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California encephalitis virus endemicity in the Yukon Territory, 1972

Published online by Cambridge University Press:  15 May 2009

D. M. McLean
Affiliation:
Division of Medical Microbiology, University of British Columbia, Vancouver 8, B.C., Canada
Alison M. Clarke
Affiliation:
Division of Medical Microbiology, University of British Columbia, Vancouver 8, B.C., Canada
E. J. Goddard
Affiliation:
Division of Medical Microbiology, University of British Columbia, Vancouver 8, B.C., Canada
A. S. Manes
Affiliation:
Division of Medical Microbiology, University of British Columbia, Vancouver 8, B.C., Canada
C. A. Montalbetti
Affiliation:
Division of Medical Microbiology, University of British Columbia, Vancouver 8, B.C., Canada
R. E. Pearson
Affiliation:
Division of Medical Microbiology, University of British Columbia, Vancouver 8, B.C., Canada
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Summary

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Sera from 218 of 1574 (14%) small mammals collected in the Yukon Territory between 14 May and 13 August 1972 neutralized a Yukon strain of California encephalitis virus (snowshoe-hare subtype). These included 133 of 319 (42%) snowshoe hares (Lepus americanus), 84 of 1243 (7%) ground squirrels (Citellus undulatus) and 1 of 12 (8%) tree squirrels (Tamiasciurus hudsonicus). California encephalitis virus (snow-shoe hare subtype) was isolated from four pools of unengorged Aedes communis mosquitoes collected near Whitehorse (61° N., 135° W.) and on one occasion each from pools of the same species collected at Hunker Creek (64° N., 138° W.) and at mile 125, Dempster Highway (66° N., 138° W.) during July 1972. Replication of a Yukon strain of California encephalitis virus was observed in wild-caught Culiseta inornata and Aedes canadensis mosquitoes after intrathoracic injection and holding at temperatures of 80°, 50° and 40° F.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1973

References

REFERENCES

Burgdorfer, W., Newhouse, V. F. & Thomas, L. A. (1961). Isolation of California encephalitis virus from the blood of a snowshoe hare (Lepus americanus) in western Montana. American Journal of Hygiene 73, 344.Google ScholarPubMed
Burton, A. N. & McLintock, J. (1970). Further evidence of western encephalitis infection in Saskatchewan mammals and birds and in reindeer in northern Canada. Canadian Veterinary Journal 11, 232.Google ScholarPubMed
Clarke, D. H. & Casals, J. (1958). Techniques for hemagglutination and hemagglutination-inhibition with arthropod-borne viruses. American Journal of Tropical Medicine and Hygiene 7, 561.CrossRefGoogle ScholarPubMed
Feltz, E. T., List-Young, B., Ritter, D. G., Holden, P., Noble, G. R. & Clarke, P. S. (1972). California encephalitis virus: serological evidence of human infections in Alaska. Canadian Journal of Microbiology 18, 757.Google Scholar
Hammon, W. McD. & Sather, G. E. (1966). History and recent reappearance of viruses of the California encephalitis group. American Journal of Tropical Medicine and Hygiene 15 199.Google Scholar
Hoff, G. L., Yuill, T. M., Iversen, J. O. & Hanson, R. P. (1969). Snowshoe hares and the California encephalitis virus group in Alberta 1961–1968. Bulletin of the Wildlife Disease Association 5, 254.CrossRefGoogle ScholarPubMed
Iversen, J., Hanson, R. P., Papadopoulos, O., Morris, C. V. & de Foliart, G. B. (1969). Isolation of viruses of the California encephalitis virus group from boreal Aedes mosquitoes. American Journal of Tropical Medicine and Hygiene 18, 735.CrossRefGoogle ScholarPubMed
Kettyls, G. D., Verrall, V. M., Wilton, L. D., Clapp, J. B., Clarke, D. A. & Rublee, J. D. (1972). Arbovirus infections in man in British Columbia. Canadian Medical Association Journal 106, 1175.Google ScholarPubMed
McLean, D. M., Bergman, S. K. A., Goddard, E. J., Graham, E. A. and Purvin-Good, K. W. (1971). North–South distribution of arbovirus reservoirs in British Columbia, 1970. Canadian Journal of Public Health 62, 120.Google ScholarPubMed
McLean, D. M., Crawford, M. A., Ladyman, S. R., Peers, R. R. & Purvin-Good, K. W. (1970). California encephalitis and Powassan virus activity in British Columbia, 1969. American Journal of Epidemiology 92, 266.Google Scholar
McLean, D. M., Goddard, E. J., Graham, E. A., Hardy, G. J. & Purvin-Good, K. W. (1972). California encephalitis virus isolations from Yukon mosquitoes, 1971. American Journal of Epidemiology 95, 347.CrossRefGoogle ScholarPubMed
Morgante, O. & Shemanchuk, J. (1967). Virus of California encephalitis complex: isolation from Culiseta inornata. Science, New York 157, 292.CrossRefGoogle ScholarPubMed
Newhouse, V. F., Burgdorfer, W. & Corwin, D. (1971). Field and laboratory studies on the hosts and vectors of the snowshoe hare strain of California virus. Mosquito News 31, 401.Google Scholar
Newhouse, V. F., Burgdorfer, W., McKiel, J. A. & Gregson, J. D. (1963). California encephalitis virus: serologic survey of small wild mammals in northern United States and southern Canada and isolation of additional strains. American Journal of Hygiene 78, 123.Google Scholar
Pantuwatana, S., Thompson, W. H., Watts, D. M. & Hanson, R. P. (1972). Experimental infection of chipmunks and squirrels with La Crosse and Trivittatus viruses and biological transmission of La Crosse virus by Aedes triseriatus. American Journal of Tropical Medicine and Hygiene 21, 476.CrossRefGoogle Scholar
Reed, L. J. & Muench, H. (1938). Simple method of estimating 50 per cent endpoints. American Journal of Hygiene 27, 493.Google Scholar
Sudia, W. D., Newhouse, V. F., Calisher, C. H. & Chamberlain, R. W. (1971). California group arboviruses: isolations from mosquitoes in North America. Mosquito News 31, 576.Google Scholar
Yuill, T. M., Iversen, J. O. & Hanson, R. P. (1969). Evidence for arbovirus infections in a population of snowshoe hares: a possible mortality factor. Bulletin of the Wildlife Disease Association 5, 248.CrossRefGoogle Scholar