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The control by ventilation of airborne bacterial transfer between hospital patients, and its assessment by means of a particle tracer: I. An airborne-particle tracer for cross-infection studies

Published online by Cambridge University Press:  15 May 2009

N. Foord
Affiliation:
Cross-Infection Reference Laboratory, Central Public Health Laboratory, Colindale Avenue, London, NW9 5HT
O. M. Lidwell
Affiliation:
Cross-Infection Reference Laboratory, Central Public Health Laboratory, Colindale Avenue, London, NW9 5HT
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Summary

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A simple and convenient particle tracer for studies of the effectiveness of isolation units and other places in limiting the airborne transfer of bacteria is described. Particles of potassium iodide 7–8 µm. diameter are generated by spraying from solution and collected on membrane filters. The particles can be identified by development with 0·1 % acid palladium chloride solution, when dark brown spots approximately 100 µm. in diameter are produced.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1972

References

REFERENCES

Baird, G. (1969). Air change and air transfer in a hospital ward unit. Building Science 3, 113.Google Scholar
Goldberg, L. J. (1968). Application of the microaerofluorometer to the study of dispersion of a fluorescent aerosol into a selected atmosphere. Journal of Applied Meteorology 7, 68.2.0.CO;2>CrossRefGoogle Scholar
Hambraeus, A. & Sanderson, H. F. (1972). Studies with an airborne particle tracer in an isolation ward for burned patients. Journal of Hygiene 70, 299.CrossRefGoogle Scholar
Hounam, R. F. & Sherwood, R. J. (1965). The cascade centripeter: a device for determining the concentration and size distribution of aerosols. American Industrial Hygiene Association Journal 26, 122.Google Scholar
Langmead, W. A. & O'connor, D. T. (1969). The personal centripeter - a particle size selective personal air sampler. Annals of Occupational Hygiene 12, 185.Google ScholarPubMed
Lidwell, O. M. (1972). Ventilation in subdivided isolation units. Journal of Hygiene 70, 287.Google Scholar
Lidwell, O. M. & Williams, R. E. O. (1960). The ventilation of operating theatres. Journal of Hygiene 58, 449.Google ScholarPubMed
Lidwell, O. M. & Towers, A. D. (1969). Protection from microbial contamination in a room ventilated by a uni-directional air flow. Journal of Hygiene 67, 95.Google Scholar
Noble, W. C., Lidwell, O. M. & Kingston, D. (1963). The size distribution of airborne particles carrying micro-organisms. Journal of Hygiene 61, 385.Google ScholarPubMed
Williams, R. E. O. & Harding, L. (1969). Studies of the effectiveness of an isolation ward. Journal of Hygiene 67, 649.Google ScholarPubMed