Search alternatives:
teer decrease » mean decrease (Expand Search), greater decrease (Expand Search)
nn decrease » _ decrease (Expand Search), mean decrease (Expand Search), gy decreased (Expand Search)
ns decrease » _ decrease (Expand Search), we decrease (Expand Search), use decreased (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
teer decrease » mean decrease (Expand Search), greater decrease (Expand Search)
nn decrease » _ decrease (Expand Search), mean decrease (Expand Search), gy decreased (Expand Search)
ns decrease » _ decrease (Expand Search), we decrease (Expand Search), use decreased (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
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6581
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6582
PEDOT as a Flexible Organic Electrode for a Thin Film Acoustic Energy Harvester
Published 2015“…The short-circuit current density (<i>J</i><sub>sc</sub>), open-circuit voltage (<i>V</i><sub>oc</sub>), and maximum power density (Pw) reached 50 mA/m<sup>2</sup>, 700 V, and 12.9 W/m<sup>2</sup> respectively. …”
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6583
PEDOT as a Flexible Organic Electrode for a Thin Film Acoustic Energy Harvester
Published 2015“…The short-circuit current density (<i>J</i><sub>sc</sub>), open-circuit voltage (<i>V</i><sub>oc</sub>), and maximum power density (Pw) reached 50 mA/m<sup>2</sup>, 700 V, and 12.9 W/m<sup>2</sup> respectively. …”
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6584
PEDOT as a Flexible Organic Electrode for a Thin Film Acoustic Energy Harvester
Published 2015“…The short-circuit current density (<i>J</i><sub>sc</sub>), open-circuit voltage (<i>V</i><sub>oc</sub>), and maximum power density (Pw) reached 50 mA/m<sup>2</sup>, 700 V, and 12.9 W/m<sup>2</sup> respectively. …”
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6585
PEDOT as a Flexible Organic Electrode for a Thin Film Acoustic Energy Harvester
Published 2015“…The short-circuit current density (<i>J</i><sub>sc</sub>), open-circuit voltage (<i>V</i><sub>oc</sub>), and maximum power density (Pw) reached 50 mA/m<sup>2</sup>, 700 V, and 12.9 W/m<sup>2</sup> respectively. …”
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6586
Response of a representative cell.
Published 2013“…Note that no S1 alone at positions a-d evoked spike response. (C) Raster and density plots for S2 alone and S1c-S2 sequence stimuli with SOAs of 30 and 50 ms chosen to illustrate response modulation. …”
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6587
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6588
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6589
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6590
Activity of miR-124 and miR-23a in NSC-derived neurons and astrocytes.
Published 2013“…(B–E) A significant decrease of GFP expression is observed in bdLV.miRT124-transduced neurons (βtubIII, MAP2) (<b>B, C</b>) and in bdLV.miRT23a-transduced astrocytes (GFAP) and immature glial cells (nestin) (<b>D, E</b>). …”
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6591
Table_3_Vitamin A deficiency in the MENA region: a 30-year analysis (1990–2019).DOCX
Published 2024“…The age-standardized prevalence [50.3% (−55.9 to −44.7)] and YLD [−49.3% (−55.3 to −43.1)] rates of VAD have significantly decreased since 1990. …”
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6592
Table_2_Vitamin A deficiency in the MENA region: a 30-year analysis (1990–2019).DOCX
Published 2024“…The age-standardized prevalence [50.3% (−55.9 to −44.7)] and YLD [−49.3% (−55.3 to −43.1)] rates of VAD have significantly decreased since 1990. …”
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6593
Table_1_Vitamin A deficiency in the MENA region: a 30-year analysis (1990–2019).DOCX
Published 2024“…The age-standardized prevalence [50.3% (−55.9 to −44.7)] and YLD [−49.3% (−55.3 to −43.1)] rates of VAD have significantly decreased since 1990. …”
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6594
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6595
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6596
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6597
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6598
Image_2_Vitamin A deficiency in the MENA region: a 30-year analysis (1990–2019).JPEG
Published 2024“…The age-standardized prevalence [50.3% (−55.9 to −44.7)] and YLD [−49.3% (−55.3 to −43.1)] rates of VAD have significantly decreased since 1990. …”
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6599
Image_1_Vitamin A deficiency in the MENA region: a 30-year analysis (1990–2019).JPEG
Published 2024“…The age-standardized prevalence [50.3% (−55.9 to −44.7)] and YLD [−49.3% (−55.3 to −43.1)] rates of VAD have significantly decreased since 1990. …”
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6600
S1 File -
Published 2024“…We used the CROPGRO-Soybean phenological model (CSPM) as a case study in combination with the Generalized Likelihood Uncertainty Estimation (GLUE) method. …”