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Scandinavian Journal of Gastroenterology|March 1, 1985
Adrenergic innervation of the human liver. A fluorescence histochemical analysis of clinical liver biopsy specimensK Kyösola, O Penttilä, T Ihamäki, et al.Alcoholism, Clinical and Experimental Research|September 2, 1999
Role of yeasts in the salivary acetaldehyde production from ethanol among risk groups for ethanol-associated oral cavity cancerJ Tillonen, N Homann, M Rautio, et al.Alcoholism, Clinical and Experimental Research|September 3, 1998
Role of catalase in in vitro acetaldehyde formation by human colonic contentsJ Tillonen, P Kaihovaara, H Jousimies-Somer, et al.Alcohol and Alcoholism (Oxford, Oxfordshire)|October 30, 2007
A randomized, multicentre, open-label, comparative trial of disulfiram, naltrexone and acamprosate in the treatment of alcohol dependenceE Laaksonen, A Koski-Jännes, M Salaspuro, et al.Gut|July 1, 1996
High intracolonic acetaldehyde values produced by a bacteriocolonic pathway for ethanol oxidation in pigletsK Jokelainen, T Matysiak-Budnik, H Mäkisalo, et al.Alcoholism, Clinical and Experimental Research|August 1, 1996
Biological markers of alcohol consumption and effect of calcitonin in nonalcoholic men: a prospective, double-blind studyV V Elomaa, E Löyttyniemi, P Kãrkkäinen, et al.Alcoholism, Clinical and Experimental Research|January 1, 1979
Alcoholic liver damage is provoked by 4-methylpyrazole, which prolongs the influence of ethanol but reduces acetaldehyde levelsK O Lindros, P Sipponen, P Pikkarainen, et al.Gut|September 1, 1994
In vitro acetaldehyde formation by human colonic bacteriaK Jokelainen, R P Roine, H Väänänen, et al.Carcinogenesis|November 5, 1997
High acetaldehyde levels in saliva after ethanol consumption: methodological aspects and pathogenetic implicationsN Homann, H Jousimies-Somer, K Jokelainen, et al.Gut|February 23, 1999
Ciprofloxacin decreases the rate of ethanol elimination in humansJ Tillonen, N Homann, M Rautio, et al.Pageof 13