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Biophysical Journal|June 1, 1974
Photoelectron quantum yields of the amino acidsR J Dam, C A Burke, O H GriffithChemistry and Physics of Lipids|January 1, 1986
A simplified procedure for lipid phosphorus analysis shows that digestion rates vary with phospholipid structureR J Mrsny, J J Volwerk, O H GriffithProceedings of the National Academy of Sciences of the United States of America|September 1, 1979
Photoelectric properties and detection of the aromatic carcinogens benza[a]pyrene and dimethylbenzanthraceneW A Houle, H M Brown, O H GriffithAnalytical Biochemistry|June 11, 1999
A robotics-based automated assay for inorganic and organic phosphatesE B Cogan, G B Birrell, O H GriffithBiophysical Journal|November 1, 1994
Photoelectron imaging of viruses and DNA: evaluation of substrates by unidirectional low angle shadowing and photoemission current measurementsG B Birrell, D L Habliston, O H GriffithUltramicroscopy|May 1, 1991
Design and performance of a high-resolution photoelectron microscopeG F Rempfer, W P Skoczylas, O H GriffithScanning Electron Microscopy|January 1, 1981
A high vacuum photoelectron microscope for the study of biological specimensO H Griffith, G F Rempfer, G H LeschBiochemical and Biophysical Research Communications|June 6, 1995
An extracellular inositol phospholipid-specific phospholipase C is released by cultured Swiss 3T3 cellsG B Birrell, K K Hedberg, O H GriffithCell Regulation|December 1, 1991
Phorbol ester-induced actin cytoskeletal reorganization requires a heavy metal ionK K Hedberg, G B Birrell, O H GriffithBiophysical Journal|December 1, 1974
Photoelectron quantum yields of hemin, hemoglobin, and apohemoglobin. Possible applications to photoelectron microscopy of heme proteins in biological membranesR J Dam, K F Kongslie, O H GriffithPageof 10