England Journal of Medicine 377 (15): 1491–1492. doi:10.1056/NEJMc1707600. ISSN 1533-4406. PMID 29020595. https://www.ncbi.nlm.nih.gov/pubmed/29020595. 
  136. ^ Tucker, pp. 126–131
  137. ^ Weinstein RS (April 2011). “Should remaining stockpiles of smallpox virus (variola) be destroyed?”. Emerging Infectious Diseases 17 (4): 681–683. doi:10.3201/eid1704.101865. PMC 3377425. PMID 21470459. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3377425/. 
  138. ^ McNeil Jr DG (2013年3月12日). “Wary of attack with s, U.S. buys up a costly drug”. New York Times. https://www.nytimes.com/2013/03/13/health/us-stockpiles-smallpox-drug-in-case-of-bioterror-attack.html?pagewanted=all&_r=0 2014年12月19日閲覧。 
  139. ^ Oldstone, p. 84
  140. ^ Oldstone, p. 135
  141. ^ Dick, p. 66
  142. ^ a b Earn DJ, Rohani P, Bolker BM, Grenfell BT (2000). “A simple model for complex dynamical transitions in epidemics”. Science 287 (5453): 667–670. Bibcode2000Sci...287..667E. doi:10.1126/science.287.5453.667. PMID 10650003. http://www.sciencemag.org/cgi/pmidlookup?view=long&pmid=10650003 2014年12月19日閲覧。.  Free registration is required.
  143. ^ Pomeroy LW, Bjørnstad ON, Holmes EC (2008). “The evolutionary and epidemiological dynamics of the paramyxoviridae”. Journal of Molecular Evolution 66 (2): 98–106. Bibcode2008JMolE..66...98P. doi:10.1007/s00239-007-9040-x. PMC 3334863. PMID 18217182. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3334863/. 
  144. ^ Conlan AJ, Grenfell BT (2007). “Seasonality and the persistence and invasion of measles”. Proceedings of the Royal Society B: Biological Sciences 274 (1614): 1133–1141. doi:10.1098/rspb.2006.0030. PMC 1914306. PMID 17327206. http://rspb.royalsocietypublishing.org/cgi/pmidlookup?view=long&pmid=17327206 2014年12月19日閲覧。. 
  145. ^ Dobson, p. 145
  146. ^ Oldstone, pp. 137–138
  147. ^ Oldstone, p. 136–137
  148. ^ Oldstone, pp. 156–158
  149. ^ a b Waterhouse, pp. 229–230
  150. ^ Wise J (2013). “Largest group of children affected by measles outbreak in Wales is 10–18 year olds”. BMJ (Clinical Research Ed.) 346: f2545. doi:10.1136/bmj.f2545. PMID 23604089. 
  151. ^ Oldstone, p. 155
  152. ^ Oldstone, p. 156
  153. ^ Centers for Disease Control and Prevention (CDC) (2008). “Progress toward measles elimination—Japan, 1999–2008”. MMWR. Morbidity and Mortality Weekly Report 57 (38): 1049–1052. PMID 18818586. https://www.cdc.gov/mmwr/preview/mmwrhtml/mm5738a5.htm 2014年12月19日閲覧。. 
  154. ^ Moss WJ, Griffin DE (2006). “Global measles elimination”. Nature Reviews Microbiology 4 (12): 900–908. doi:10.1038/nrmicro1550. PMID 17088933. 
  155. ^ Karlen, p. 149
  156. ^ Karlen, p. 150
  157. ^ "Notifiable diseases: historic annual totals" Public Health England
  158. ^ Dobson, pp. 163–164
  159. ^ Karlen, p. 151
  160. ^ Karlen, p. 152
  161. ^ Mahy (b), p. 222
  162. ^ a b Dobson, p. 166
  163. ^ a b Karlen, p. 153
  164. ^ Oldstone, p. 179
  165. ^ Greenwood, p. 367
  166. ^ Karlen, pp. 153–154
  167. ^ Dobson, p. 165
  168. ^ “Nigeria polio vaccinators shot dead in Kano”. BBC News (BBC). (2013年2月8日). https://www.bbc.co.uk/news/world-africa-21381773 2014年12月19日閲覧。 
  169. ^ Smith, David (2013年2月8日). “Polio workers in Nigeria shot dead”. The Guardian (London). https://www.theguardian.com/world/2013/feb/08/polio-workers-nigeria-shot-dead 2014年12月19日閲覧。 
  170. ^ Clark, p. 149
  171. ^ Gao F, Bailes E, Robertson DL, Chen Y, Rodenburg CM, Michael SF, Cummins LB, Arthur LO, Peeters M, Shaw GM, Sharp PM, Hahn BH (1999). “Origin of HIV-1 in the chimpanzee Pan troglodytes troglodytes”. Nature 397 (6718): 436–441. Bibcode1999Natur.397..436G. doi:10.1038/17130. PMID 9989410. 
