Showing 1 - 20 results of 1,650 for search '(( euploid mean decrease ) OR ((( myeloid cells decrease ) OR ( myeloid fold decrease ))))', query time: 1.58s Refine Results
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    Image_3_A Shift in Myeloid Cell Phenotype via Down Regulation of Siglec-1 in Island Macrophages of Bone Marrow Is Associated With Decreased Late Erythroblasts Seen in Anemia of Critical Illness.tiff by Shirin Hasan (7894118)

    Published 2019
    “…There was only a marginal increase in the number of EBIMØ after burn, but, between the signatures of EBIMØ, Siglec-1 expression (MFI) was reduced by 40% in B with and a parallel 44% decrease in TBM erythrons in the BM. There were more (2.5-fold) EEBs and less LEBs (2.4-fold) per million TBM cells in B; with a corresponding decrease in Siglec-1 and Ly6G expressions in EBIMØ associated with EEB. …”
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    Image_4_A Shift in Myeloid Cell Phenotype via Down Regulation of Siglec-1 in Island Macrophages of Bone Marrow Is Associated With Decreased Late Erythroblasts Seen in Anemia of Critical Illness.tiff by Shirin Hasan (7894118)

    Published 2019
    “…There was only a marginal increase in the number of EBIMØ after burn, but, between the signatures of EBIMØ, Siglec-1 expression (MFI) was reduced by 40% in B with and a parallel 44% decrease in TBM erythrons in the BM. There were more (2.5-fold) EEBs and less LEBs (2.4-fold) per million TBM cells in B; with a corresponding decrease in Siglec-1 and Ly6G expressions in EBIMØ associated with EEB. …”
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    Image_2_A Shift in Myeloid Cell Phenotype via Down Regulation of Siglec-1 in Island Macrophages of Bone Marrow Is Associated With Decreased Late Erythroblasts Seen in Anemia of Critical Illness.tiff by Shirin Hasan (7894118)

    Published 2019
    “…There was only a marginal increase in the number of EBIMØ after burn, but, between the signatures of EBIMØ, Siglec-1 expression (MFI) was reduced by 40% in B with and a parallel 44% decrease in TBM erythrons in the BM. There were more (2.5-fold) EEBs and less LEBs (2.4-fold) per million TBM cells in B; with a corresponding decrease in Siglec-1 and Ly6G expressions in EBIMØ associated with EEB. …”
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    Image_1_A Shift in Myeloid Cell Phenotype via Down Regulation of Siglec-1 in Island Macrophages of Bone Marrow Is Associated With Decreased Late Erythroblasts Seen in Anemia of Critical Illness.tiff by Shirin Hasan (7894118)

    Published 2019
    “…There was only a marginal increase in the number of EBIMØ after burn, but, between the signatures of EBIMØ, Siglec-1 expression (MFI) was reduced by 40% in B with and a parallel 44% decrease in TBM erythrons in the BM. There were more (2.5-fold) EEBs and less LEBs (2.4-fold) per million TBM cells in B; with a corresponding decrease in Siglec-1 and Ly6G expressions in EBIMØ associated with EEB. …”
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    Transcriptome of splenic myeloid cells from hamsters with VL show proliferative pathways characteristic of cancer diseases. by E. Yaneth Osorio (9226059)

    Published 2020
    “…<p><b>A</b>, Signaling pathways associated with cell proliferation of tumor cell lines in a set of 278 differentially expressed genes identified in the transcriptome of splenic myeloid cells of hamsters with VL; <b>B</b>, Venn diagram representing a set of 106 differentially expressed genes associated with functions of proliferation of tumor cell lines and growth of tumor; <b>C</b>, Predicted upstream regulators of those 106 differentially expressed genes: Interleukin-4 (IL-4, Z = 2.32), Granulocyte-macrophage colony-stimulating factor = Colony stimulating factor 2 (CSF2, Z = 2.0) and Toll-like receptor 4 (TLR4, Z = 2.32); Orange arrows: lead to activation; blue arrows: lead to inhibition; yellow arrows: conflicting finding; grey arrows undetermined; pink to red gene: increased expression; green gene: decreased expression; <b>D</b>,<b>E</b>, Differentially expressed proto-oncogenes and tumor suppressor genes that lead to cell division of tumoral cells. …”
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    IFNγ from ASFV-specific CD4+CD8+ T cells induces TNF-production by myeloid cells. by Laia Bosch-Camós (14093985)

    Published 2022
    “…The fold decrease was calculated by dividing percentages of TNF-producing cells without IFNγ blockage by percentages of TNF-producing cells with IFNγ blockage. …”