Understanding building-occupant-microbiome interactions toward healthy built environments: A review
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Zhiyao Yang | Qiang He | Da Hu | Shuai Li | L. Cao
[1] L. Marr,et al. Recognizing and controlling airborne transmission of SARS‐CoV‐2 in indoor environments , 2020, Indoor air.
[2] R. Schooley,et al. Reducing transmission of SARS-CoV-2 , 2020, Science.
[3] S. Michie,et al. Applying principles of behaviour change to reduce SARS-CoV-2 transmission , 2020, Nature Human Behaviour.
[4] Jeffrey P. Townsend,et al. Modelling microbial infection to address global health challenges , 2019, Nature Microbiology.
[5] A. B. Masuero,et al. Biodeterioration of mortar coating in historical buildings: Microclimatic characterization, material, and fungal community , 2019, Building and Environment.
[6] Karen C. Dannemiller,et al. Moving towards a Robust Definition for a “Healthy” Indoor Microbiome , 2019, mSystems.
[7] J. Gilbert,et al. Impacts of indoor surface finishes on bacterial viability , 2019, Indoor air.
[8] R. Knight,et al. Farm-like indoor microbiota in non-farm homes protects children from asthma development , 2019, Nature Medicine.
[9] A. Bertron,et al. Susceptibility of earth-based construction materials to fungal proliferation: laboratory and in situ assessment , 2019, RILEM Technical Letters.
[10] O. Baffa,et al. Silver nanoparticles in building materials for environment protection against microorganisms , 2019, International Journal of Environmental Science and Technology.
[11] Shelly L. Miller,et al. Relationships between home ventilation rates and respiratory health in the Colorado Home Energy Efficiency and Respiratory Health (CHEER) study , 2019, Environmental research.
[12] C. Huttenhower,et al. Daylight exposure modulates bacterial communities associated with household dust , 2018, Microbiome.
[13] J. Gilbert,et al. Microbial and metabolic succession on common building materials under high humidity conditions , 2018, Nature Communications.
[14] R. Adams,et al. Lessons learned when looking for non-neutral ecological processes in the built environment: the bacterial and fungal microbiota of shower tiles , 2018, bioRxiv.
[15] A. Bertron,et al. Laboratory test to assess sensitivity of bio-based earth materials to fungal growth , 2018, Building and Environment.
[16] J. Gilbert,et al. Microbiology of the built environment , 2018, Nature Reviews Microbiology.
[17] Karen C. Dannemiller,et al. Gene expression of indoor fungal communities under damp building conditions: Implications for human health , 2018, Indoor air.
[18] M. Sommer,et al. The Environmental Exposures and Inner- and Intercity Traffic Flows of the Metro System May Contribute to the Skin Microbiome and Resistome. , 2018, Cell reports.
[19] M. Stockwell,et al. Economic burden of seasonal influenza in the United States. , 2018, Vaccine.
[20] R. Halwatura,et al. Mold growth and moss growth on tropical walls , 2018, Building and Environment.
[21] J. Pastuszka,et al. Microbiological indoor air quality in an office building in Gliwice, Poland: analysis of the case study , 2018, Air Quality, Atmosphere & Health.
[22] Peder Wolkoff. Indoor air humidity, air quality, and health - An overview. , 2018, International journal of hygiene and environmental health.
[23] C. Tseng,et al. Novel mold‐resistant building materials impregnated with thermally reduced nano‐silver , 2018, Indoor air.
[24] Brandon E. Boor,et al. Crawling-induced floor dust resuspension affects the microbiota of the infant breathing zone , 2018, Microbiome.
[25] Rauno Holopainen,et al. Infant and Adult Inhalation Exposure to Resuspended Biological Particulate Matter. , 2018, Environmental science & technology.
[26] J. Banfield,et al. Strain-resolved analysis of hospital rooms and infants reveals overlap between the human and room microbiome , 2017, Nature Communications.
[27] A. Pruden,et al. Interactive effects of temperature, organic carbon, and pipe material on microbiota composition and Legionella pneumophila in hot water plumbing systems , 2017, Microbiome.
