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International Archives of Occupational and Environmental Health|February 24, 2001
Acute effects on the human EEG after an external exposure to 200 ppm methanolA Muttray, R Kürten, D Jung, et al.International Archives of Occupational and Environmental Health|October 29, 1999
The exposure of healthy volunteers to 200 ppm 1,1,1-trichloroethane increases the concentration of proinflammatory cytokines in nasal secretionsA Muttray, L Klimek, M Faas, et al.International Journal of Occupational Medicine and Environmental Health|January 1, 1995
Effect of subacute occupational exposure to toluene on color visionA Muttray, V Wolters, O Mayer-Popken, et al.European Journal of Medical Research|December 28, 1999
Saliva as an alternate for blood to measure concentrations of acetone under exposure to isopropanolD M Rose, A Muttray, O Mayer-Popken, et al.HNO|January 25, 2012
[Deficits in medical counseling in olfactory dysfunction]B R Haxel, A Nisius, K Fruth, et al.European Journal of Medical Research|September 27, 2000
Acute effects of 200 ppm 1,1,1-trichloroethane on the human EEGA Muttray, R Kürten, D Jung, et al.Deutsche Medizinische Wochenschrift (1946)|April 7, 1999
[Obstructive sleep apnea syndrome caused by occupational exposure to solvents]A Muttray, W Randerath, K H Rühle, et al.The Journal of Laryngology and Otology|May 17, 2012
Comparison of subjective olfaction ratings in patients with and without olfactory disordersB R Haxel, S Bertz-Duffy, K Fruth, et al.Toxicology Letters|April 30, 2013
Acute effects of an exposure to 100 ppm 1-methoxypropanol-2 on the upper airways of human subjectsA Muttray, J Gosepath, J Brieger, et al.International Archives of Occupational and Environmental Health|August 22, 2008
No acute effects of an exposure to 50 ppm acetaldehyde on the upper airwaysA Muttray, J Gosepath, J Brieger, et al.Pageof 3