  172. ^ WHO Global Health Observatory”. World Health Organization. 2014年12月19日閲覧。
  173. ^ Mawar N, Saha S, Pandit A, Mahajan U (2005). “The third phase of HIV pandemic: social consequences of HIV/AIDS stigma & discrimination & future needs”. The Indian Journal of Medical Research 122 (6): 471–484. PMID 16517997. 
  174. ^ Esparza J, Osmanov S (2003). “HIV vaccines: a global perspective”. Current Molecular Medicine 3 (3): 183–193. doi:10.2174/1566524033479825. PMID 12699356. 
  175. ^ Weeks, pp. 15–21
  176. ^ Crawford (2013), pp. 122–123
  177. ^ Crawford (2013), p. 173
  178. ^ Weeks, p. 19
  179. ^ Levins, p. 279
  180. ^ quoted in Weeks, p. 20
  181. ^ Valdiserri p. 184
  182. ^ Valdiserri pp. 14–17
  183. ^ Weeks, pp. 303–316
  184. ^ Valdiserri p. 181
  185. ^ Valdiserri pp. 181–182
  186. ^ Barry, p. 111
  187. ^ a b c Karlen, p. 144
  188. ^ Taubenberger JK, Morens DM (January 2006). “1918 Influenza: the mother of all pandemics”. Emerging Infectious Diseases 12 (1): 15–22. doi:10.3201/eid1201.050979. PMC 3291398. PMID 16494711. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3291398/. 
  189. ^ Karlen, p. 145
  190. ^ Jenkins, p. 230
  191. ^ Barry, pp. 364–365
  192. ^ Barry, p. 114
  193. ^ Mahy, (b) p. 174
  194. ^ Shors, p. 332
  195. ^ Crawford (2000), p. 95
  196. ^ Weaver SC (2006). “Evolutionary influences in arboviral disease”. Current Topics in Microbiology and Immunology. Current Topics in Microbiology and Immunology 299: 285–314. doi:10.1007/3-540-26397-7_10. ISBN 3-540-26395-0. PMID 16568903. 
  197. ^ Levins, p. 138
  198. ^ Mahy, (b) p. 24
  199. ^ Chakraborty, p. 38
  200. ^ Ziperman HH (1973). “A medical history of the Panama Canal”. Surgery, Gynecology & Obstetrics 137 (1): 104–114. PMID 4576836. 
  201. ^ Dobson, p. 148
  202. ^ Ansari MZ, Shope RE (1994). “Epidemiology of arboviral infections”. Public Health Reviews 22 (1–2): 1–26. PMID 7809386. 
  203. ^ Cordellier R (1991). “[The epidemiology of yellow fever in Western Africa”] (French). Bulletin of the World Health Organization 69 (1): 73–84. PMC 2393223. PMID 2054923. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2393223/. 
  204. ^ Karlen, p. 157
  205. ^ Reiter P (2010). “West Nile virus in Europe: understanding the present to gauge the future”. Eurosurveillance 15 (10): 19508. PMID 20403311. 
  206. ^ Ross TM (2010). “Dengue virus”. Clinics in Laboratory Medicine 30 (1): 149–160. doi:10.1016/j.cll.2009.10.007. PMID 20513545. 
  207. ^ Sussman, p. 745
  208. ^ Zuckerman, p. 135
  209. ^ Sharapov UM, Hu DJ (2010). “Viral hepatitis A, B, and C: grown-up issues”. Adolescent Medicine: State of the Art Reviews 21 (2): 265–286, ix. PMID 21047029. 
  210. ^ Howard, p. 4
  211. ^ Purcell RH (1993). “The discovery of the hepatitis viruses”. Gastroenterology 104 (4): 955–963. doi:10.1016/0016-5085(93)90261-a. PMID 8385046. 
  212. ^ Howard, p. 13
  213. ^ Maccallum FO (1946). “Homologous serum hepatitis”. Proceedings of the Royal Society of Medicine 39 (10): 655–657. PMC 2181938. PMID 19993377. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2181938/. 
  214. ^ Blumberg BS, Sutnick AI, London WT, Millman I (1970). “Australia antigen and hepatitis”. The New England Journal of Medicine 283 (7): 349–354. doi:10.1056/NEJM197008132830707. PMID 4246769. 
