Environmental Engineering Reference
In-Depth Information
202. Verhoeff, A.P. and Burge, H.A., Health risk assessment of fungi in home environments, Ann. Allergy
Asthma Immunol ., 78, 544, 1997.
203. AIHA, Report of microbial growth task force, American Industrial Hygiene Association, Fairfax, VA,
2008.
204. Centers for Disease Control and Prevention (CDC), State of the Science on Molds and Human Health ,
Statement for the record before the Subcommittees on Oversight and Investigations and Housing and
Community Opportunity, Committee on Financial Services, United States House of Representatives,
Washington, DC, 2002.
205. Spicer, R.C. and Gangloff, H.J., Differences in detection frequency as a bioaerosol data criterion for
evaluating suspect fungal contamination, Building Environ ., 45, 1304, 2009.
206. AIHA, Guidance for assessment and remediation of indoor microbial growth, in Recognition, Evaluation,
and Control of Indoor Mold , Prezant, B., Weekes, D.M., and Miller, J.D. (Eds.), American Industrial
Hygiene Association, Fairfax, VA, 2008, Chap. 2.
207. WHO, Development of WHO Guidelines for Indoor Air Quality , World Health Organization, Geneva,
Switzerland, 2007.
208. Górny, R.L., Filamentous microorganisms and their fragments in indoor air—A review, Ann. Agric.
Environ. Med ., 11, 185, 2004.
209. Green, B.J., O'Meara, T.O., Sercombe, J.K. et al., Measurement of personal exposure to outdoor aeromy-
cota in northern New South Wales, Australia, Ann. Agric. Environ. Med ., 13, 225, 2006.
210. Brasel, T.L., Martin, J.M., Carriker, C.G. et al., Detection of airborne Stachybotrys chartarum macrocy-
clic trichothecene mycotoxins in the indoor environment. Appl. Environ. Microbiol ., 71, 7376, 2005.
211. Douwes, J., (1 → 3)-Beta-D-glucans and respiratory health: A review of the scientiic evidence, Indoor
Air , 15, 160, 2005.
212. Rylander, R., Indoor air-related effects and airborne (1 → 3)-ß-D-glucan, Environ. Health Perspect ., 107
(Suppl 3), 501, 1999.
213. Douwes, J., Doekes, G., Montijn, R. et al., Measurement of β(1 → 3)-glucans in occupational and home
environments with an inhibition enzyme immunoassay, Appl. Environ. Microbiol ., 62, 3176, 1996.
214. Douwes, J., Doekes, G., Heinrich, J. et al., Endotoxin and β(1 → 3)-glucan in house dust and the relation
with home characteristics: A pilot study in 25 German houses, Indoor Air , 8, 255, 1998.
215. Douwes, J., Zuidhof, A., Doekes, G. et al., (1 → 3)-β-D-glucan and endotoxin in house dust and peak low
variability in children, Am. J. Respir. Crit. Care Med ., 162, 1348, 2000.
216. Gehring, U., Bolte, G., Borte, M. et al., Exposure to endotoxin decreases the risk of atopic eczema in
infancy: A cohort study, J. Allergy Clin. Immunol ., 108, 847, 2001.
217. Chew, G.L., Douwes, J., Doekes, G. et al., Fungal extracellular polysaccharides, beta (1 → 3)-glucans and
culturable fungi in repeated sampling of house dust, Indoor Air , 11, 171, 2001.
218. Paterson, R.R. and Lima, N. Toxicology of mycotoxins, EXS , 100, 31, 2010.
219. van Egmond, H.P., Schothorst, R.C., and Jonker, M.A., Regulations relating to mycotoxins in food:
Perspectives in a global and European context, Anal. Bioanal. Chem ., 389, 147, 2007.
220. Croft, W.A., Jarvis, B.B., and Yatawara, C.S., Airborne outbreak of trichothecene toxicosis, Atmos.
Environ ., 20, 549, 1986.
221. Ammann, H., Hodgson, M., Nevalainen, A. et al., Indoor mold, basis for health concerns, in Recognition,
Evaluation and Control of Indoor Mold , Prezant, B., Miller, J.D., and Weekes, D. (Eds.), American
Industrial Hygiene Association, Fairfax, VA, 2008, Chap. 1.
222. Bloom, E., Bal, K., Nyman, E. et al., Mass spectrometry-based strategy for direct detection and quantii-
cation of some mycotoxins produced by Stachybotrys and Aspergillus spp. in indoor environments, Appl.
Environ. Microbiol ., 73, 4211, 2007.
223. Brasel, T.L., Douglas, D.R., Wilson, S.C. et al., Detection of airborne Stachybotrys chartarum macrocyclic
trichothecene mycotoxins on particulates smaller than conidia, Appl. Environ. Microbiol ., 71, 114, 2005.
224. Charpin-Kadouch, C., Maurel, G., Felipo, R. et al., Mycotoxin identiication in modly dwellings, J. Appl.
Toxicol ., 26, 475, 2006.
225. Miller, J.D., Sun, M., Gilyan, A. et al., Inlammation-associated gene transcription and expression in
mouse lungs induced by low molecular weight compounds from fungi from the built environment, Chem.
Biol. Interact ., 183, 113, 2010.
226. Ahearn, D.G., Crow, S.A., Simmons, R.B. et al., Fungal colonization of air ilters and insulation in a
multi-story ofice building: Production of volatile organics, Curr. Microbiol ., 35, 305, 1997.
227. Korpi, A., Pasanen, A.L., and Pasanen, P., Volatile compounds originating from mixed microbial cultures
on building materials under various humidity conditions, Appl. Environ. Microbiol ., 64, 2914, 1998.
Search WWH ::




Custom Search