[28] A. Gomes,et al. Exposure to Microbiological Agents in Indoor and Occupational Environments , 2017, Springer International Publishing.
[29] L. Marr,et al. Ten Questions Concerning the Aerosolization and Transmission of Legionella in the Built Environment. , 2017, Building and environment.
[30] P. Horwitz,et al. The skin microbiome: impact of modern environments on skin ecology, barrier integrity, and systemic immune programming , 2017, The World Allergy Organization journal.
[31] A. Keren-Paz,et al. Architects of nature: growing buildings with bacterial biofilms , 2017, Microbial biotechnology.
[32] A. Doxey,et al. The Skin Microbiome of Cohabiting Couples , 2017, mSystems.
[33] Amy Pruden,et al. Factors Shaping the Human Exposome in the Built Environment: Opportunities for Engineering Control. , 2017, Environmental science & technology.
[34] J. Lehtimäki,et al. The ecology of human microbiota: dynamics and diversity in health and disease , 2017, Annals of the New York Academy of Sciences.
[35] K. Matsushita,et al. Bactericidal effects of 310 nm ultraviolet light-emitting diode irradiation on oral bacteria , 2017, BMC oral health.
[36] Karen C. Dannemiller,et al. Fungal and bacterial growth in floor dust at elevated relative humidity levels , 2017, Indoor air.
[37] N. Fierer,et al. Microbial analyses of airborne dust collected from dormitory rooms predict the sex of occupants , 2017, Indoor air.
[38] D. Anderson,et al. Enhanced terminal room disinfection and acquisition and infection caused by multidrug-resistant organisms and Clostridium difficile (the Benefits of Enhanced Terminal Room Disinfection study): a cluster-randomised, multicentre, crossover study , 2017, The Lancet.
[39] Weidong Chai,et al. Spread from the Sink to the Patient: In Situ Study Using Green Fluorescent Protein (GFP)-Expressing Escherichia coli To Model Bacterial Dispersion from Hand-Washing Sink-Trap Reservoirs , 2017, Applied and Environmental Microbiology.
[40] Jonathan A. Eisen,et al. Ten questions concerning the microbiomes of buildings , 2016 .
[41] Carolyn M. Beans. The Microbiome of Green Design Sustainable building practices may have unforeseen consequences for microbial communities and human health. , 2016 .
[42] S. Macgregor,et al. A New Proof of Concept in Bacterial Reduction: Antimicrobial Action of Violet-Blue Light (405 nm) in Ex Vivo Stored Plasma , 2016, Journal of blood transfusion.
[43] P. Wolf,et al. The Skin Microbiome: Is It Affected by UV-induced Immune Suppression? , 2016, Front. Microbiol..
[44] W. Rutala,et al. ‘No touch’ technologies for environmental decontamination: focus on ultraviolet devices and hydrogen peroxide systems , 2016, Current opinion in infectious diseases.
[45] R. Knight,et al. The Microbiota, Immunoregulation, and Mental Health: Implications for Public Health , 2016, Current Environmental Health Reports.
[46] Jako A Nice,et al. Investigating the impact of architectural planning and functional program on the indoor microbiome. A health concern , 2016 .
[47] Patrick K. H. Lee,et al. Indoor air bacterial communities in Hong Kong households assemble independently of occupant skin microbiomes. , 2016, Environmental microbiology.
[48] Patrick K. H. Lee,et al. The roles of the outdoors and occupants in contributing to a potential pan-microbiome of the built environment: a review , 2016, Microbiome.
[49] C. Huttenhower,et al. The healthy human microbiome , 2016, Genome Medicine.
[50] J. Gent,et al. Influence of housing characteristics on bacterial and fungal communities in homes of asthmatic children. , 2016, Indoor air.
[51] Christine S. M. Lau,et al. Probiotics are effective at preventing Clostridium difficile-associated diarrhea: a systematic review and meta-analysis , 2016, International journal of general medicine.
[52] J. Kline,et al. Making microbiology of the built environment relevant to design , 2016, Microbiome.
