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Research Article

Impact of air temperature variation on the ixodid ticks habitat and tick-borne encephalitis incidence in the Russian Arctic: the case of the Komi Republic

, ORCID Icon, , , &
Article: 1298882 | Received 06 Feb 2017, Accepted 14 Feb 2017, Published online: 31 Mar 2017

References

  • Amato-Gauci AJ, Zeller H. Tick-borne encephalitis joins the diseases under surveillance in the European Union. Euro Surveill. 2012;17(42):1. Available from: http://www.eurosurveillance.org/ViewArticle.aspx?ArticleId=20299
  • Amicizia D, Domnich A, Panatto D, et al. Epidemiology of tick-borne encephalitis (TBE) in Europe and its prevention by available vaccines. Hum Vaccin Immunother. 2013;9(5):1163–13.
  • Fomsgaard A, Fertner ME, Essbauer S, et al. Tick-borne Encephalitis Virus, Zealand, Denmark, 2011. Emerg Infect Dis. 2013;19(7):1171–1173. DOI:10.3201/eid1907.130092
  • Skarpaas T, Golovljova I, Vene S, et al. Tickborne encephalitis virus, Norway and Denmark. Emerg Infect Dis. 2006;12:1136–1138. PMID:16836835.
  • Suss J. TBE – a short overview on epidemiological status in Europe. ISW-TBE 2012. Vienna; 2012 Feb 2–3.
  • Jaenson TG, Hjertqvist M, Bergstrom T, et al. Why is tick-borne encephalitis increasing? A review of the key factors causing the increasing incidence of human TBE in Sweden. Parasit Vectors. 2012 Aug 31; 5: 184. PMID: 22937961.
  • Gray JS, Dautel H, Estrada-Pen˜a A, et al. Effects of climate change on ticks and tick-borne diseases in Europe. Interdiscip Perspect Infect Dis. 2009;2009:593232. Published online 2009 Jan 4.
  • Estrada-Peña A, Nieves A, de la Fuente J. Impact of climate trends on tick-borne pathogen transmission. Front Physiol. 2012;3:64. Published online 2012 Mar 27.
  • Palo RT. Tick-borne encephalitis transmission risk: its dependence on host population dynamics and climate effects. Vector Borne Zoonotic Dis. 2014;14(5):346–352. Epub 2014 Apr 18.
  • Medlock JM, Kayleigh M, Hansford AB, et al. Driving forces for changes in geographical distribution of Ixodes ricinus ticks in Europe. Parasit Vectors. 2013;6:1. Available from: http://www.parasitesandvectors.com/content/6/1/1
  • Knap N, Avšič-Županc T. Factors affecting the ecology of tick-borne encephalitis in Slovenia. Epidemiol Infect. 2015;143(10):2059–2067. Epub 2015 Apr 28.
  • Ostfeld RS, Brunner JL. Climate change and Ixodes tick-borne diseases of humans. Phil Trans R Soc B. 2015;370:20140051.
  • Second roshydromet assessment report on climate change and its consequences in the Russian Federation M: rosgidromet. 2014. p 56. Available from: http://www.wmo.int/media/content/second-roshydromet-assessment-report-climate-change-and-its-consequences-russian-federation
  • Kříž B, Kott I, Daniel M, et al. Impact of climate changes on the incidence of tick-borne encephalitis in the Czech Republic in 1982–2011.[Czech.]. Epidemiol Mikrobiol Imunol. 2015;64(1):24–32.
  • Hedlund C, Blomstedt Y, Schumann B. Association of climatic factors with infectious diseases in the Arctic and subarctic region – a systematic review. Glob Health Action. 2014;7:24161.
  • Tokarevich N, Tronin A, Blinova O, et al. The impact of climate change on the expansion of Ixodes persulcatus habitat and the incidence of tick borne encephalitis in the north of European Russia. Glob Health Action. 2011a;4:8448.
  • Glushkova L, Galimov R. Ecological and epidemiological aspects of tick-borne Encephalitis in the Republic of Komi and disease prevention. EpiNorth. 2011;12:44–50.
