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Loss of function of the erythropoietin receptor or JAK2 in mice cells causes failure in erythropoiesis, so production of red blood cells in embryos and growth is disrupted. If there is no systemic feedback inhibition, for example, the diminishment or absence of suppressors of cytokine signaling proteins, giantism may result as shown in mice models.
This diagram shows the hematopoiesis as it occurs in humans. It may look incomplete when rendered directly from WikiMedia. Reference list is found at: File:Hematopoiesis (human) diagram.png. The morphological characteristics of the hematopoietic cells are shown as seen in a Wright’s stain, May-Giemsa stain or May-Grünwald-Giemsa stain.
Chart showing the lineages of hematopoiesis. In the adjacent image, CFU-GEMM is the scientific name for the "common myeloid progenitor" that is responsible for forming all the cells of the myeloid lineages. As observed in the image, CFU-GEMM is capable of producing a diverse set of cells.
Diagram of human haematopoiesis, showing all types of granulocyte precursors. Granulopoiesis (or granulocytopoiesis) is a part of haematopoiesis, that leads to the production of granulocytes.
Diagram showing the development of different blood cells from hematopoietic stem cells to mature cells. A blood cell (also called a hematopoietic cell , hemocyte , or hematocyte ) is a cell produced through hematopoiesis and found mainly in the blood .
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The number of reticulocytes, immature red blood cells, gives an estimate of the rate of erythropoiesis. Lymphocytes are the cornerstone of the adaptive immune system. They are derived from common lymphoid progenitors. The lymphoid lineage is composed of T-cells, B-cells and natural killer cells. This is lymphopoiesis.