[53] Nicholas A. Bokulich,et al. A new perspective on microbial landscapes within food production. , 2016, Current opinion in biotechnology.
[54] Andrew J. Hoisington,et al. The microbiome of the built environment and mental health , 2015, Microbiome.
[55] S. Lindow,et al. Relative and contextual contribution of different sources to the composition and abundance of indoor air bacteria in residences , 2015, Microbiome.
[56] J. Siegel,et al. Moisture parameters and fungal communities associated with gypsum drywall in buildings , 2015, Microbiome.
[57] W W Nazaroff,et al. Characterizing airborne fungal and bacterial concentrations and emission rates in six occupied children's classrooms. , 2015, Indoor air.
[58] J. Neufeld,et al. Microbial biogeography of a university campus , 2015, Microbiome.
[59] M. Stibich,et al. Utilization and impact of a pulsed-xenon ultraviolet room disinfection system and multidisciplinary care team on Clostridium difficile in a long-term acute care facility. , 2015, American journal of infection control.
[60] Alexander J. Probst,et al. Microbiomes of the dust particles collected from the International Space Station and Spacecraft Assembly Facilities , 2015, Microbiome.
[61] H. Bik,et al. Microbiota of the indoor environment: a meta-analysis , 2015, Microbiome.
[62] Jason Stenson,et al. Humans differ in their personal microbial cloud , 2015, PeerJ.
[63] Krishna Pacifici,et al. The ecology of microscopic life in household dust , 2015, Proceedings of the Royal Society B: Biological Sciences.
[64] Maria Filomena Macedo,et al. Biological colonization and biodeterioration of architectural ceramic materials: An overview , 2015 .
[65] G. Wormser,et al. Clostridium difficile infections before and during use of ultraviolet disinfection. , 2015, American journal of infection control.
[66] Ana Luísa Brandão de Carvalho Lira,et al. Teoria Ambientalista de Florence Nightingale: Uma Análise Crítica , 2015 .
[67] G. Berg,et al. Microbiome interplay: plants alter microbial abundance and diversity within the built environment , 2015, Front. Microbiol..
[68] M. Janal,et al. Effect of Twice-Daily Blue Light Treatment on Matrix-Rich Biofilm Development , 2015, PloS one.
[69] S. Rasmussen,et al. Meta-genomic analysis of toilet waste from long distance flights; a step towards global surveillance of infectious diseases and antimicrobial resistance , 2015, Scientific Reports.
[70] Christoph M Tang,et al. Non-pathogenic Neisseria: members of an abundant, multi-habitat, diverse genus. , 2015, Microbiology.
[71] J. Gilbert,et al. Athletic equipment microbiota are shaped by interactions with human skin , 2015, Microbiome.
[72] William W. Nazaroff,et al. Chamber Bioaerosol Study: Outdoor Air and Human Occupants as Sources of Indoor Airborne Microbes , 2015, PloS one.
[73] J. Peccia,et al. Indoor emissions as a primary source of airborne allergenic fungal particles in classrooms. , 2015, Environmental science & technology.
[74] Tiina Reponen,et al. Key determinants of the fungal and bacterial microbiomes in homes. , 2015, Environmental research.
[75] Noah Alexander,et al. Geospatial Resolution of Human and Bacterial Diversity with City-Scale Metagenomics , 2015, Cell systems.
[76] P. Banerjee,et al. Diversity of Bacterial Communities of Fitness Center Surfaces in a U.S. Metropolitan Area , 2014, International journal of environmental research and public health.
[77] Jack A. Gilbert,et al. Ecological Succession and Viability of Human-Associated Microbiota on Restroom Surfaces , 2014, Applied and Environmental Microbiology.
[78] A. Bertron,et al. A review of indoor microbial growth across building materials and sampling and analysis methods , 2014 .
[79] G. Cesana,et al. Pandemic Fear and Literature: Observations from Jack London’s The Scarlet Plague , 2014, Emerging infectious diseases.
[80] R. Walensky,et al. Quantification of Shared Air: A Social and Environmental Determinant of Airborne Disease Transmission , 2014, PloS one.
