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31381
Table_2_Replication of Dengue Virus in K562-Megakaryocytes Induces Suppression in the Accumulation of Reactive Oxygen Species.XLSX
Published 2022“…<p>Dengue virus can infect human megakaryocytes leading to decreased platelet biogenesis. In this article, we report a study of Dengue replication in human K562 cells undergoing PMA-induced differentiation into megakaryocytes. …”
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31382
Effects of attention on tuning curves.
Published 2016“…The indicated <i>p</i>-value in each panel corresponds to a Kruskal-Wallis test. <b>A)</b> Attention decreased (increased) the left peak—as measured by the feature normalizedPeakToPeak<sup>left</sup>—in the spatially separated (transparent) paradigm. …”
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31383
Presentation_1_Replication of Dengue Virus in K562-Megakaryocytes Induces Suppression in the Accumulation of Reactive Oxygen Species.PPTX
Published 2022“…<p>Dengue virus can infect human megakaryocytes leading to decreased platelet biogenesis. In this article, we report a study of Dengue replication in human K562 cells undergoing PMA-induced differentiation into megakaryocytes. …”
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31384
Table_1_Replication of Dengue Virus in K562-Megakaryocytes Induces Suppression in the Accumulation of Reactive Oxygen Species.XLSX
Published 2022“…<p>Dengue virus can infect human megakaryocytes leading to decreased platelet biogenesis. In this article, we report a study of Dengue replication in human K562 cells undergoing PMA-induced differentiation into megakaryocytes. …”
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31385
Tiny Molecular Beacons: LNA/2′-<i>O</i>-methyl RNA Chimeric Probes for Imaging Dynamic mRNA Processes in Living Cells
Published 2012“…In order to spatially and temporally resolve dynamic steps involving RNA in cells, molecular beacons need to efficiently hybridize to their RNA targets. …”
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31386
Tiny Molecular Beacons: LNA/2′-<i>O</i>-methyl RNA Chimeric Probes for Imaging Dynamic mRNA Processes in Living Cells
Published 2012“…In order to spatially and temporally resolve dynamic steps involving RNA in cells, molecular beacons need to efficiently hybridize to their RNA targets. …”
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31387
Tiny Molecular Beacons: LNA/2′-<i>O</i>-methyl RNA Chimeric Probes for Imaging Dynamic mRNA Processes in Living Cells
Published 2012“…In order to spatially and temporally resolve dynamic steps involving RNA in cells, molecular beacons need to efficiently hybridize to their RNA targets. …”
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31388
Tiny Molecular Beacons: LNA/2′-<i>O</i>-methyl RNA Chimeric Probes for Imaging Dynamic mRNA Processes in Living Cells
Published 2012“…In order to spatially and temporally resolve dynamic steps involving RNA in cells, molecular beacons need to efficiently hybridize to their RNA targets. …”
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31389
Tiny Molecular Beacons: LNA/2′-<i>O</i>-methyl RNA Chimeric Probes for Imaging Dynamic mRNA Processes in Living Cells
Published 2012“…In order to spatially and temporally resolve dynamic steps involving RNA in cells, molecular beacons need to efficiently hybridize to their RNA targets. …”
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31390
Tiny Molecular Beacons: LNA/2′-<i>O</i>-methyl RNA Chimeric Probes for Imaging Dynamic mRNA Processes in Living Cells
Published 2012“…In order to spatially and temporally resolve dynamic steps involving RNA in cells, molecular beacons need to efficiently hybridize to their RNA targets. …”
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31391
Table1_UK midwives delivering physical activity advice; what are the challenges and possible solutions?.docx
Published 2024“…Data were analysed using a deductive thematic approach following Braun and Clarke's six steps. …”
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31392
Tiny Molecular Beacons: LNA/2′-<i>O</i>-methyl RNA Chimeric Probes for Imaging Dynamic mRNA Processes in Living Cells
Published 2012“…In order to spatially and temporally resolve dynamic steps involving RNA in cells, molecular beacons need to efficiently hybridize to their RNA targets. …”
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31393
Tiny Molecular Beacons: LNA/2′-<i>O</i>-methyl RNA Chimeric Probes for Imaging Dynamic mRNA Processes in Living Cells
Published 2012“…In order to spatially and temporally resolve dynamic steps involving RNA in cells, molecular beacons need to efficiently hybridize to their RNA targets. …”
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31394
Tiny Molecular Beacons: LNA/2′-<i>O</i>-methyl RNA Chimeric Probes for Imaging Dynamic mRNA Processes in Living Cells
Published 2012“…In order to spatially and temporally resolve dynamic steps involving RNA in cells, molecular beacons need to efficiently hybridize to their RNA targets. …”
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31395
Tiny Molecular Beacons: LNA/2′-<i>O</i>-methyl RNA Chimeric Probes for Imaging Dynamic mRNA Processes in Living Cells
Published 2012“…In order to spatially and temporally resolve dynamic steps involving RNA in cells, molecular beacons need to efficiently hybridize to their RNA targets. …”
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31396
Tiny Molecular Beacons: LNA/2′-<i>O</i>-methyl RNA Chimeric Probes for Imaging Dynamic mRNA Processes in Living Cells
Published 2012“…In order to spatially and temporally resolve dynamic steps involving RNA in cells, molecular beacons need to efficiently hybridize to their RNA targets. …”
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31397
Tiny Molecular Beacons: LNA/2′-<i>O</i>-methyl RNA Chimeric Probes for Imaging Dynamic mRNA Processes in Living Cells
Published 2012“…In order to spatially and temporally resolve dynamic steps involving RNA in cells, molecular beacons need to efficiently hybridize to their RNA targets. …”
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31398
Tiny Molecular Beacons: LNA/2′-<i>O</i>-methyl RNA Chimeric Probes for Imaging Dynamic mRNA Processes in Living Cells
Published 2012“…In order to spatially and temporally resolve dynamic steps involving RNA in cells, molecular beacons need to efficiently hybridize to their RNA targets. …”
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31399
Cell renewal and differentiation dynamics of progenitors in the striatum.
Published 2013“…Following MPTP administration the number of Sox-2<sup>+</sup> progenitors increases while the number of CR<sup>+</sup> cells that express Sox-2 is decreased. Possible mechanisms are A) MPTP favours gliogenesis from Sox2 progenitors at the expense of neurogenesis. …”
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31400
Tiny Molecular Beacons: LNA/2′-<i>O</i>-methyl RNA Chimeric Probes for Imaging Dynamic mRNA Processes in Living Cells
Published 2012“…In order to spatially and temporally resolve dynamic steps involving RNA in cells, molecular beacons need to efficiently hybridize to their RNA targets. …”