Mark D. Hoover
Mark D. Hoover
Mark D Hoover LLC
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Raw single-wall carbon nanotubes induce oxidative stress and activate MAPKs, AP-1, NF-κB, and Akt in normal and malignant human mesothelial cells
M Pacurari, XJ Yin, J Zhao, M Ding, SS Leonard, D Schwegler-Berry, ...
Environmental health perspectives 116 (9), 1211-1217, 2008
Occupational risk management of engineered nanoparticles
P Schulte, C Geraci, R Zumwalde, M Hoover, E Kuempel
Journal of occupational and environmental hygiene 5 (4), 239-249, 2008
Efficacy of a technique for exposing the mouse lung to particles aspirated from the pharynx
GVS Rao, S Tinkle, D Weissman, J Antonini, M Kashon, R Salmen, ...
Journal of toxicology and environmental health Part A 66 (15-16), 1441-1452, 2003
Identification and characterization of potential sources of worker exposure to carbon nanofibers during polymer composite laboratory operations
LF Mazzuckelli, MM Methner, ME Birch, DE Evans, BK Ku, K Crouch, ...
Journal of occupational and environmental hygiene 4 (12), D125-D130, 2007
Implanted depleted uranium fragments cause soft tissue sarcomas in the muscles of rats.
FF Hahn, RA Guilmette, MD Hoover
Environmental Health Perspectives 110 (1), 51-59, 2002
Occupational safety and health criteria for responsible development of nanotechnology
PA Schulte, CL Geraci, V Murashov, ED Kuempel, RD Zumwalde, ...
Journal of Nanoparticle Research 16 (1), 2153, 2014
Species differences in urinary butadiene metabolites; identification of l,2-dihydroxy-4-(N-acetylcysteinyl)butane, a novel metabolite of butadiene
PJ Sabourin, LT Burka, WE Bechtold, AR Dahl, MD Hoover, IY Chang, ...
Carcinogenesis 13 (9), 1633-1638, 1992
Particle size-dependent radical generation from wildland fire smoke
SS Leonard, V Castranova, BT Chen, D Schwegler-Berry, M Hoover, ...
Toxicology 236 (1-2), 103-113, 2007
Characterization of phagolysosomal simulant fluid for study of beryllium aerosol particle dissolution
AB Stefaniak, RA Guilmette, GA Day, MD Hoover, PN Breysse, ...
Toxicology in vitro 19 (1), 123-134, 2005
Characterization of exposures to airborne nanoscale particles during friction stir welding of aluminum
FE Pfefferkorn, D Bello, G Haddad, JY Park, M Powell, J Mccarthy, ...
Annals of occupational hygiene 54 (5), 486-503, 2010
Characterization of physicochemical properties of beryllium aerosols associated with prevalence of chronic beryllium disease
AB Stefaniak, MD Hoover, GA Day, RM Dickerson, EJ Peterson, MS Kent, ...
Journal of Environmental Monitoring 6 (6), 523-532, 2004
Exposure pathway assessment at a copper–beryllium alloy facility
GA Day, A Dufresne, AB Stefaniak, CR Schuler, ML Stanton, WE Miller, ...
The Annals of occupational hygiene 51 (1), 67-80, 2007
Opportunities and challenges of nanotechnology in the green economy
I Iavicoli, V Leso, W Ricciardi, LL Hodson, MD Hoover
Environmental Health 13 (1), 78, 2014
Surface area of respirable beryllium metal, oxide, and copper alloy aerosols and implications for assessment of exposure risk of chronic beryllium disease
AB Stefaniak, MD Hoover, RM Dickerson, EJ Peterson, GA Day, ...
Aiha Journal 64 (3), 297-305, 2003
Aerosols generated during beryllium machining
JW Martyny, MD Hoover, MM Mroz, K Ellis, LA Maier, KL Sheff, ...
Journal of occupational and environmental medicine 42 (1), 8, 2000
Animal models of beryllium-induced lung disease.
GL Finch, MD Hoover, FF Hahn, KJ Nikula, SA Belinsky, PJ Haley, ...
Environmental health perspectives 104 (suppl 5), 973-979, 1996
Determination of the oxide layer thickness on beryllium metal particles
American industrial hygiene association journal 50 (10), 550-553, 1989
Application of In Vitro Dissolution Tests to Different Uranium Compounds and Comparison with In Vivo Data
E Ansoborlo, RA Guilmette, MD Hoover, V Chazel, P Houpert, ...
Radiation protection dosimetry 79 (1-4), 33-37, 1998
How should the completeness and quality of curated nanomaterial data be evaluated?
RLM Robinson, I Lynch, W Peijnenburg, J Rumble, F Klaessig, ...
Nanoscale 8 (19), 9919-9943, 2016
Compartmental modeling of the long-term retention of insoluble particles deposited in the alveolar region of the lung
W Stöber, PE Morrow, MD Hoover
Toxicological Sciences 13 (4), 823-842, 1989
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Artículos 1–20