[81] Patrick K. H. Lee,et al. Indoor-Air Microbiome in an Urban Subway Network: Diversity and Dynamics , 2014, Applied and Environmental Microbiology.
[82] Rob Knight,et al. Longitudinal analysis of microbial interaction between humans and the indoor environment , 2014, Science.
[83] R. Walensky,et al. Integrating social contact and environmental data in evaluating tuberculosis transmission in a South African township. , 2014, The Journal of infectious diseases.
[84] Jessica L. Green. Can bioinformed design promote healthy indoor ecosystems? , 2014, Indoor air.
[85] Steven W Kembel,et al. Bacterial communities on classroom surfaces vary with human contact , 2014, Microbiome.
[86] Steven E. Lindow,et al. Airborne Bacterial Communities in Residences: Similarities and Differences with Fungi , 2014, PloS one.
[87] Nicholas J Ashbolt,et al. Preferential colonization and release of Legionella pneumophila from mature drinking water biofilms grown on copper versus unplasticized polyvinylchloride coupons. , 2014, International journal of hygiene and environmental health.
[88] J. Reyes,et al. Recolonization of mortars by endolithic organisms on the walls of San Roque church in Campeche (Mexico): A case of tertiary bioreceptivity , 2014 .
[89] S. Bultman,et al. Emerging roles of the microbiome in cancer. , 2014, Carcinogenesis.
[90] A. Madsen,et al. Effect of relative humidity on the aerosolization and total inflammatory potential of fungal particles from dust-inoculated gypsum boards. , 2014, Indoor air.
[91] Jeff Kline,et al. Architectural Design Drives the Biogeography of Indoor Bacterial Communities , 2014, PloS one.
[92] J. Petrosino,et al. Microbiota Modulate Behavioral and Physiological Abnormalities Associated with Neurodevelopmental Disorders , 2013, Cell.
[93] J. Clemente,et al. Gut Microbiota from Twins Discordant for Obesity Modulate Metabolism in Mice , 2013, Science.
[94] Joanne Levin,et al. The effect of portable pulsed xenon ultraviolet light after terminal cleaning on hospital-associated Clostridium difficile infection in a community hospital. , 2013, American journal of infection control.
[95] Charles P. Gerba,et al. Transfer Efficiency of Bacteria and Viruses from Porous and Nonporous Fomites to Fingers under Different Relative Humidity Conditions , 2013, Applied and Environmental Microbiology.
[96] M. Hargreaves,et al. Isolation of Nontuberculous Mycobacteria (NTM) from Household Water and Shower Aerosols in Patients with Pulmonary Disease Caused by NTM , 2013, Journal of Clinical Microbiology.
[97] D. Sliney. Balancing the Risk of Eye Irritation from UV‐C with Infection from Bioaerosols , 2013, Photochemistry and photobiology.
[98] R. Hobday,et al. Roles of sunlight and natural ventilation for controlling infection: historical and current perspectives , 2013, Journal of Hospital Infection.
[99] Bong-Soo Kim,et al. Identification of Household Bacterial Community and Analysis of Species Shared with Human Microbiome , 2013, Current Microbiology.
[100] James F. Meadow,et al. Indoor airborne bacterial communities are influenced by ventilation, occupancy, and outdoor air source , 2013, Indoor air.
[101] Noah Fierer,et al. Home Life: Factors Structuring the Bacterial Diversity Found within and between Homes , 2013, PloS one.
[102] Daniel N. Frank,et al. Culture-Independent Analysis of Aerosol Microbiology in a Metropolitan Subway System , 2013, Applied and Environmental Microbiology.
[103] T. Bruns,et al. Dispersal in microbes: fungi in indoor air are dominated by outdoor air and show dispersal limitation at short distances , 2013, The ISME Journal.
[104] Dania González Couret,et al. Influence of architectural design on indoor environment in apartment buildings in Havana , 2013 .
[105] Rob Knight,et al. Diversity, distribution and sources of bacteria in residential kitchens. , 2013, Environmental microbiology.
