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Transfusion|March 30, 2000
Diversion of initial blood flow to prevent whole-blood contamination by skin surface bacteria: an in vitro modelS J Wagner, D Robinette, L I Friedman, et al.Transfusion|November 29, 2001
First results using automated epifluorescence microscopy to detect Escherichia coli and Staphylococcus epidermidis in WBC-reduced platelet concentratesM Seaver, J C Crookston, D C Roselle, et al.Biological & Pharmaceutical Bulletin|April 18, 2001
Involvement of reactive oxygen species in hemoglobin oxidation and virus inactivation by 1,9-dimethylmethylene blue phototreatmentJ Hirayama, S J Wagner, H Abe, et al.Transfusion|April 1, 1995
Comparison of bacteria growth in single and pooled platelet concentrates after deliberate inoculation and storageS J Wagner, G Moroff, A J Katz, et al.Vox Sanguinis|December 17, 2013
Evaluation of in vitro storage properties of apheresis platelets suspended in a bicarbonate-containing additive solution with low levels of plasma and stored with a 24-hour interruption of agitationA Skripchenko, A Turgeon, D Thompson-Montgomery, et al.Transfusion|October 1, 1991
Virucidal levels of ozone induce hemolysis and hemoglobin degradationS J Wagner, K F Wagner, L I Friedman, et al.Photochemistry and Photobiology|April 2, 1998
Factors affecting virus photoinactivation by a series of phenothiazine dyesS J Wagner, A Skripchenko, D Robinette, et al.Vox Sanguinis|July 1, 2014
Addition of sialidase or p38 MAPK inhibitors does not ameliorate decrements in platelet in vitro storage properties caused by 4 °C storageA Skripchenko, D Thompson-Montgomery, H Awatefe, et al.Transfusion|August 26, 1998
Preservation of red cell properties after virucidal phototreatment with dimethylmethylene blueS J Wagner, A Skripchenko, D Robinette, et al.Photochemistry and Photobiology|May 1, 1997
Factors affecting M13 bacteriophage inactivation by methylene blue photosensitizationH Abe, S J Wagner, M Kuwabara, et al.Pageof 7