  • Geiger R. Klassifikation der Klimate nach W. Köppen [Classification of climates according to W. Köppen]. In: Landolt-Börnstein – Zahlenwerte und Funktionen aus Physik, Chemie, Astronomie, Geophysik und Technik, alte Serie [Landolt-Börnstein - figures and functions Physics, chemistry, astronomy, geophysics and technology,old series. Part III (Astronomy and Geophysics)] Vol. 3. Berlin: Springer; 1954. p. 603–607.
  • Filippova NA. Ixodid ticks subfamily Ixodinae. Arachnida. IV(4), Fauna of the USSR. Leningrad: Nauka Press; 1977. USSR. Russian.
  • Tucker CJ. Red and photographic infrared linear combinations for monitoring vegetation. Remote Sens Environ. 1979;8(2):127–150.
  • Tucker CJ, Pinzon JE, Brown ME, et al. An extended AVHRR 8-km NDVI data set compatible with MODIS and SPOT vegetation NDVI data. Int J Remote Sens. 2005;26(20):4485–5598.
  • Solantie R. Daytime temperature sum – a new thermal variable describing growing season characteristics and explaining evapotranspiration. Boreal Environ Res. 2004;4:319–334.
  • Balashov YS. Ixodid ticks-parasites and vectors of diseases. St.Petersburg: Nauka; 1998. p. 287. Russian.
  • Elsakov VV, Teljatnikov MY. Effects of interannual climatic fluctuations of the last decade on NDVI in north-eastern European Russia and Western Siberia. Curr Problems Remote Sen Earth Space. 2013;10(3):260–271.
  • Bonham CD. Measurements for terrestrial vegetation. 2nd ed. Chichester: John Wiley & Sons; 2013. p. 246. ISBN: 978-0-4709-7258-8.
  • Koven CD. Boreal carbon loss due to poleward shift in low-carbon ecosystems. Nat Geosci. 2013;6:452–456.
  • Ceballos LA, Pintore MD, Tomassone L, et al. Habitat and occurrence of Ixodid ticks in the Liguria Region, Northwest Italy. ExpApplAcarol. 2014;64(1):121–135. Epub 2014 Mar 30.
  • Parkinson A, Evengard B, Semenza J, et al. Climate change and infectious diseases in the Arctic: establishment of a circumpolar working group. Int J Circumpolar Health. 2014;73:25163.
  • Revich B, Tokarevich N, Parkinson AJ. Climate change and zoonotic infections in the Russian Arctic. Int J Circumpolar Health. 2012;71:18792.
  • Korenberg EI, Zhukov VI, et al. The distribution of Ixodes persulcatus in the USSR. J Zoology (Russ). 1969;48(7):1003–1014. Russian. Available from: http://www.researchgate.net/publication/263926549_Distribution_of_the_taiga_tick_(Ixodes_persulcatus)_in_the_USSR_Russian
  • Korabelnikov IV. Expansion of natural focal infections under anthropogenic impacts in biosphere. Nat Priorities Russ. 2009;2:77–78. Russian.
  • Yasukevich VV, Kazakova EV, Popov IO, et al. Distribution of Ixodes ricinus L., 1758 and Ixodes persulcatus Schulze, 1930 sitiformes ixodidae in Russia and adjacent countries and observed climate changes. Proc Acad Sci Geo. 2009;427:68892. Russian.
  • Randolph SE. Tick ecology: processes and patterns behind the epidemiological risk posed by ixodid ticks as vectors. Parasitology. 2004;129:37–65.
  • Rand PW, Holman MS, Lubelczyk C, et al. Thermal accumulation and the early development of Ixodes scapularis. J Vector Ecol. 2004;29:164–176.
  • Lindgren E, Talleklint L, Polfeldt T. Impact of climatic change on the northern latitude limit and population density of the disease-transmitting European tick Ixodes ricinus. Environ Health Perspect. 2000;108:119–123. [ cited 1999 Dec 29]. Available from: http://ehpnet:.niehs.nih.go/docsd/2 0018pl119-123indren/abstractml
  • Jore S, Vanwambeke SO, Viljugrein H, et al. Climate and environmental change drives Ixodes ricinus geographical expansion at the northern range margin. Parasit Vectors. 2014;7:11.