[106] J. Skarbinski,et al. Intensive care unit patients with 2009 pandemic influenza A (H1N1pdm09) virus infection – United States, 2009 , 2012, Influenza and other respiratory viruses.
[107] O. Oppezzo. Contribution of UVB radiation to bacterial inactivation by natural sunlight. , 2012, Journal of photochemistry and photobiology. B, Biology.
[108] Gabriel Bekö,et al. Seasonal Variations of Indoor Microbial Exposures and Their Relation to Temperature, Relative Humidity, and Air Exchange Rate , 2012, Applied and Environmental Microbiology.
[109] W W Nazaroff,et al. Size-resolved emission rates of airborne bacteria and fungi in an occupied classroom , 2012, Indoor air.
[110] A. Pruden,et al. Molecular Survey of the Occurrence of Legionella spp., Mycobacterium spp., Pseudomonas aeruginosa, and Amoeba Hosts in Two Chloraminated Drinking Water Distribution Systems , 2012, Applied and Environmental Microbiology.
[111] Hui Guo,et al. Transcriptome Sequencing and Comparative Analysis of Saccharina japonica (Laminariales, Phaeophyceae) under Blue Light Induction , 2012, PloS one.
[112] Kristen L. Mueller,et al. Is It Time for a Metagenomic Basis of Therapeutics? , 2012, Science.
[113] A. Candevir,et al. Pseudomonas aeruginosa infections due to electronic faucets in a neonatal intensive care unit , 2012, Journal of paediatrics and child health.
[114] William W. Nazaroff,et al. Human Occupancy as a Source of Indoor Airborne Bacteria , 2012, PloS one.
[115] S. Cosgrove,et al. Electronic-Eye Faucets: Legionella Species Contamination in Healthcare Settings , 2012, Infection Control & Hospital Epidemiology.
[116] Tianhong Dai,et al. Ultraviolet C irradiation: an alternative antimicrobial approach to localized infections? , 2012, Expert review of anti-infective therapy.
[117] Jeff Kline,et al. Architectural design influences the diversity and structure of the built environment microbiome , 2012, The ISME Journal.
[118] A. Petersen,et al. Gram‐positive bacteria on grass pollen exhibit adjuvant activity inducing inflammatory T cell responses , 2012, Clinical and experimental allergy : journal of the British Society for Allergy and Clinical Immunology.
[119] Yang Zhao,et al. Effects of Temperature, Relative Humidity, Absolute Humidity, and Evaporation Potential on Survival of Airborne Gumboro Vaccine Virus , 2011, Applied and Environmental Microbiology.
[120] R. Goldman,et al. EXPERIMENTAL EVOLUTION OF ULTRAVIOLET RADIATION RESISTANCE IN ESCHERICHIA COLI , 2011, Evolution; international journal of organic evolution.
[121] Rob Knight,et al. Microbial Biogeography of Public Restroom Surfaces , 2011, PloS one.
[122] M. J. Fonseca,et al. The Bactericidal Effect of Sunlight , 2011 .
[123] R. Wallace,,et al. Five-Year Outbreak of Community- and Hospital-Acquired Mycobacterium porcinum Infections Related to Public Water Supplies , 2011, Journal of Clinical Microbiology.
[124] M. Arduino,et al. Point-of-Use Membrane Filtration and Hyperchlorination to Prevent Patient Exposure to Rapidly Growing Mycobacteria in the Potable Water Supply of a Skilled Nursing Facility , 2011, Infection Control & Hospital Epidemiology.
[125] E. A. Hathway,et al. CFD simulation of airborne pathogen transport due to human activities , 2011, Building and Environment.
[126] G. Pfeifer,et al. Wavelength dependence of ultraviolet radiation‐induced DNA damage as determined by laser irradiation suggests that cyclobutane pyrimidine dimers are the principal DNA lesions produced by terrestrial sunlight , 2011, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[127] O. C. G. Adan,et al. Fundamentals of mold growth in indoor environments and strategies for healthy living , 2011 .
[128] J. Frisvad,et al. Associations between Fungal Species and Water-Damaged Building Materials , 2011, Applied and Environmental Microbiology.