  215. ^ Feinstone SM, Kapikian AZ, Gerin JL, Purcell RH (1974). “Buoyant density of the hepatitis A virus-like particle in cesium chloride”. Journal of Virology 13 (6): 1412–1414. PMC 355463. PMID 4833615. http://jvi.asm.org/cgi/pmidlookup?view=long&pmid=4833615 2014年12月19日閲覧。. 
  216. ^ Allain JP, Candotti D (2012). “Hepatitis B virus in transfusion medicine: still a problem?”. Biologicals: Journal of the International Association of Biological Standardization 40 (3): 180–186. doi:10.1016/j.biologicals.2011.09.014. PMID 22305086. 
  217. ^ Howard, p. 191
  218. ^ Greif J, Hewitt W (1998). “The living canvas”. Advance for Nurse Practitioners 6 (6): 26–31, 82. PMID 9708051. 
  219. ^ Nacopoulos AG, Lewtas AJ, Ousterhout MM (2010). “Syringe exchange programs: impact on injection drug users and the role of the pharmacist from a U.S. perspective”. Journal of the American Pharmacists Association 50 (2): 148–157. doi:10.1331/JAPhA.2010.09178. PMID 20199955. 
  220. ^ Perkins HA, Busch MP (2010). “Transfusion-associated infections: 50 years of relentless challenges and remarkable progress”. Transfusion 50 (10): 2080–2099. doi:10.1111/j.1537-2995.2010.02851.x. PMID 20738828. 
  221. ^ Dubovi, p. 126
  222. ^ Shors, pp. 19–20
  223. ^ McNeill, p. 70
  224. ^ Norton-Griffiths, p. 3
  225. ^ Barrett, p. 105
  226. ^ Barrett, p. 106
  227. ^ Barrett, p. 109
  228. ^ Barrett, pp. 108–109
  229. ^ Barrett, p. 112
  230. ^ Barrett, p. 119
  231. ^ Barrett, pp. 120–121
  232. ^ Barrett, p. 122
  233. ^ Barrett, p. 137
  234. ^ Barrett, pp. 136–138
  235. ^ (PDF) Joint FAO/OIE Committee on Global Rinderpest Eradication (Report). Food and Agriculture Organisation of the United Nations; World Organisation for Animal Health. (May 2011). p. 10. http://www.oie.int/fileadmin/Home/eng/Media_Center/docs/pdf/Final_Report_May2011.pdf 2014年12月19日閲覧。. 
  236. ^ Paton DJ, Sumption KJ, Charleston B (2009). “Options for control of foot-and-mouth disease: knowledge, capability and policy”. Philosophical Transactions of the Royal Society B 364 (1530): 2657–2667. doi:10.1098/rstb.2009.0100. PMC 2865093. PMID 19687036. http://rstb.royalsocietypublishing.org/cgi/pmidlookup?view=long&pmid=19687036 2014年12月19日閲覧。. 
  237. ^ Scudamore JM, Trevelyan GM, Tas MV, Varley EM, Hickman GA (2002). “Carcass disposal: lessons from Great Britain following the foot and mouth disease outbreaks of 2001”. Revue Scientifique et Technique (International Office of Epizootics) 21 (3): 775–787. PMID 12523714. 
  238. ^ Mahy BW (2005). “Introduction and history of foot-and-mouth disease virus”. Current Topics in Microbiology and Immunology. Current Topics in Microbiology and Immunology 288: 1–8. doi:10.1007/3-540-27109-0_1. ISBN 3-540-22419-X. PMID 15648172. 
  239. ^ Sussman, p. 386
  240. ^ Suarez DL (2010). “Avian influenza: our current understanding”. Animal Health Research Reviews 11 (1): 19–33. doi:10.1017/S1466252310000095. PMID 20591211. 
  241. ^ Feare CJ (2010). “Role of wild birds in the spread of highly pathogenic avian influenza virus H5N1 and implications for global surveillance”. Avian Diseases 54 (1 Suppl): 201–212. doi:10.1637/8766-033109-ResNote.1. PMID 20521633. 
  242. ^ Durand B, Zanella G, Biteau-Coroller F, Locatelli C, Baurier F, Simon C, Le Drean E, Delaval J, Prengere E, Beaute V, Guis H (2010). “Anatomy of bluetongue virus serotype 8 epizootic wave, France, 2007–2008”. Emerging Infectious Diseases 16 (12): 1861–1868. doi:10.3201/eid1612.100412. PMC 3294545. PMID 21122214. https://www.cdc.gov/eid/content/16/12/1861.htm 2014年12月19日閲覧。. 