  • Zeman P, Pazdiora P, Benes C. Spatio-temporal variation of tick-borne encephalitis (TBE) incidence in the Czech Republic: is the current explanation of the disease’s rise satisfactory? Ticks Tick Borne Dis. 2010;1(3):129–140. PMID:21771520.
  • Danielova V, Kliegrova S, Daniel M, et al. Influence of climate warming on tickborne encephalitis expansion to higher altitudes over the last decade (1997–2006) in the highland region (Czech Republic). Cent Eur J Public Health. 2008;16(1):4–11. PMID:18459472.
  • Kriz B, Maly M, Benes C, et al. Epidemiology of tick-borne encephalitis in the Czech Republic 1970–2008. Vector Borne Zoonotic Dis. 2012;12(11):994–999. Epub 2012 Oct 1.
  • Suss J. Tick- borne encephalitis 2010: epidemiology risk areas and virus strains in Europe and Asia – an overview. Ticks Tick Borne Dis. 2011;2(1):2–15. Epub 2010 Dec 17.
  • Ogden NH, Maarouf A, Barker IK, et al. Climate change and the potential for range expansion of the Lyme disease vector Ixodes scapularis in Canada. Inter J Parasitol. 2006;36:63–70.
  • Tokarevich NK, Tronin AA, Seljuk VN, et al. Ecological and epidemiological characteristics of TBE and tick-borne borreliosis (the Lyme disease) in Kaliningrad oblast. Russian J Infect Immun (Russ). 2011b;1(4):319–330. Russian.
  • Randolph SE. Is expert opinion enough? A critical assessment of the evidence for potential impacts of climate change on tick-borne diseases. Anim Health Res Rev. 2013;14(02):1–5.
  • Sumilo D, Asokliene L, Bormane A, et al. Climate change cannot explain the upsurge of tick-borne encephalitis in the baltics. PLoS One. 2007;2(6):e500. Available from: http://journals.plos.org/plosone/article?id=10.1371/journal.pone.0000500
  • Stefanoff P, Orliková H, Príkazský V, et al. Cross-border surveillance differences: tick-borne encephalitis and lyme borreliosis in the Czech Republic and Poland, 1999–2008. Cent Eur J Public Health. 2014;22(1):54–59.
  • Kollaritsch H, Chmelík V, Dontsenko I, et al. The current perspective on tick-borne encephalitis awareness and prevention in six Central and Eastern European countries: report from a meeting of experts convened to discuss TBE in their region. Vaccine. 2011;29(28):4556–4564. Epub 2011 May 5.
  • Regions of Russia. Social-and-economic indices. 2011. Annual official report of ROSSTAT [Electronic resource]. Russian. Available from: http://www.gks.ru/bgd/regl/B11_14p/IssWWW.exe/Stg/d01/05-02.htm
  • Mikryukova TP, Chausov EV, Konovalova SN, et al. Genetic diversity of the tick-borne encephalitis virus in Ixodes persulcatus ticks in northeastern European Russia. Parazitologia (Russ.). 2014;48(2):131–149. Russian. Available from: http://www.researchgate.net/publication/262524894_Genetic_Diversity_of_the_Tick-borne_Encephalitis_Virus_in_Ixodes_Persulcatus_Ticks_in_Northeastern_European_Russia
  • Hasle G. Transport of ixodid ticks and tick-borne pathogens by migratory birds. Front Cell Infect Microbiol. 2013;3:48.
  • Sparagano O, George D, Giangaspero A, Spitalska E. Arthropods and associated arthropod- borne diseases transmitted by migrating birds. The case of ticks and tick-borne pathogens. Vet Parasitol. 2015;213:61–66.
  • Eremeeva M, Oliveira A, Moriarity J, et al. Detection and identification of bacterial agents in Ixodes persulcatus Schulze ticks from the north western region of Russia. Vector-Borne Zoonotic Dis. 2007;7:426–436.
  • Tokarevich N, Stoyanova N, Chaika N, et al. Lyme disease in Arkhangelsk province of the Russian Federation. EpiNorth. 2002;3:357.
  • Glushkova L, Korabelnikov I, Ternovoy V, Protopopova E, Mikrukova T. [Detection of causative agents in Ixodes persulcatus in the Komi Republic] Siberian Medical Journal (Irkutsk). 2012;4:88–91. Russian.