[129] A. Hack,et al. Contamination of the cold water distribution system of health care facilities by Legionella pneumophila: do we know the true dimension? , 2011, Euro surveillance : bulletin Europeen sur les maladies transmissibles = European communicable disease bulletin.
[130] Jon Genuneit,et al. Exposure to environmental microorganisms and childhood asthma. , 2011, The New England journal of medicine.
[131] J. Kreft,et al. Blue and Red Light Modulates SigB-Dependent Gene Transcription, Swimming Motility and Invasiveness in Listeria monocytogenes , 2011, PloS one.
[132] William G. Lindsley,et al. Measurements of Airborne Influenza Virus in Aerosol Particles from Human Coughs , 2010, PloS one.
[133] J. Falkinham. Hospital water filters as a source of Mycobacterium avium complex. , 2010, Journal of medical microbiology.
[134] Heather Viles,et al. Eukaryotic Microorganisms and Stone Biodeterioration , 2010 .
[135] Eoin L Brodie,et al. Man's best friend? The effect of pet ownership on house dust microbial communities. , 2010, The Journal of allergy and clinical immunology.
[136] Maria A. Kazandjieva,et al. A high-resolution human contact network for infectious disease transmission , 2010, Proceedings of the National Academy of Sciences.
[137] E. Carraro,et al. Evaluation of Legionella pneumophila contamination in Italian hotel water systems by quantitative real‐time PCR and culture methods , 2010, Journal of applied microbiology.
[138] Pei-Chun Lee,et al. Investigating the structure of regional innovation system research through keyword co-occurrence and social network analysis , 2010 .
[139] N. Poussereau,et al. Impact of paint and wall-paper on mould growth on plasterboards and aluminum , 2010 .
[140] Paul Jensen,et al. Natural Ventilation for Infection Control in Health-care Settings , 2010 .
[141] Kerry A. Kinney,et al. Resistance of green building materials to fungal growth , 2010 .
[142] M. S. Raddi,et al. Indoor Air quality related to occupancy at an air-conditioned public building , 2010 .
[143] Ludo Waltman,et al. Software survey: VOSviewer, a computer program for bibliometric mapping , 2009, Scientometrics.
[144] Julian W. Tang,et al. The effect of environmental parameters on the survival of airborne infectious agents , 2009, Journal of The Royal Society Interface.
[145] D Fugler,et al. Heat recovery ventilators prevent respiratory disorders in Inuit children. , 2009, Indoor air.
[146] Leah M. Feazel,et al. Opportunistic pathogens enriched in showerhead biofilms , 2009, Proceedings of the National Academy of Sciences.
[147] L. T. Angenent,et al. Potentially Pathogenic Bacteria in Shower Water and Air of a Stem Cell Transplant Unit , 2009, Applied and Environmental Microbiology.
[148] S. Mazmanian,et al. The gut microbiota shapes intestinal immune responses during health and disease , 2009, Nature Reviews Immunology.
[149] L. Curtis,et al. Prevention of hospital-acquired infections: review of non-pharmacological interventions , 2008, Journal of Hospital Infection.
[150] M. Iseman,et al. Mycobacterium avium in a shower linked to pulmonary disease , 2008 .
[151] Tao Zhang,et al. The Airborne Metagenome in an Indoor Urban Environment , 2008, PloS one.
[152] Werner Mathys,et al. Occurrence of Legionella in hot water systems of single-family residences in suburbs of two German cities with special reference to solar and district heating. , 2008, International journal of hygiene and environmental health.
[153] J. Granizo,et al. Isolation of Legionella species/serogroups from water cooling systems compared with potable water systems in Spanish healthcare facilities. , 2007, The Journal of hospital infection.
[154] C. Donskey,et al. Vegetative Clostridium difficile Survives in Room Air on Moist Surfaces and in Gastric Contents with Reduced Acidity: a Potential Mechanism To Explain the Association between Proton Pump Inhibitors and C. difficile-Associated Diarrhea? , 2007, Antimicrobial Agents and Chemotherapy.
[155] W J Fisk,et al. Public health and economic impact of dampness and mold. , 2007, Indoor air.