  243. ^ Mellor PS, Carpenter S, Harrup L, Baylis M, Mertens PP (2008). “Bluetongue in Europe and the Mediterranean Basin: history of occurrence prior to 2006”. Preventive Veterinary Medicine 87 (1–2): 4–20. doi:10.1016/j.prevetmed.2008.06.002. PMID 18619694. https://doi.org/10.1016/j.prevetmed.2008.06.002 2014年12月19日閲覧。. 
  244. ^ Carr, p. 251
  245. ^ a b Kurstak, p. 463
  246. ^ Legg JP (1999). “Emergence, spread and strategies for controlling the pandemic of cassava mosaic virus disease in east and central Africa”. Crop Protection 18 (10): 627–637. doi:10.1016/S0261-2194(99)00062-9. 
  247. ^ Levins, pp. 181–183
  248. ^ Levins, p. 183.
  249. ^ Hansing D, Johnston CO, Melchers LE, Fellows H (1949). “Kansas Phytopathological Notes: 1948”. Transactions of the Kansas Academy of Science (1903–) 52 (3): 363–369. doi:10.2307/3625805. JSTOR 3625805. 
  250. ^ Hasegawa, p. 125
  251. ^ Levins, pp. 184–195
  252. ^ a b Levins, p. 185
  253. ^ Moreno P, Ambrós S, Albiach-Martí MR, Guerri J, Peña L (2008). “Citrus tristeza virus: a pathogen that changed the course of the citrus industry”. Molecular Plant Pathology 9 (2): 251–268. doi:10.1111/j.1364-3703.2007.00455.x. PMID 18705856. 
  254. ^ Thresh, p. 217
  255. ^ a b Crawford (2011), p. 34
  256. ^ Crawford (2011), pp. 34–50
  257. ^ Levins, p. 419
  258. ^ Mahy, (b) p. 459
  259. ^ Crawford (2011), p. 37
  260. ^ Dubovi, p. 409
  261. ^ a b Mahy, (b) pp. 504–505
  262. ^ Petersen LR, Brault AC, Nasci RS (July 2013). “West Nile virus: review of the literature”. JAMA: The Journal of the American Medical Association 310 (3): 308–315. doi:10.1001/jama.2013.8042. PMC 4563989. PMID 23860989. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4563989/. 
  263. ^ Morgan D (2006). “Control of arbovirus infections by a coordinated response: West Nile Virus in England and Wales”. FEMS Immunology and Medical Microbiology 48 (3): 305–312. doi:10.1111/j.1574-695X.2006.00159.x. PMID 17054715. 
  264. ^ Golding N, Nunn MA, Medlock JM, Purse BV, Vaux AG, Schäfer SM (2012). “West Nile virus vector Culex modestus established in southern England”. Parasites and Vectors 5: 32. doi:10.1186/1756-3305-5-32. PMC 3295653. PMID 22316288. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3295653/. 
  265. ^ Crawford (2011), p. 44–45
  266. ^ Chua KB, Chua BH, Wang CW (2002). “Anthropogenic deforestation, El Niño and the emergence of Nipah virus in Malaysia”. The Malaysian Journal of Pathology 24 (1): 15–21. PMID 16329551. 
  267. ^ Towner JS, Khristova ML, Sealy TK, Vincent MJ, Erickson BR, Bawiec DA, Hartman AL, Comer JA, Zaki SR, Ströher U, Gomes da Silva F, del Castillo F, Rollin PE, Ksiazek TG, Nichol ST (2006). “Marburgvirus genomics and association with a large hemorrhagic fever outbreak in Angola”. Journal of Virology 80 (13): 6497–6516. doi:10.1128/JVI.00069-06. PMC 1488971. PMID 16775337. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1488971/. 
  268. ^ Chippaux, J. P. (2014). “Outbreaks of Ebola virus disease in Africa: The beginnings of a tragic saga”. Journal of Venomous Animals and Toxins including Tropical Diseases 20 (1): 44. doi:10.1186/1678-9199-20-44. PMC 4197285. PMID 25320574. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4197285/. 
  269. ^ Quammen, p. 106
  270. ^ Quammen, pp. 106–107
  271. ^ Ebola Situation Report - 24 June 2015”. World Health Organization. 2015年7月26日閲覧。
  272. ^ Han HJ, Wen HL, Zhou CM, Chen FF, Luo LM, Liu JW, Yu XJ (2015). “Bats as reservoirs of severe emerging infectious diseases”. Virus Research 205: 1–6. doi:10.1016/j.virusres.2015.05.006. PMID 25997928. 
