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Immunohematology|February 21, 2008
A confusion in antibody identification: anti-D production after anti-hrBC Lomas-Francis, R Yomtovian, C McGrath, et al.Immunohematology|September 18, 2004
Cefotetan-induced immune hemolytic anemia following prophylaxis for cesarean deliveryS Shariatmadar, J R Storry, L Sausais, et al.Transfusion|May 29, 2000
Identification of a novel hybrid glycophorin gene encoding GP.HopJ R Storry, J Poole, J Condon, et al.Vox Sanguinis|December 23, 2015
International rare donor panels: a reviewS Nance, E A Scharberg, N Thornton, et al.Immunohematology|January 1, 1997
Practical method for determination of the U status of S-s- erythrocytesM E Reid, J R Storry, J Maurer, et al.Vox Sanguinis|December 16, 1998
Two examples of an inseparable antibody that reacts equally well with DW+ and Rh32+ red blood cellsM E Reid, L Sausais, C G Zaroulis, et al.Vox Sanguinis|July 7, 2011
Molecular basis of the rare gene complex, DIVa(C)-, which encodes four low-prevalence antigens in the Rh blood group systemC H Hipsky, K Hue-Roye, C Lomas-Francis, et al.Transfusion|February 24, 2000
Molecular basis of Cromer blood group antigensD M Lublin, S Kompelli, J R Storry, et al.Annals of Clinical and Laboratory Science|October 25, 2000
Cell typing the sensitized transfusion-dependent patientM Rios, K Hue-Roye, J R Storry, et al.Vox Sanguinis|March 24, 2000
The MNS blood group antigens, Vr (MNS12) and Mt(a) (MNS14), each arise from an amino acid substitution on glycophorin AJ R Storry, G Coghlan, J Poole, et al.Pageof 7