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Journal of UOEH|December 29, 2012
[Sensing characteristics of a real-time monitor using a photoionization detector on organic solvent vapors]Hajime Hori, Sumiyo Ishematsu, Yukiko Fueta, et al.Toxicology Letters|August 23, 2002
Effects of inhaled 1-bromopropane vapor on rat metabolismToru Ishidao, Naoki Kunugita, Yukiko Fueta, et al.Journal of UOEH|June 20, 2003
[The effect of formaldehyde exposure on cytokine production in murine alveolar macrophages]Koichiroh Nandate, Toru Ishidao, Hajime Hori, et al.Journal of UOEH|December 17, 2013
Characteristics of a real time monitor using the interference enhanced reflection method for organic vaporsHajime Hori, Sumiyo Ishimatsu, Yukiko Fueta, et al.Industrial Health|September 1, 2015
Development of a direct exposure system for studying the mechanisms of central neurotoxicity caused by volatile organic compoundsMasanari Kanemitsu, Yukiko Fueta, Toru Ishidao, et al.Journal of Occupational Health|April 26, 2016
A cross-fostering analysis of bromine ion concentration in rats that inhaled 1-bromopropane vaporToru Ishidao, Yukiko Fueta, Susumu Ueno, et al.Journal of Occupational Health|November 26, 2014
Comparison of sensor characteristics of three real-time monitors for organic vaporsHajime Hori, Sumiyo Ishimatsu, Yukiko Fueta, et al.Journal of Occupational Health|November 3, 2017
Prenatal exposure to 1-bromopropane causes delayed adverse effects on hippocampal neuronal excitability in the CA1 subfield of rat offspringYukiko Fueta, Toru Ishidao, Susumu Ueno, et al.Neurotoxicology|June 20, 2006
New approach to risk assessment of central neurotoxicity induced by 1-bromopropane using animal modelsYukiko Fueta, Toru Ishidao, Susumu Ueno, et al.Sangyo Eiseigaku Zasshi = Journal of Occupational Health|April 13, 2007
[Bioaerosol concentrations and the identification of aerosolized bacteria by 16S rDNA analysis in work environments]Sumiyo Ishimatsu, Hiroki Abe, Kazumasa Fukuda, et al.Pageof 4