Bioaerosols from municipal and animal wastes: background and contemporary issues.
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[1] A A ANDERSEN,et al. NEW SAMPLER FOR THE COLLECTION, SIZING, AND ENUMERATION OF VIABLE AIRBORNE PARTICLES, , 1958, Journal of bacteriology.
[2] D. J. Schliessmann,et al. Bacteriologic studies of experimental air-borne salmonellosis in chicks. , 1960, The Journal of infectious diseases.
[3] H. M. Darlow,et al. Infection of mice by the respiratory route with Salmonella typhimurium , 1961, Journal of Hygiene.
[4] J. O. Ledbetter,et al. Bacterial air pollution from activated sludge units. , 1966, American Industrial Hygiene Association journal.
[5] Nigel J. Dimmiock. Differences between the thermal inactivation of picornaviruses at “high” and “low” temperatures , 1967 .
[6] M. S. Finstein,et al. Salmonella in wastes produced at commercial poultry farms. , 1969, Applied microbiology.
[7] The Open-air Factor , 1970 .
[8] M. Fanelli,et al. Preliminary studies of persistence of salmonellae in poultry litter. , 1970, Avian diseases.
[9] J. C. Spendlove,et al. Coliform Aerosols Emitted by Sewage Treatment Plants , 1970, Science.
[10] M. Hugh-jones,et al. Studies on the 1967–8 foot-and-mouth disease epidemic: The relation of weather to the spread of disease , 1970, Journal of Hygiene.
[11] 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.
[12] Adams Ap,et al. Emission of microbial aerosols from sewage treatment plants that use trickling filters. , 1973 .
[13] P. Matthews,et al. Examination of slurry from cattle for pathogenic bacteria , 1975, Journal of Hygiene.
[14] M. Small,et al. A study of bacterial aerosols at a wastewater irrigation site. , 1976, Journal - Water Pollution Control Federation.
[15] R. Dimmick,et al. Evidence that bacteria can form new cells in airborne particles , 1979, Applied and environmental microbiology.
[16] R. Kniseley,et al. Coliforms in aerosols generated by a municipal solid waste recovery system , 1980, Applied and environmental microbiology.
[17] J. L. Woods,et al. Survival of Salmonella dublin in pig slurry during aerobic thermophilic treatment in batch, cyclic and continuous systems. , 1980, The Journal of applied bacteriology.
[18] P. W. Jones. Health hazards associated with the handling of animal wastes , 1980, Veterinary Record.
[19] P. Millner,et al. Dispersal of Aspergillus fumigatus from Sewage Sludge Compost Piles Subjected to Mechanical Agitation in Open Air , 1980, Applied and environmental microbiology.
[20] J. Tadmor,et al. Die-away kinetics of aerosolized bacteria from sprinkler application of wastewater , 1980, Applied and environmental microbiology.
[21] J. Williams. Salmonellas in Poultry Feeds—A Worldwide Review , 1981 .
[22] M. L. Laucks,et al. Aerosol Technology Properties, Behavior, and Measurement of Airborne Particles , 2000 .
[23] R Rylander,et al. Airborne bacteria, endotoxin and fungi in dust in poultry and swine confinement buildings. , 1983, American Industrial Hygiene Association journal.
[24] J. R. Miner,et al. Bacterial Pollution from Agricultural Sources: A Review , 1983 .
[25] M. Hinton,et al. The excretion of Salmonella typhimurium in the faeces of calves fed milk substitute , 1983, Journal of Hygiene.
[26] Michael R. Overcash,et al. Livestock waste management , 1983 .
[27] T. Williams,et al. Environmental study of poultry confinement buildings. , 1984, American Industrial Hygiene Association journal.
[28] Microbiological aerosols from the application of liquid sludge to land , 1984 .
[29] R Rylander,et al. Lung reactions during poultry handling related to dust and bacterial endotoxin levels. , 1984, European journal of respiratory diseases.
[30] B. Lighthart. Microbial Aerosols: Estimated Contribution of Combine Harvesting to an Airshed , 1984, Applied and environmental microbiology.
[31] L. Stallones,et al. In vitro and in vivo changes in human complement caused by silage. , 1986, Environmental health perspectives.
