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Dental Materials Journal|April 29, 1998
A coherent phase diagram of the [(AuCu)0.86Ag0.14]1-XPtX pseudobinary section in Au-Cu-Ag-Pt quaternary systemA A Sakrana, Y Tanaka, K Udoh, et al.European Journal of Biochemistry|September 15, 1991
Chemical structure of the carbohydrate backbone of Vibrio parahaemolyticus serotype 012 lipopolysaccharideS Kondo, U Zähringer, U Seydel, et al.Dental Materials Journal|April 29, 2000
Phase transformation mechanisms in (AuCu)1-xPdx pseudobinary alloys by direct aging methodR I Hernandez, K Udoh, Y Tanaka, et al.Dental Materials Journal|April 29, 2000
Phase transformations and age-hardening behaviors related to Au3Cu in Au-Cu-Pd alloysH Winn, K Udoh, Y Tanaka, et al.Dental Materials Journal|December 1, 1993
Effects of the current used on determining a critical temperature by electrical resistivity measurements in dental alloysK Hisatsune, Y Tanaka, K Udoh, et al.Dental Materials Journal|June 1, 1995
Abnormal behavior in adiabatic calorimetry of set dental stoneK Hisatsune, A M el Araby, K Iwanuma, et al.Biomaterials|May 5, 2001
Age-hardening reactions in a type III dental gold alloyH I Kim, Y K Kim, M I Jang, et al.Oral Microbiology and Immunology|June 1, 1997
Chemical and biological properties of lipopolysaccharide from Selenomonas sputigena ATCC 33150H Kumada, K Watanabe, A Nakamu, et al.Journal of Materials Science. Materials in Medicine|September 7, 2004
Ageing behaviour in a dental low-gold alloy with high copper contentK Hamasaki, K Hisatsune, K Udoh, et al.Infection and Immunity|June 1, 1991
Local skin response in mice induced by a single intradermal injection of bacterial lipopolysaccharide and lipid AY Ishikawa, T Kirikae, M Hirata, et al.Pageof 8