Environmental Engineering Reference
In-Depth Information
149. Park, B.J., Sigel, K., Vaz, V. et al., An epidemic of coccidioidomycosis in Arizona associated with cli-
matic changes, 1998-2001, J. Infect. Dis ., 191, 1981, 2005.
150. Centers for Disease Control and Prevention (CDC), Increase in coccidioidomycosis—California, 2000-
2007, Bissell, S.R. and Weiss, E.C., Morb. Mortal. Wkly Rep ., 58, 105, 2009.
151. D'Amato, G., Cecchi, L., D'Amato, M. et al., Urban air pollution and climate change as environmental
risk factors of respiratory allergy: An update, J. Investig. Allergol. Clin. Immunol ., 20, 95, 2010.
152. Muilenberg, M.L., Pollen in indoor air: Sources, exposures, and health effects, in Indoor Air Quality
Handbook , Spengler, J.D., Samet, J.M., and McCarthy, J.F. (Eds.), McGraw-Hill, New York, 2001, Chap.
44.
153. Käpylä, M., Diurnal variations of non-arboreal pollen in the air in Finland, Grana , 20, 55, 1981.
154. Lin, W.H. and Li, C.S., Associations of fungal aerosols, air pollutants, and meteorological factors,
Aerosol Sci. Technol ., 32, 359, 2000.
155. Liao, C.-M. and Luo, W.-C., Use of temporal/seasonal- and size-dependent bioaerosol data to character-
ize the contribution of outdoor fungi to residential exposures, Sci. Total Environ ., 347, 78, 2005.
156. Chen, Q. and Hildemann, L.M., Size-resolved concentrations of particulate matter and bioaerosols inside
versus outside of homes, Aerosol Sci. Technol ., 43, 699, 2009.
157. Hock, N., Scneider, J., Borrmann, S. et al., Rural continental aerosol properties and processes observed
during the Hohenpeissenberg Aerosol Characterization Experiment (HAZE2002), Atmos. Chem. Phys.
Discuss ., 7, 8617, 2007.
158. Di Giorgio, C., Krempff, A., Guiraud, H. et al., Atmospheric pollution by airborne microorganisms in the
City of Marseilles, Atmos. Environ ., 30, 155, 1996.
159. Jones, B.L. and Cookson, J.T., Natural atmospheric microbial conditions in a typical suburban area, Appl.
Environ. Microbiol ., 45, 919, 1983.
160. Bovallius, A., Bucht, B., Roffey, R. et al., Three-year investigation of the natural airborne bacterial lora
at four localities in Sweden, Appl. Environ. Microbiol ., 35, 847, 1978.
161. Kelly, C.D. and Pady, S.M., Microbiological studies of air masses over Montreal during 1950 and 1951,
Can. J. Bot ., 32, 591, 1954.
162. Tong, Y. and Lighthart, B., The annual bacterial particle concentration and size distribution in the ambient
atmosphere in a rural area of the Willamette Valley, Oregon, Aerosol Sci. Technol ., 32, 393, 2000.
163. Kujundzic, E., Hernandez, M., and Miller, S.L., Particle size distributions and concentrations of airborne
endotoxin using novel collection methods in homes during the winter and summer seasons, Indoor Air ,
16, 216, 2006.
164. Reponen, T., Nevalainen, A., Jantunen, M. et al., Normal range criteria for indoor air bacteria and fungal
spores in a subarctic climate, Indoor Air , 2, 6, 1992.
165. Chew, G.L., Rogers, C., Burge, H.A. et al., Dustborne and airborne fungal propagules represent a differ-
ent spectrum of fungi with differing relations to home characteristics, Allergy , 58, 13, 2003.
166. LeBouf, R., Yesse, L., and Rossner, A., Seasonal and diurnal variability in airborne mold from an indoor
residential environment in northern New York, J. Air Waste Manag. Assoc ., 58, 684, 2008.
167. Adhikari, A., Reponen, T., Grinshpun, S.A. et al., Correlation of ambient inhalable bioaerosols with
particulate matter and ozone: A two-year study, Environ. Pollut ., 140, 16, 2006.
168. Levetin, E., Fungi, in Bioaerosols , Burge, H.A. (Ed.), Lewis Publishers, Boca Raton, FL, 1995, Chap. 5.
169. Muilenberg, M.L., The outdoor aerosol, in Bioaerosols , Burge, H.A. (Ed.), Lewis Publishers, Boca
Raton, FL, 1995, Chap. 9.
170. Bornehag, C.G., Blomquist, G., Gyntelberg, F. et al., Dampness in buildings and health. Nordic inter-
disciplinary review of the scientiic evidence on associations between exposure to “dampness” in build-
ings and health effects (NORDDAMP), Indoor Air , 11, 72, 2001.
171. Fröhlich-Nowoisky, J., Pickersgill, D.A., Després, V.R. et al., High diversity of fungi in air particulate
matter, Proc. Natl Acad. Sci. U S A , 106, 12814, 2009.
172. Ariano, R., Canonica, G.W., and Passalacqua, G., Possible role of climate changes in variations in pollen
seasons and allergic sensitizations during 27 years, Ann. Allergy Asthma Immunol ., 104, 215, 2010.
173. D'Amato, G. and Cecchi, L., Effects of climate change on environmental factors in respiratory allergic
diseases, Clin. Exp. Allergy , 38, 1264, 2008.
174. Grifin, D.W., Atmospheric movement of microorganisms in clouds of desert dust and implications for
human health, Clin. Microbiol. Rev ., 20, 459, 2007.
175. Hyvärinen, A., Meklin, T., Vepsäläinen, A. et al., Fungi and actinobacteria in moisture-damaged building
materials—Concentrations and diversity, Int. Biodeterior. Biodegrad ., 49, 27, 2002.
176. Rintala, H., Nevalainen, A., and Suutari, M., Diversity of streptomycetes in water-damaged building
materials based on 16S rDNA sequences, Lett. Appl. Microbiol ., 34, 439, 2002.
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