[32] L. Stallones,et al. Organic dust toxicity (pulmonary mycotoxicosis) associated with silo unloading. , 1986, Thorax.
[33] B. Lighthart,et al. Estimating downwind concentrations of viable airborne microorganisms in dynamic atmospheric conditions , 1987, Applied and environmental microbiology.
[34] S. S. Nicholson,et al. Copper toxicosis in cattle fed chicken litter. , 1987, Journal of the American Veterinary Medical Association.
[35] Charles P. Gerba,et al. Spread of viral infections by aerosols , 1987 .
[36] C. S. Cox. The Aerobiological Pathway of Microorganisms , 1988, 1988.
[37] D. Holness,et al. Health status of a group of sewage treatment workers in Toronto, Canada. , 1988, American Industrial Hygiene Association journal.
[38] G. Pearson,et al. Aerosol infection of calves and mice with Salmonella typhimurium , 1988, Veterinary Record.
[39] C. Clark,et al. Animal viruses, coliphages, and bacteria in aerosols and wastewater at a spray irrigation site , 1988, Applied and environmental microbiology.
[40] R Rylander,et al. Environmental and health studies of farm workers in Swedish swine confinement buildings. , 1989, British journal of industrial medicine.
[41] J J May,et al. Levels of bacteria, fungi, and endotoxin in bulk and aerosolized corn silage , 1989, Applied and environmental microbiology.
[42] L. Hagmar,et al. Health effects of exposure to endotoxins and organic dust in poultry slaughter-house workers , 1990, International archives of occupational and environmental health.
[43] R. Sergysels,et al. Domestic endotoxin exposure and clinical severity of asthma , 1991, Clinical and experimental allergy : journal of the British Society for Allergy and Clinical Immunology.
[44] R. Walker,et al. A Survey of Salmonella Contamination in Modern Broiler Production. , 1991, Journal of food protection.
[45] D. Pedgley. Aerobiology: The Atmosphere as a Source and Sink for Microbes , 1991 .
[46] B. Crook,et al. Airborne dust, ammonia, microorganisms, and antigens in pig confinement houses and the respiratory health of exposed farm workers. , 1991, American Industrial Hygiene Association journal.
[47] D. Heederik,et al. Relationship of airborne endotoxin and bacteria levels in pig farms with the lung function and respiratory symptoms of farmers , 1991, International archives of occupational and environmental health.
[48] Biological health risk associated with resource recovery, sorting of recycle waste and composting , 1991 .
[49] P. Whitten,et al. Comparison of bioaerosol sampling methods in barns housing swine , 1992, Applied and environmental microbiology.
[50] W. F. Todd,et al. Evaluation of eight bioaerosol samplers challenged with aerosols of free bacteria. , 1992, American Industrial Hygiene Association journal.
[51] Klaus Willeke,et al. Performance of bioaerosol samplers: collection characteristics and sampler design considerations , 1992 .
[52] C. Gerba,et al. Hazards from pathogenic microorganisms in land-disposed sewage sludge. , 1993, Reviews of environmental contamination and toxicology.
[53] R. Whyte. Aerial pollutants and the health of poultry farmers , 1993 .
[54] L. Stetzenbach,et al. Monitoring airborne fungal spores in an experimental indoor environment to evaluate sampling methods and the effects of human activity on air sampling , 1993, Applied and environmental microbiology.
[55] W Sorenson,et al. Organic dust exposures from compost handling: case presentation and respiratory exposure assessment. , 1993, American journal of industrial medicine.
[56] Reducing Mixing Fan Thermostat Setpoints in Naturally Ventilated Broiler Housing During Hot Weather , 1994 .
[57] B. Marthi. Resuscitation of Microbial Bioaerosols , 1994 .
[58] John G. Anderson,et al. The Presence of Mycotoxin-Associated Fungal Spores Isolated from the Indoor Air of the Damp Domestic Environment and Cytotoxic to Human Cell Lines , 1994 .
[59] G. Toranzos,et al. Use of solid-phase PCR for enhanced detection of airborne microorganisms , 1994, Applied and environmental microbiology.
[60] W. Eduard,et al. Exposure to bacterial aerosols and work-related symptoms in sewage workers. , 1994, American journal of industrial medicine.
