PuSH - Publikationsserver des Helmholtz Zentrums München

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1.
Phalen, R.F.* ; Hoover, M.D.* ; Oldham, M.J.* ; Schmid, O. & Golshahi, L.*: Anatomical considerations for inhaled aerosol deposition modeling: Methods, applications, challenges and opportunities. J. Aerosol Sci. 156:105786 (2021)
2.
Munyeza, C.F.* et al.: Characterisation of particle collection and transmission in a polydimethylsiloxane based denuder sampler. J. Aerosol Sci. 130, 22-31 (2019)
4.
Mülhopt, S.* et al.: Toxicity testing of combustion aerosols at the air-liquid interface with a self-contained and easy-to-use exposure system. J. Aerosol Sci. 96, 38-55 (2016)
5.
Müller, L. et al.: Combustion process apportionment of carbonaceous particulate emission from a diesel fuel burner. J. Aerosol Sci. 100, 61-72 (2016)
6.
Schmid, O. & Stöger, T.: Surface area is the biologically most effective dose metric for acute nanoparticle toxicity in the lung. J. Aerosol Sci. 99, 133-143 (2016)
7.
Hänninen, O.* et al.: Aerosol-based modelling of infiltration of ambient PM2.5 and evaluation against population-based measurements in homes in Helsinki, Finland. J. Aerosol Sci. 66, 111-122 (2013)
8.
Krause, F.* et al.: Numerical and experimental study on the deposition of nanoparticles in an extrathoracic oral airway model. J. Aerosol Sci. 57, 131-143 (2013)
9.
Paur, H.R.* et al.: In-vitro cell exposure studies for the assessment of nanoparticle toxicity in the lung - a dialog between aerosol science and biology. J. Aerosol Sci. 42, 668-692 (2011)
10.
Schmid, O. ; Karg, E.W. ; Hagen, D.E.* ; Whitefield, P.D.* & Ferron, G.A.: On the effective density of non-spherical particles as derived from combined measurements of aerodynamic and mobility equivalent size. J. Aerosol Sci. 38, 431-443 (2007)
11.
Szymczak, W. ; Menzel, N. & Keck, L.: Emission of ultrafine copper particles by universal motors controlled by phase angle modulation. J. Aerosol Sci. 38, 520-531 (2007)
12.
Keck, L. & Wittmaack, K.: Miniature parallel-plate denuder for the collection of inorganic trace gases and their removal from aerosol-laden air. J. Aerosol Sci. 37, 1165-1173 (2006)
13.
Möller, W. et al.: A generator for the production of radiolabelled ultrafine carbonaceous particles for deposition and clearance studies in the respiratory tract. J. Aerosol Sci. 37, 631-644 (2006)
14.
Bitterle, E. et al.: A new in-vitro device for exposure of epithelial cells to airborne ultrafine elemental carbon particles at the air-liquid interface. J. Aerosol Sci. 35, (Suppl.2), 1111-1112 (2004)
15.
Ferge, T. ; Mühlberger, F. & Zimmermann, R.: Laser desorption/ionization using vacuum-UV single photon ionization for analysis of organic components in tobacco smoke and ambient aerosols. J. Aerosol Sci. 35, (Suppl.1), 425-426 (2004)
16.
Ferge, T. et al.: Single particle analysis of standard soot samples for fast determination of EC/OC values. J. Aerosol Sci. 35, (Suppl.1), 1169-1170 (2004)
17.
Ferge, T. et al.: Correlation of gas-phase composition and particle emission during combustion of wood and model waste in a small batch reactor. J. Aerosol Sci. 35, (Suppl.1), 1087-1088 (2004)
18.
Ferron, G.A. ; Roth, C. & Heyder, J.: Drug targeting in the human respiratory tract. J. Aerosol Sci. 35, (Suppl.2), 1265-1266 (2004)
19.
Kreyling, W.G. ; Semmler, M. & Möller, W.: Health effects of ultrafine particles. J. Aerosol Sci. 35, (Suppl.2), 1155-1156 (2004)
20.
Möller, W. et al.: Modified technegas generator to produce 99mTc-labeled ultrafine carbon particles for deposition and clearance studies in the respiratory tract. J. Aerosol Sci. 35, (Suppl.1), 279-280 (2004)