  273. ^ Quammen p. 97
  274. ^ Mahy, (b) p. 382
  275. ^ Monath TP (1975). “Lassa fever: review of epidemiology and epizootiology”. Bulletin of the World Health Organization 52 (4–6): 577–592. PMC 2366662. PMID 782738. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2366662/. 
  276. ^ Baum SG (2008). “Zoonoses-with friends like this, who needs enemies?”. Transactions of the American Clinical and Climatological Association 119: 39–51; discussion 51–52. PMC 2394705. PMID 18596867. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2394705/. 
  277. ^ A history of the HIV/Aids epidemic with an emphasis on Africa”. World Health Organization (2003年). 2015年7月26日閲覧。
  278. ^ Quoted in: Peterson E, Ryan KJ, Ahmad N (2010). Sherris Medical Microbiology (5th ed.). McGraw-Hill Medical. p. 101. ISBN 0-07-160402-2 
  279. ^ Thurber RV (2009). “Current insights into phage biodiversity and biogeography”. Current Opinion in Microbiology 12 (5): 582–587. doi:10.1016/j.mib.2009.08.008. PMID 19811946. 
  280. ^ Breitbart M, Rohwer F (2005). “Here a virus, there a virus, everywhere the same virus?”. Trends in Microbiology 13 (6): 278–284. doi:10.1016/j.tim.2005.04.003. PMID 15936660. 
  281. ^ Suttle CA (2005). “Viruses in the sea”. Nature 437 (7057): 356–361. Bibcode2005Natur.437..356S. doi:10.1038/nature04160. PMID 16163346. 
  282. ^ Sullivan MB, Coleman ML, Weigele P, Rohwer F, Chisholm SW (2005). “Three Prochlorococcus cyanophage genomes: signature features and ecological interpretations”. PLOS Biology 3 (5): e144. doi:10.1371/journal.pbio.0030144. PMC 1079782. PMID 15828858. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1079782/. 
  283. ^ Piganeau, pp. 347–349
  284. ^ a b Livermore DM (2003). “The threat from the pink corner”. Annals of Medicine 35 (4): 226–234. doi:10.1080/07853890310001609. PMID 12846264. 
  285. ^ Jagusztyn-Krynicka EK, Wyszyńska A (2008). “The decline of antibiotic era—new approaches for antibacterial drug discovery”. Polish Journal of Microbiology / Polskie Towarzystwo Mikrobiologów = the Polish Society of Microbiologists 57 (2): 91–98. PMID 18646395. 
  286. ^ Sulakvelidze A, Alavidze Z, Morris JG (2001). “Bacteriophage therapy”. Antimicrobial Agents and Chemotherapy 45 (3): 649–659. doi:10.1128/AAC.45.3.649-659.2001. PMC 90351. PMID 11181338. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC90351/. 
  287. ^ Zimmer, p. 37
  288. ^ Zimmer, pp. 37–38
  289. ^ Górski A, Miedzybrodzki R, Borysowski J, Weber-Dabrowska B, Lobocka M, Fortuna W, Letkiewicz S, Zimecki M, Filby G (2009). “Bacteriophage therapy for the treatment of infections”. Current Opinion in Investigational Drugs 10 (8): 766–774. PMID 19649921. 
  290. ^ a b Kurth R, Bannert N (2010). “Beneficial and detrimental effects of human endogenous retroviruses”. International Journal of Cancer 126 (2): 306–14. doi:10.1002/ijc.24902. PMID 19795446. 
  291. ^ Emerman M, Malik HS (February 2010). Virgin, Skip W. ed. “Paleovirology—modern consequences of ancient viruses”. PLoS Biology 8 (2): e1000301. doi:10.1371/journal.pbio.1000301. PMC 2817711. PMID 20161719. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2817711/. 
  292. ^ Blikstad V, Benachenhou F, Sperber GO, Blomberg J (2008). “Evolution of human endogenous retroviral sequences: a conceptual account”. Cellular and Molecular Life Sciences : CMLS 65 (21): 3348–3365. doi:10.1007/s00018-008-8495-2. PMID 18818874. 
  293. ^ Varela M, Spencer TE, Palmarini M, Arnaud F (October 2009). “Friendly viruses: the special relationship between endogenous retroviruses and their host”. Annals of the New York Academy of Sciences 1178: 157–172. Bibcode2009NYASA1178..157V. doi:10.1111/j.1749-6632.2009.05002.x. PMC 4199234. PMID 19845636. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4199234/. 
  294. ^ Baker, p. 37
  295. ^ Carl Zimmer, "Ancient Viruses, Once Foes, May Now Serve as Friends, New York Times, April 23, 2015 "
  296. ^ Zimmer, p. 45





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