[61] M. Cabrera,et al. Fate of Selected Bacterial Pathogens and Indicators in Fractionated Poultry Litter During Storage , 1994, Journal of Applied Poultry Research.
[62] B. Lighthart,et al. Bacterial flux from chaparral into the atmosphere in mid-summer at a high desert location , 1994 .
[63] J. M. Vandepopuliere,et al. Composting Cage Layer Manure with Poultry Litter , 1994 .
[64] K. Willeke,et al. Impaction onto a Glass Slide or Agar versus Impingement into a Liquid for the Collection and Recovery of Airborne Microorganisms , 1994, Applied and environmental microbiology.
[65] D. Gardner,et al. Health Aspects of Bioaerosols , 1994 .
[66] A. Nevalainen,et al. Inlet characteristics of bioaerosol samplers , 1994 .
[67] R. Davies,et al. An approach to reduction of Salmonella infection in broiler chicken flocks through intensive sampling and identification of cross-contamination hazards in commercial hatcheries. , 1994, International journal of food microbiology.
[68] L. Stetzenbach,et al. Distribution of Microbial Bioaerosol , 1994 .
[69] E. Henningson,et al. Evaluation of microbiological aerosol samplers: a review , 1994 .
[70] H. Wickman. Deposition, Adhesion, and Release of Bioaerosols , 1994 .
[71] G. Diggle,et al. Science and Judgement in Risk Assessment , 1995 .
[72] B. Jarvis,et al. Stachybotrys toxins. 1. , 1995, Natural toxins.
[73] K Willeke,et al. Effect of impact stress on microbial recovery on an agar surface , 1995, Applied and environmental microbiology.
[74] B. Lighthart,et al. Airborne Bacteria in the Atmospheric Surface Layer: Temporal Distribution above a Grass Seed Field , 1995, Applied and environmental microbiology.
[75] L. Stetzenbach,et al. PCR for bioaerosol monitoring: sensitivity and environmental interference , 1995, Applied and environmental microbiology.
[76] S. F. Strausberg. From hills and hollers: rise of the poultry industry in Arkansas. , 1995 .
[77] N O Breum,et al. Sorting and recycling of domestic waste. Review of occupational health problems and their possible causes. , 1995, The Science of the total environment.
[78] S. Pillai,et al. Occurrence of airborne bacteria and pathogen indicators during land application of sewage sludge , 1996, Applied and environmental microbiology.
[79] G. Stelma,et al. Comparison of methods for detection and enumeration of airborne microorganisms collected by liquid impingement , 1996, Applied and environmental microbiology.
[80] V. R. Phillips,et al. Concentrations and emission rates of aerial ammonia, nitrous oxide, methane, carbon dioxide, dust and endotoxin in UK broiler and layer houses. , 1997, British poultry science.
[81] P. Thorne,et al. Application of flow cytometry and fluorescent in situ hybridization for assessment of exposures to airborne bacteria , 1997, Applied and environmental microbiology.
[82] Thermotolerant Clostridia as an Airborne Pathogen Indicator during Land Application of Biosolids , 1997 .
[83] R. Rylander,et al. Inhalation toxicity of (1→3)-β-D glucan: recent advances , 1997, Mediators of inflammation.
[84] Otto Melchior Poulsen,et al. Bioaerosol exposure in waste collection: A comparative study on the significance of collection equipment, type of waste and seasonal variation , 1997 .
[85] B. Crook,et al. Sampling and assay of bioaerosols in the work environment , 1997 .
[86] A. Pell. Manure and Microbes: Public and Animal Health Problem? , 1997, Journal of Dairy Science.
[87] Exposure assessment of airborne microorganisms by fluorescence microscopy and image processing , 1997 .
[88] W Eduard,et al. Methods for quantitative assessment of airborne levels of noninfectious microorganisms in highly contaminated work environments. , 1998, American Industrial Hygiene Association journal.
[89] J. Hartung,et al. Concentrations and Emissions of Airborne Endotoxins and Microorganisms in Livestock Buildings in Northern Europe , 1998 .
[90] Kunte,et al. Inactivation of Salmonella typhi by high levels of volatile fatty acids during anaerobic digestion , 1998, Journal of applied microbiology.