[156] C. Hadjichristodoulou,et al. Risk Factors for Contamination of Hotel Water Distribution Systems by Legionella Species , 2007, Applied and Environmental Microbiology.
[157] E. Mardis,et al. An obesity-associated gut microbiome with increased capacity for energy harvest , 2006, Nature.
[158] Gilbert Greub,et al. Biodiversity of Amoebae and Amoeba-Resisting Bacteria in a Hospital Water Network , 2006, Applied and Environmental Microbiology.
[159] S. Stampi,et al. Legionella Contamination in Hot Water of Italian Hotels , 2005, Applied and Environmental Microbiology.
[160] D. van der Kooij,et al. Biofilm formation and multiplication of Legionella in a model warm water system with pipes of copper, stainless steel and cross-linked polyethylene. , 2005, Water Research.
[161] A. Streifel,et al. An Outbreak of Bacteremias Associated With Mycobacterium mucogenicum in a Hospital Water Supply , 2004, Infection Control & Hospital Epidemiology.
[162] William W. Nazaroff,et al. Cleaning products and air fresheners: exposure to primary and secondary air pollutants , 2004 .
[163] M. Wagener,et al. Efficacy of new point-of-use water filter for preventing exposure to Legionella and waterborne bacteria. , 2004, American journal of infection control.
[164] M. Wagener,et al. Efficacy of new point-of-use water filter for preventing exposure to Legionella and waterborne bacteria , 2004 .
[165] Patrizia Laurenti,et al. Legionella Infection Risk from Domestic Hot Water , 2004, Emerging infectious diseases.
[166] A. Lugauskas,et al. Micromycetes as deterioration agents of polymeric materials , 2003 .
[167] James A Hanley,et al. Effect of ultraviolet germicidal lights installed in office ventilation systems on workers' health and wellbeing: double-blind multiple crossover trial , 2003, The Lancet.
[168] Elaine Larson,et al. Antibacterial cleaning and hygiene products as an emerging risk factor for antibiotic resistance in the community. , 2003, The Lancet. Infectious diseases.
[169] M. First,et al. The Application of Ultraviolet Germicidal Irradiation to Control Transmission of Airborne Disease: Bioterrorism Countermeasure , 2003 .
[170] R. Röhrig,et al. Computer Keyboard and Mouse as a Reservoir of Pathogens in an Intensive Care Unit , 2003, Journal of Clinical Monitoring and Computing.
[171] H. Rintala,et al. Diversity of streptomycetes in water‐damaged building materials based on 16S rDNA sequences , 2002, Letters in applied microbiology.
[172] W. J. Fisk,et al. Relationship of SBS-symptoms and ventilation system type in office buildings , 2002 .
[173] Jommi Suonketo,et al. Microbial Growth Inside Insulated External Walls as an Indoor Air Biocontamination Source , 2002, Applied and Environmental Microbiology.
[174] W. H. Engelmann,et al. The National Human Activity Pattern Survey (NHAPS): a resource for assessing exposure to environmental pollutants , 2001, Journal of Exposure Analysis and Environmental Epidemiology.
[175] J. Braams,et al. Biodeterioration of stone: a review , 2000 .
[176] V. Yu,et al. Hospital Characteristics Associated With Colonization of Water Systems by Legionella and Risk of Nosocomial Legionnaires' Disease: A Cohort Study of 15 Hospitals , 2000, Infection Control & Hospital Epidemiology.
[177] Kari Reijula,et al. Mycotoxins in Crude Building Materials from Water-Damaged Buildings , 2000, Applied and Environmental Microbiology.
[178] Joseph C. Carpenter,et al. Hospital Characteristics Associated With Colonization of Water Systems by Legionella and Risk of Nosocomial Legionnaires' Disease: A Cohort Study of 15 Hospitals , 1999, Infection Control & Hospital Epidemiology.
[179] Barry M. Popkin,et al. Urbanization, Lifestyle Changes and the Nutrition Transition , 1999 .
[180] T. Nerad,et al. Examination of microbial contaminants of emergency showers and eyewash stations , 1998, Journal of Industrial Microbiology and Biotechnology.
