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Air sampling of smallpox virus

Published online by Cambridge University Press:  15 May 2009

G. Thomas
Affiliation:
Microbiological Research Establishment, Porton Down, Salisbury, Wilts.
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Summary

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Airborne smallpox virus has been recovered in an isolation hospital using an adhesive surface sampling technique in the presence of very low aerosol concentrations. Previous work in this field is reviewed. Successful recovery of airborne virus depends on sampling large volumes of air with a suitable sampler and thorough investigation of the whole sample taken for the presence of viable virus. More information on the characteristics and behaviour of airborne smallpox virus is needed in particular with regard to the future design and siting of smallpox isolation units.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1974

References

REFERENCES

Andebsen, A. (1958). A new sampler for the collection, sizing and enumeration of viable airborne particles. Journal of Bacteriology 76, 471.CrossRefGoogle Scholar
Appleyard, G. & Westwood, J. C. N. (1964). The growth of rabbitpox virus in tissue cultures. Journal of General Microbiology 37, 391.CrossRefGoogle Scholar
Barby, F. W. (1889), Local Government Board. Report on the epidemic of smallpox at Sheffield during 1887–8.Google Scholar
B.M.J. (1970). Leader: Airborne transmission of smallpox. British Medical Journal iv, 128.Google Scholar
Cramb, R. (1951). Smallpox outbreak in Brighton in 1950–51. Public Health (London) 64, 123.CrossRefGoogle ScholarPubMed
Dixon, C. W. (1962). Smallpox. London: J. & A. Churchill.Google Scholar
Downie, A. W., Meiklejohn, M., Vincent, L. St, Rao, A. R., Sundra Babtt, B. V. & Kempe, C. H. (1965). The recovery of smallpox virus from patients and their environment in a smallpox hospital. Bulletin of the World Health Organization 33, 615.Google Scholar
Downie, A. W., Vincent, L. St, Meiklejohn, G., Ratbakannan, N. R., Rao, A. R., Krishman, G. N. V. & Kempe, C. H. (1961). Studies on the virus content of mouth washings in the acute phase of smallpox. Bulletin of the World Health Organization 25, 49.Google ScholarPubMed
Hendebson, D. A. (1973). Eradication of smallpox: The critical year ahead. Proceedings of the Royal Society of Medicine 66, 493.CrossRefGoogle Scholar
Lovelock, J. E., Porterfield, J. S., Roden, A. T. & Sommerville, T. (1952). Further studies on the natural transmission of the common cold. Lancet ii, 657.CrossRefGoogle Scholar
May, K. R. & Harper, G. J. (1957). The efficiency of various liquid impinger samplers in bacterial aerosols. British Journal of Industrial Medicine 14, 287.Google ScholarPubMed
Meiklejohn, G., Kempe, C. H., Downie, A. W., Berge, T. O., Vincent, L. St & Rao, A. R. (1961). Air sampling to recover variola virus in the environment of a smallpox hospital. Bulletin of the World Health Organization 22, 63.Google Scholar
Peirce, E. R., Melville, F. S., Downie, A. W. & Duckworth, M. J. (1958). Antiviral gammaglobulin in smallpox prophylaxis. Lancet ii, 635.CrossRefGoogle Scholar
Perkins, W. A. & Vaughan, C. M. (1961). Public Health implications of airborne infection. Physical aspects. Bacteriological Reviews 25, 347.CrossRefGoogle ScholarPubMed
Pirsch, J. B. & Purlsan, E. A. (1962). A tissue culture assay for variola virus based on the enumeration of hyperplastic foci. Journal of Immunology 89, 632.CrossRefGoogle ScholarPubMed
Power, W. H. (1882). Report of the Medical Officer, Local Government Board for 1880–81. Supplement.Google Scholar
Thomas, G. (1970 a). An adhesive surface sampling technique for airborne viruses. Journal of Hygiene 68, 273.CrossRefGoogle ScholarPubMed
Thomas, G. (1970 b). Sampling rabbitpox aerosols of natural origin. Journal of Hygiene 68, 511.Google Scholar
Tyler, M. E. & Shipe, E. L. (1959). Bacterial aerosol samplers. I. Development and evolution of the all-glass impinger. Applied Microbiology 7, 337.CrossRefGoogle Scholar
Westwood, J. C. N., Boulter, E. A., Bowen, E. T. W. & Maber, H. B. (1966). Experimental respiratory infection with pox viruses. I. Clinical, virological and epidemiological studies. British Journal of Experimental Pathology 48, 453.Google Scholar
W.H.O. expert committee on smallpox (1964). First report. World Health Organization Technical Report Series No. 283.Google Scholar
W.H.O. (1970). Airborne transmission of smallpox. W.H.O. Chronicle 24, 311.Google Scholar