[91] S. Ricke,et al. APPLICABILITY OF RAPID METHODS FOR DETECTION OF SALMONELLA SPP. IN POULTRY FEEDS: A REVIEW , 1998 .
[92] I. Kudva,et al. Analysis of Escherichia coli O157:H7 Survival in Ovine or Bovine Manure and Manure Slurry , 1998, Applied and Environmental Microbiology.
[93] Salmela,et al. Salmonella in animal slurry can be destroyed by aeration at low temperatures , 1998, Journal of applied microbiology.
[94] Chihshan Li. Evaluation of Microbial Samplers for Bacterial Microorganisms , 1999 .
[95] [Measuring the spread of airborne microorganisms in the area of composting sites]. , 1999, Schriftenreihe des Vereins fur Wasser-, Boden- und Lufthygiene.
[96] Respiratory, gastrointestinal, and other health effects among workers in two refuse-derived fuel plants. , 1999, Arhiv za higijenu rada i toksikologiju.
[97] Y. Cormier,et al. Airborne microflora in Quebec dairy farms: lack of effect of bacterial hay preservatives. , 1999, American Industrial Hygiene Association journal.
[98] Gediminas Mainelis,et al. Collection of Airborne Microorganisms by Electrostatic Precipitation , 1999 .
[99] K. Strevett,et al. Bioaerosol Concentration at an Outdoor Composting Center. , 1999, Journal of the Air & Waste Management Association.
[100] N. R. Newbury,et al. Bio-aerosol fluorescence sensor , 1999 .
[101] B. Nielsen,et al. Exposure-response relationship between gastrointestinal problems among waste collectors and bioaerosol exposure. , 1999, Scandinavian journal of work, environment & health.
[102] P. McCray,et al. Early-onset inflammatory responses in vivo to adenoviral vectors in the presence or absence of lipopolysaccharide-induced inflammation. , 1999, American journal of respiratory cell and molecular biology.
[103] R. Rylander. Health effects among workers in sewage treatment plants. , 1999, Occupational and environmental medicine.
[104] C. L. Shermer,et al. A gene amplification‐hybridization sensor based methodology to rapidly screen aerosol samples for specific bacterial gene sequences , 1999 .
[105] Miquel D. Antoine,et al. THE DEVELOPMENT OF MATRIX-ASSISTED LASER DESORPTION/IONIZATION TIME-OF-FLIGHT MASS SPECTROMETRY FOR THE DETECTION OF BIOLOGICAL WARFARE AGENT AEROSOLS , 1999 .
[106] Eric P. Parker,et al. Detection and classification of individual airborne microparticles using laser ablation mass spectroscopy and multivariate analysis , 1999 .
[107] [Relationships between air conditioning, airborne microorganisms and health]. , 1999, Bulletin de l'Academie nationale de medecine.
[108] C. Gerba,et al. Bioaerosol Transport Modeling and Risk Assessment in Relation to Biosolid Placement , 2000, Journal of Environmental Quality.
[109] J. Bünger,et al. Health complaints and immunological markers of exposure to bioaerosols among biowaste collectors and compost workers , 2000, Occupational and environmental medicine.
[110] B. Nielsen,et al. Seasonal variation in bioaerosol exposure during biowaste collection and measurements of leaked percolate , 2000 .
[111] T. Reponen,et al. Performance of Air-O-Cell, Burkard, and Button Samplers for total enumeration of airborne spores. , 2000, AIHAJ : a journal for the science of occupational and environmental health and safety.
[112] Pharmacokinetics of miocamycin following intravenous administration to cattle. , 2000, Journal of veterinary medicine. A, Physiology, pathology, clinical medicine.
[113] S. Reynolds,et al. Dose-response relationships between occupational aerosol exposures and cross-shift declines of lung function in poultry workers: recommendations for exposure limits. , 2000, Journal of occupational and environmental medicine.
[114] H. Melosh,et al. Resistance of Bacillus Endospores to Extreme Terrestrial and Extraterrestrial Environments , 2000, Microbiology and Molecular Biology Reviews.
[115] J. Douwes,et al. Upper airway inflammation assessed by nasal lavage in compost workers: A relation with bio-aerosol exposure. , 2000, American journal of industrial medicine.