[181] K Reijula,et al. Bacteria, molds, and toxins in water-damaged building materials , 1997, Applied and environmental microbiology.
[182] Ben D. Tall,et al. Bacterial adherence and viability on cutting board surfaces , 1994 .
[183] S. Zifferblatt. Architecture and Human Behavior: Toward Increased Understanding of a Functional Relationship. , 1972 .
[184] G. Ayerst,et al. The effects of moisture and temperature on growth and spore germination in some fungi. , 1969 .
[185] C B Bazzoni,et al. THE DESTRUCTION OF BACTERIA THROUGH THE ACTION OF LIGHT. , 1914, American journal of public health.
[186] F. Nightingale,et al. Notes on Hospitals , 1860, The British and foreign medico-chirurgical review.
[187] B. K. Stefanowski,et al. A rapid screening method to determine the susceptibility of bio-based construction and insulation products to mould growth , 2017 .
[188] B. Spellerberg,et al. Photoinactivation of bacteria by endogenous photosensitizers and exposure to visible light of different wavelengths – a review on existing data , 2017, FEMS microbiology letters.
[189] E. Rubin,et al. Pandemics: Risks, Impacts, and Mitigation , 2017 .
[190] Division on Earth,et al. Microbiomes of the Built Environment: A Research Agenda for Indoor Microbiology, Human Health, and Buildings , 2017 .
[191] G. Tsongas,et al. Minimum Conditions for Visible Mold Growth , 2016 .
[192] A. Aarnink,et al. Effect of temperature and relative humidity on the survival of airborne bacteria = Effect van temperatuur en relatieve luchtvochtig-heid op de overleving van bacteriën in de lucht , 2015 .
[193] A. Aarnink,et al. Effects of temperature and relative humidity on the survival of airborne bacteria. , 2015 .
[194] W. Cui,et al. Measuring the Short-Term Emission Rates of Particles in the "Personal Cloud" with Different Clothes and Activity Intensities in a Sealed Chamber , 2013 .
[195] F. Memarzadeh. Literature Review : Room Ventilation and Airborne Disease Transmission , 2013 .
[196] J. Stockman. Exposure to Environmental Microorganisms and Childhood Asthma , 2012 .
[197] P Borella,et al. Effectiveness of different methods to control legionella in the water supply: ten-year experience in an Italian university hospital. , 2011, The Journal of hospital infection.
[198] B. Gutarowska. Metabolic activity of moulds as a factor of building materials biodegradation. , 2010, Polish journal of microbiology.
[199] B. S. Sandhu,et al. Relationship of sunlight and humidity on the virulence of street rabies virus in saliva. , 2009 .
[200] Marco Perino,et al. Natural Ventilation for Infection Control in Health-Care Settings , 2009 .
[201] D. van Soolingen,et al. Mycobacterium avium in a shower linked to pulmonary disease , 2008 .
[202] C. Donskey,et al. Vegetative Clostridium difficile Survives in Room Air on Moist Surfaces and in Gastric Contents with Reduced Acidity: a Potential Mechanism To Explain the Association between Proton Pump Inhibitors and C. difficile -Associated Diarrhea? (cid:1) , 2007 .
[203] M. First,et al. The application of ultraviolet germicidal irradiation to control transmission of airborne disease: bioterrorism countermeasure. , 2003, Public health reports.
[204] Anne Hyvärinen,et al. Fungi and actinobacteria in moisture-damaged building materials — concentrations and diversity , 2002 .
[205] D. Cliver,et al. Decontamination of Plastic and Wooden Cutting Boards for Kitchen Use. , 1994, Journal of food protection.
[206] Pentti Kalliokoski,et al. Occurrence and moisture requirements of microbial growth in building materials , 1992 .
[207] A. F. Bravery,et al. The moisture requirements of moulds isolated from domestic dwellings , 1989 .
[208] Ruth B. Kundsin,et al. Architectural design and indoor microbial pollution , 1988 .
[209] A. T. Purcell,et al. The relationship between buildings and behaviour , 1987 .