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Plant Physiology and Biochemistry : PPB|December 15, 2021
Analysis of DNA methylation in potato tuber in response to light exposure during storageYujie Xiong, Xiao Liu, Qian You, et al.Environmental Health Perspectives|June 3, 2017
Estimating Inorganic Arsenic Exposure from U.S. Rice and Total Water IntakesMadhavi Mantha, Edward Yeary, John Trent, et al.Food Chemistry|June 23, 2020
Liquid chromatography-mass spectrometry-based metabolomics analysis of flavonoids and anthraquinones in Fagopyrum tataricum L. Gaertn. (tartary buckwheat) seeds to trace morphological variationsWei Yang, Yong Su, Gangqiang Dong, et al.Zhonghua Yu Fang Yi Xue Za Zhi [Chinese Journal of Preventive Medicine]|May 11, 2010
[Development and verification of Chinese dietary exposure evaluation model software]Pei Liu, Jing-xin Li, Jin-fang Sun, et al.Toxicological Sciences : an Official Journal of the Society of Toxicology|August 4, 2012
A pharmacokinetic model of cis- and trans-permethrin disposition in rats and humans with aggregate exposure applicationRogelio Tornero-Velez, Jimena Davis, Edward J Scollon, et al.Journal of Exposure Science & Environmental Epidemiology|May 3, 2012
An in vitro assessment of bioaccessibility of arsenicals in rice and the use of this estimate within a probabilistic exposure modelHeather R Trenary, Patricia A Creed, Andrea R Young, et al.The Science of the Total Environment|December 20, 2005
Children's residential exposure to chlorpyrifos: application of CPPAES field measurements of chlorpyrifos and TCPy within MENTOR/SHEDS-Pesticides modelParomita Hore, Valerie Zartarian, Jianping Xue, et al.Journal of Exposure Science & Environmental Epidemiology|July 12, 2012
Comparison of four probabilistic models (CARES(®), Calendex™, ConsExpo, and SHEDS) to estimate aggregate residential exposures to pesticidesBruce M Young, Nicolle S Tulve, Peter P Egeghy, et al.Pageof 8