The index of microbial air contamination.
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[1] K Willeke,et al. Effect of impact stress on microbial recovery on an agar surface , 1995, Applied and environmental microbiology.
[2] T. K. Hunt,et al. Wound healing and wound infection. What surgeons and anesthesiologists can do. , 1997, The Surgical clinics of North America.
[3] W. Whyte. The Casella Slit Sampler or the Biotest Centrifugal Sampler--which is the more efficient? , 1981, The Journal of hospital infection.
[4] A. von Holy,et al. Microbial populations associated with commercial bread production , 1997, Journal of basic microbiology.
[5] H. Eichenwald,et al. Standard Sampler for Assay of Airborne Microorganisms , 1964, Science.
[6] J. Portnoy,et al. Evaluation of four bioaerosol samplers in the outdoor environment. , 1996, Annals of allergy, asthma & immunology : official publication of the American College of Allergy, Asthma, & Immunology.
[7] R. Kniseley,et al. Precision of the all-glass impinger and the andersen microbial impactor for air sampling in solid-waste handling facilities , 1981, Applied and environmental microbiology.
[8] B. Brunekreef,et al. Enumeration and identification of airborne viable mould propagules in houses , 1990, Allergy.
[9] L. H. Grimme,et al. Working Group I , 2000 .
[10] H. Humphreys,et al. Survey of operating theatres in Great Britain and Ireland. , 1995, The Journal of hospital infection.
[11] W. Whyte. Sterility assurance and models for assessing airborne bacterial contamination. , 1986, Journal of parenteral science and technology : a publication of the Parenteral Drug Association.
[12] Infection control team in the operating room: separating aspiration from reality! , 1999, The Journal of hospital infection.
[13] B Friberg,et al. Correlation between surface and air counts of particles carrying aerobic bacteria in operating rooms with turbulent ventilation: an experimental study. , 1999, The Journal of hospital infection.
[14] Microbes in the air#x2014;when to count! (The role of air sampling in hospitals) , 1992 .
[15] W. Sayer,et al. Hospital airborne bacteria as estimated by the Andersen sampler versus the gravity settling culture plate. , 1972, American journal of clinical pathology.
[16] B. Brunekreef,et al. Presence of viable mould propagules in indoor air in relation to house damp and outdoor air , 1992, Allergy.
[17] Duane L. Pierson,et al. Microbiology on Space Station Freedom , 1991 .
[18] J. M. van der Vossen,et al. Microbes in food processing technology. , 1994, FEMS microbiology reviews.
[19] J. Frank,et al. Biological Aerosols: A Review of Airborne Contamination and its Measurement in Dairy Processing Plants. , 1989, Journal of food protection.
[20] H. Harmsen,et al. Molecular ecology of microbes: a review of promises, pitfalls and true progress. , 1994 .
[21] G. Laurell,et al. The relative importance of the routes and sources of wound contamination during general surgery. II. Airborne. , 1991, The Journal of hospital infection.
[22] Bacterial air counts obtained with a centrifugal (RCS) sampler and a slit sampler--the influence of aerosols. , 1984, The Journal of hospital infection.
[23] O M Lidwell,et al. Suggested bacteriological standards for air in ultraclean operating rooms. , 1983, The Journal of hospital infection.
[24] J. Charnley,et al. SECTION II GENERAL ORTHOPAEDICS Postoperative Infection after Total Hip Replacement with Special Reference to Air Contamination in the Operating Room , 1972, Clinical orthopaedics and related research.
[25] James W. Useller. ‘Clean Room’ Technology , 1965, Nature.
[26] W Whyte,et al. In support of settle plates. , 1996, PDA journal of pharmaceutical science and technology.
[27] C Pasquarella,et al. New methods for microbial contamination monitoring: an experiment on board the MIR orbital station. , 1997, Acta astronautica.
[28] W. Sayer,et al. Estimation of airborne fungal flora by the Andersen sampler versus the gravity settling culture plate. 1. Isolation frequency and numbers of colonies. , 1969, The Journal of allergy.
[29] O M Lidwell,et al. Air, antibiotics and sepsis in replacement joints. , 1988, The Journal of hospital infection.
[30] R. Dimmick,et al. An introduction to experimental aerobiology , 1969 .
[31] L. S. Nakhla,et al. A comparative evaluation of a new centrifugal air sampler (RCS) with a slit air sampler (SAS) in a hospital environment. , 1981, The Journal of hospital infection.
[32] S. K. Mehta,et al. Evaluation of three portable samplers for monitoring airborne fungi , 1996, Applied and environmental microbiology.
[33] Ruth B. Kundsin,et al. Architectural design and indoor microbial pollution , 1988 .
[34] Nhs Estates. Ventilation in Healthcare Premises , 1994 .
[35] G. Taylor,et al. Optimisation of ultraclean air. The role of instrument preparation. , 1996, The Journal of bone and joint surgery. British volume.
[36] L MacNeil,et al. Molecular techniques and their potential application in monitoring the microbiological quality of indoor air. , 1995, Canadian journal of microbiology.
[37] I. Lundholm. Comparison of methods for quantitative determinations of airborne bacteria and evaluation of total viable counts , 1982, Applied and environmental microbiology.
[38] H. Patterson,et al. Smoke : a study of aerial disperse systems , 1932 .
[39] B. Ljungqvist,et al. The biotest RCS air samplers in unidirectional flow. , 1994, Journal of pharmaceutical science and technology : the official journal of PDA.
[40] J. Porterfield. Joint Commission on Accreditation of Hospitals. , 1971, The American journal of nursing.
[41] J. Drummond,et al. Comparison of Andersen Eight-Stage and Two-Stage Viable Air Samplers , 1978, Applied and environmental microbiology.
[42] T. Eickhoff. Airborne Nosocomial Infection: A Contemporary Perspective , 1994, Infection Control & Hospital Epidemiology.
[43] W. Solomon. Assessing fungus prevalence in domestic interiors. , 1975, The Journal of allergy and clinical immunology.
[44] J. Frank,et al. Evaluation of Air Samplers for Recovery of Biological Aerosols in Dairy Processing Plants. , 1989, Journal of food protection.
[45] A. G. Turner,et al. Comparison of two biological aerosol sampling methods , 1987, Applied and environmental microbiology.
[46] C. Vanderzant,et al. Compendium of Methods for the Microbiological Examination of Foods , 1992 .
[47] E. G. Richardson. Aerodynamic Capture of Particles , 1960, Nature.
[48] J. Charnley,et al. Postoperative infection in total prosthetic replacement arthroplasty of the hip‐joint with special reference to the bacterial content of the air of the operating room , 1969, The British journal of surgery.
[49] W. W. Foster,et al. Studies of the smoking process for foods. II.—the rǒle of smoke particles† , 1961 .
[50] B Friberg,et al. Inconsistent correlation between aerobic bacterial surface and air counts in operating rooms with ultra clean laminar air flows: proposal of a new bacteriological standard for surface contamination. , 1999, The Journal of hospital infection.
[51] O. Lidwell,et al. The performance of the Biotest RCS centrifugal air sampler. , 1981, The Journal of hospital infection.
[52] P. Mayeux,et al. Massive fungal contamination in animal care facilities traced to bedding supply , 1995, Applied and environmental microbiology.
[53] W. F. Todd,et al. Evaluation of eight bioaerosol samplers challenged with aerosols of free bacteria. , 1992, American Industrial Hygiene Association journal.
[54] W. M. Heller,et al. The United States Pharmacopeial Convention, Inc , 1977 .
[55] G. Bannister,et al. Clothing in laminar-flow operating theatres. , 1996, The Journal of hospital infection.