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The Journal of Experimental Medicine|August 1, 1990
Effects of transplantation on the primitive immunohematopoietic stem cellD E Harrison, M Stone, C M AstleThe Journal of Experimental Medicine|September 1, 1984
Ultimate erythropoietic repopulating abilities of fetal, young adult, and old adult cells compared using repeated irradiationD E Harrison, C M Astle, C LernerExperimental Hematology|March 1, 1988
Effects of transplantation and age on immunohemopoietic cell growth in the splenic microenvironmentD E Harrison, C M Astle, J DeLaittreProceedings of the National Academy of Sciences of the United States of America|February 1, 1988
Number and continuous proliferative pattern of transplanted primitive immunohematopoietic stem cellsD E Harrison, C M Astle, C LernerJournal of Immunology (Baltimore, Md. : 1950)|June 1, 1989
Numbers and functions of transplantable primitive immunohematopoietic stem cells. Effects of ageD E Harrison, C M Astle, M StoneThe Journal of Experimental Medicine|May 1, 1978
Loss of proliferative capacity in immunohemopoietic stem cells caused by serial transplantation rather than agingD E Harrison, C M Astle, J A DelaittreBlood|June 1, 1994
Splenic primitive hematopoietic stem cell (PHSC) activity is enhanced by steel factor because of PHSC proliferationD E Harrison, K M Zsebo, C M AstleExperimental Hematology|June 1, 1997
Hematopoietic precursor cell exhaustion is a cause of proliferative defect in primitive hematopoietic stem cells (PHSC) after chemotherapyR V Gardner, C M Astle, D E HarrisonExperimental Hematology|January 1, 1988
The decrease in long-term marrow repopulating capacity seen after transplantation is not the result of irradiation-induced stromal injuryR V Gardner, C M Astle, D E HarrisonJournal of Immunology (Baltimore, Md. : 1950)|April 1, 1977
Cell lines from old immunodeficient donors give normal responses in young recipientsD E Harrison, C M Astle, J W DoubledayPageof 1,265