[116] D L Pierson,et al. Evaluation of portable air samplers for monitoring airborne culturable bacteria. , 2000, AIHAJ : a journal for the science of occupational and environmental health and safety.
[117] Rapid identification of biological warfare agents using an instrument employing a light addressable potentiometric sensor and a flow-through immunofiltration-enzyme assay system. , 2000, Biosensors & bioelectronics.
[118] P. Thorne,et al. Inhalation toxicology models of endotoxin- and bioaerosol-induced inflammation. , 2000, Toxicology.
[119] S. Ricke,et al. Litter and aerosol sampling of chicken houses for rapid detection of Salmonella typhimurium contamination using gene amplification , 2000, Journal of Industrial Microbiology and Biotechnology.
[120] C. Moreno,et al. Detection of Legionella pneumophila in bioaerosols by polymerase chain reaction. , 2001, Canadian journal of microbiology.
[121] Eliot Epstein,et al. Dust and Bioaerosols At a Biosolids Composting Facility , 2001 .
[122] Anthony J. Campillo,et al. Continuous Bioaerosol Monitoring Using UV Excitation Fluorescence: Outdoor Test Results , 2001 .
[123] D. Hryhorczuk,et al. Bioaerosol emissions from a suburban yard waste composting facility. , 2001, Annals of agricultural and environmental medicine : AAEM.
[124] M. Menetrez,et al. An Analytical Method for the Measurement of Nonviable Bioaerosols , 2001, Journal of the Air & Waste Management Association.
[125] D. Schwartz,et al. Endotoxin responsiveness and subchronic grain dust-induced airway disease. , 2001, American journal of physiology. Lung cellular and molecular physiology.
[126] J. Douwes,et al. Short term exposure to airborne microbial agents during farm work: exposure-response relations with eye and respiratory symptoms , 2001, Occupational and environmental medicine.
[127] Mark Hernandez,et al. Effects of Relative Humidity on the Ultraviolet Induced Inactivation of Airborne Bacteria , 2001 .
[128] S. Pillai,et al. The applicability of hns and fimA primers for detecting Salmonella in bioaerosols associated with animal and municipal wastes , 2001 .
[129] F. Sung,et al. Adverse health effects among household waste collectors in Taiwan. , 2001, Environmental research.
[130] T. Reponen,et al. Effect of sampling time and air humidity on the bioefficiency of filter samplers for bioaerosol collection , 2001 .
[131] Y. Cormier,et al. Comparison of Endotoxin Exposure Assessment by Bioaerosol Impinger and Filter-Sampling Methods , 2001, Applied and Environmental Microbiology.
[132] Mark Hernandez,et al. Photoreactivation in AirborneMycobacterium parafortuitum , 2001, Applied and Environmental Microbiology.
[133] A. Hameed,et al. Suspended particulates and bioaerosols emitted from an agricultural non-point source. , 2001, Journal of environmental monitoring : JEM.
[134] B. Szponar,et al. Use of mass spectrometry for characterising microbial communities in bioaerosols. , 2001, Annals of agricultural and environmental medicine : AAEM.
[135] Seasonal variations in exposure to microbial cell wall components among household waste collectors. , 2001 .
[136] Y. C. Lin,et al. Storage effects on bacterial concentration: determination of impinger and filter samples. , 2001, The Science of the total environment.
[137] Elaine Ward,et al. Methods for Integrated Air Sampling and DNA Analysis for Detection of Airborne Fungal Spores , 2001, Applied and Environmental Microbiology.
[138] Suresh D. Pillai,et al. Identification of Cryptosporidium parvum Oocysts by an Artificial Neural Network Approach , 2002, Applied and Environmental Microbiology.
[139] Bioaerosols and Public Health , 2002 .
[140] Assessment of Bioaerosols in Swine Barns by Filtration and Impaction , 2002, Current Microbiology.
[141] A. Nevalainen,et al. Personal exposures and microenvironmental concentrations of particles and bioaerosols. , 2002, Journal of environmental monitoring : JEM.
[142] Evaluation of bioaerosol exposures during conditioning of biofilter organic media beds. , 2002, Applied occupational and environmental hygiene.