Determination of Four Quinones in Diesel Exhaust Particles, SRM 1649a, and Atmospheric PM<sub>2.5</sub>Special Issue of<i>Aerosol Science and Technology</i>on Findings from the Fine Particulate Matter Supersites Program
Arthur K. Cho(University of California, Los Angeles), John R. Froines(University of California, Los Angeles), Emma Di Stefano(University of Southern California), Ying You(University of Southern California), Antonio H. Miguel, Chester E. Rodriguez(University of California, Los Angeles), Ed Avol(University of Southern California), Takahiro Kobayashi(National Institute for Environmental Studies), Arantzazu Eiguren-Fernandez(University of California, Los Angeles), Yoshito Kumagai(University of Tsukuba), Debra A. Schmitz(University of California, Los Angeles)
Cited by 245
Related Papers
Ultrafine particulate pollutants induce oxidative stress and mitochondrial damage.
|Environmental Health Perspectives|2003|2.1k
Redox activity of airborne particulate matter at different sites in the Los Angeles Basin
|Environmental Research|2005|796
Evaluating the Toxicity of Airborne Particulate Matter and Nanoparticles by Measuring Oxidative Stress Potential—A Workshop Report and Consensus Statement
|Inhalation Toxicology|2008|618
Air pollution and case fatality of SARS in the People's Republic of China: an ecologic study
|Environmental Health|2003|442
Relationship between redox activity and chemical speciation of size-fractionated particulate matter
|Particle and Fibre Toxicology|2007|265