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J R Storry

Showing results (21-30 of 50) with videos related to

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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.
Transfusion|March 10, 2001
The low-incidence MNS antigens M(v), s(D), and Mit arise from single amino acid substitutions on GPBJ R Storry, M E Reid, S MacLennan, et al.
Transfusion Medicine (Oxford, England)|April 13, 2017
A and B antigen levels acquired by group O donor-derived erythrocytes following ABO-non-identical transfusion or minor ABO-incompatible haematopoietic stem cell transplantationA K Hult, J H Dykes, J R Storry, et al.
Immunohematology|January 1, 1996
Glycophorin A-deficient red cells may have a weak expression of C4-bound Ch and Rg antigensP Tippett, J R Storry, P S Walker, et al.
Transfusion|August 1, 1996
Expression and quantitative variation of the low-incidence blood group antigen He on some S-s-red cellsM E Reid, J R Storry, H Ralph, et al.
Vox Sanguinis|May 10, 2005
Blood group genotype analysis for the quality improvement of reagent test red blood cellsA Hult, A Hellberg, E S Wester, et al.
Immunohematology|December 1, 1994
First example of Rh:-32,-46 red cell phenotypeJ R Storry, M Gorman, N I Maddox, et al.
Immunohematology|September 18, 2004
Moderate hemolytic disease of the newborn (HDN) due to anti-Rh17 produced by a black female with an e variant phenotypeM C Brumit, G E Carnahan, J R Stubbs, et al.
Pageof 5

Showing results (21-30 of 50) with videos related to

Sort By:
Pageof 5
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.
Transfusion|March 10, 2001
The low-incidence MNS antigens M(v), s(D), and Mit arise from single amino acid substitutions on GPBJ R Storry, M E Reid, S MacLennan, et al.
Transfusion Medicine (Oxford, England)|April 13, 2017
A and B antigen levels acquired by group O donor-derived erythrocytes following ABO-non-identical transfusion or minor ABO-incompatible haematopoietic stem cell transplantationA K Hult, J H Dykes, J R Storry, et al.
Immunohematology|January 1, 1996
Glycophorin A-deficient red cells may have a weak expression of C4-bound Ch and Rg antigensP Tippett, J R Storry, P S Walker, et al.
Transfusion|August 1, 1996
Expression and quantitative variation of the low-incidence blood group antigen He on some S-s-red cellsM E Reid, J R Storry, H Ralph, et al.
Vox Sanguinis|May 10, 2005
Blood group genotype analysis for the quality improvement of reagent test red blood cellsA Hult, A Hellberg, E S Wester, et al.
Immunohematology|December 1, 1994
First example of Rh:-32,-46 red cell phenotypeJ R Storry, M Gorman, N I Maddox, et al.
Immunohematology|September 18, 2004
Moderate hemolytic disease of the newborn (HDN) due to anti-Rh17 produced by a black female with an e variant phenotypeM C Brumit, G E Carnahan, J R Stubbs, et al.
Pageof 5