Environmental Engineering Reference
In-Depth Information
REFERENCES
Aitken, RJ, Creely, KS, Tran, CL. Nanoparticles: An occupational hygiene review. Prepared by the Institute
of Occupational Medicine for Health and Safety Executive. Edinburgh; Research Report 174;
Nanotechnology Now (July 17, 2007) www.nanotech-now.com (2004).
Antipin, NI, Kuznetzov, YuV, Ruzer, LS. Instrument for determination of the iltration ability of lungs.
At. Energy , 40, 371-372 (1978).
ASCC. A review of the potential occupational health & safety implications of nanotechnology. Australian
Government; Australian Safety and Compensation Council. http://www.ascc.gov.au/ascc/AboutUs/
Publications/ResearchReports/ (2006).
Balásházy, I, Hoffman, W. Bronchial airway quantiication of local deposition bifurcations. Health Phys .,
78(2), 147-158 (2000).
Banse, DF, Esfeld, K, Hermann, M, Sierau, B, Wiedensohler, A. Particle counting eficiency of the TSI CPC
3762 for different operating parameters. J. Aerosol Sci ., 32(1), 157-161 (2001).
Bhabra, G, Sood, A, Fisher, B, Cartwright, L, Saunders, M, Evans, WH, Surprenant, A et al. Roger Newson &
Charles Patrick Case. Nanoparticles can cause DNA damage across a cellular barrier. Nat. Nanotechnol .,
4, 876-883 (2009).
Brown, DM, Wilson, MR, MacNee, W, Stone, V, Donaldson, K. Side-dependent proinlammatory effect of
ultraine polystyrene particles: A role for surface area and oxidative stress in the enhanced activity of
ultraines. Toxicol. Appl. Pharmacol ., 175, 191-199 (2001).
Butterweck, G, Vezzu, G, Schuler, Ch, Muller, R, Marsh, JW, Thrift, S, Birchall, A. In vivo measurement
of unattached radon progeny deposited in the human respiratory tract. Radiat. Prot. Dosimetry , 94(3),
247-250 (2001).
Darby, S, Hill, D, Auvinen, A, Barros-Dios, JM, Baysson, H, Bochicchio, F, Deo H et al. Radon in homes and
risk of lung cancer: Collaborative analysis of individual data from 13 European case-control studies.
BMJ. DOI:10. 1136/bmj.38308.477650.63 (published December 21, 2004).
DEFRA. Characterising the potential risks posed by engineered nanoparticles; A Second UK Government
Research Report. Department for Environment, Food and Rural Affairs, London, U.K. http://www.defra.
gov.uk/environment/nanotech/research/pdf/nanoparticles-riskreport07.pdf (2007).
Dokukina, VL, Ruzer, LS. Proceedings of All-Union Institute of Physico-Technical and Radiotechnical
Measurements ( VNIIFTRI ). Moscow (in Russian) 30(60) (1976).
Donaldson, K, Li, XY, MacNee, W. Ultraine (nanometer) particle mediated lung injury. J. Aerosol Sci ., 29(5/6),
553-560 (1998).
Duan, N, Ott, WR. Comprehensive deinitions of exposure and dose to environment pollution, in Proceedings
of the EPA/A&WMA Specialty Conference on Total Exposure Assessment Methodology , Las Vegas, NV
(November 1989).
Dufin, R, Tran, L, Brown, D, Stone, V, Donaldson, K. Proinlammogenic effects of low-toxicity and metal
nanoparticles in vivo and in vitro: Highlighting the role of particle surface area and surface reactivity.
Inhal. Toxicol ., 19, 849-856 (2007).
EPA. Review of the National Ambient Air Quality Standards for Particular Matter: Policy Assessment of
Scientiic and Technical Information, OAQPS Staff Paper, EPA/452/R-96-013, Ofice of Air Quality
Planning and Standards, Research Triangle Park, NC (1996).
Friends of the Earth Nanotechnology Project. Workplace exposure to nanomaterials and the question of will
nano be the next asbestos. AzoNano.com (2009)
Geiser, M, Rothen-Rutishauser, B, Kapp, N, Schürch, S, IOM, Project CB0407. CELL PEN: A study to iden-
tify the physico-chemical factors controlling the capacity of nanoparticles to penetrate cells (August
12, 2008).
Geraci, C. An Update of NIOSH Nanotechnology Research Program . Berkeley, CA: US School of Public
Health. Nanoparticle Safety Symposium (2009).
Hankin, M, Tran, CL, Ross, B, Donaldson, K, Stone, V, Chaud, QM, Project CB0407, August 12, 2008, Cell
pen: A study to identify the physico-chemical factors controlling the capacity of nanoparticles to penetrtate
cells. Nanoparticle Surface Area Monitor, TSI Incorporated. June 2005. http://www.particle.tsi.com
Kao, CH, ChangLai, SP, Shen, YY, Lee, JK, Wang, SJ. Technetium-99m tetrofosmin SPECT imaging of lung
masses: A negative study. J. Nucl. Med ., 38, 1015-1019 (1997).
Kelly, RJ. Occupational medicine implications of engineered nanoscale particulate matter. ACS J. Chem.
Health Saf . 1-42 (March 2008).
Kulinowski, KM. Director, International Council on Nanotechnology Temptation, Temptation: Why easy
answers about nanomaterial risk are probably wrong (2009).
Search WWH ::




Custom Search