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Titlebook: Experimental Hematology Today 1979; Siegmund J. Baum (Chairman),G. David Ledney (Head) Conference proceedings 1979 Springer-Verlag New Yor

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Progress in Erythropoiesis and Megakaryocytopoiesisent that research into the mechanisms that regulate erythrocyte production could be undertaken in earnest. By the turn of the century, it was reasonably well established that anemia accompanies various illnesses, including renal failure; that the red cell count recovers rapidly after hemorrhage; and
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Response of Megakaryocyte, Erythroid, and Granulocyte-Macrophage Progenitor Cells in Mouse Bone Marror agar (7,8,12,19). This advance has permitted the first quantitative assay for a class of megakaryocyte progenitors entitled the colony-forming unit, megakaryocyte, or CFU-m (12). Although CFU-m are obviously important because they are the only megakaryocyte progenitors capable of proliferation (i
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Treatment of Strontium-89- Induced Hypoplastic Anemia in Mice by Intraperitoneal Implants of Spleen ow aplasia as the .Sr dose is increased, extramedullar hemopoiesis in the spleen is increased, and essentially normal erythrocyte and thrombocyte levels are maintained (4). Following splenectomy in such animals, however, hypoplastic anemia (pancytopenia) ensues, and if the .Sr dosage exceeds 2.5 µCi
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Growth Control of Hemopoietic Colony-Forming Cells by Thymidine and Deoxycytidine inducing a state of deoxycytidine nucleotide starvation (2,18,19). Such inhibition can be specifically reversed by the addition of deoxycytidine, which rapidly restores the intracellular pool of deoxycytidine triphosphate (dCTP)(2,17,23,24).
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Tamra C. Mendelson,Kerry L. Shaw and thymus that cooperate with hematopoietic stem cells (HSCs) and bear the theta surface antigen (12). These cells, subsequently termed the anti-theta-sensitive regulatory cells (TSRCs), were found (9) to regulate the self-renewal capacity of the HSCs and to direct differentiation along erythropoietic and granulopoietic pathways.
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https://doi.org/10.1007/978-1-4684-5137-5, megakaryocyte, or CFU-m (12). Although CFU-m are obviously important because they are the only megakaryocyte progenitors capable of proliferation (i.e., mitosis), their physiologic role in new negakaryocyte production . remains to be more fully defined (10,11).
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