Showing 1,061 - 1,080 results of 17,811 for search '(( a ((linear decrease) OR (teer decrease)) ) OR ( a ((largest decrease) OR (larger decrease)) ))', query time: 0.65s Refine Results
  1. 1061

    Image_1_Direct Current Stimulation Disrupts Endothelial Glycocalyx and Tight Junctions of the Blood-Brain Barrier in vitro.tif by Yifan Xia (11331264)

    Published 2021
    “…We found disrupted EG and ZO-1 when P to dextran-70k was increased and TEER was decreased by the DCS. To further investigate the cellular signaling mechanism of DCS on the BBB permeability, we pretreated the in vitro BBB with a nitric oxide synthase (NOS) inhibitor, L-NMMA. …”
  2. 1062

    Image_4_Direct Current Stimulation Disrupts Endothelial Glycocalyx and Tight Junctions of the Blood-Brain Barrier in vitro.tif by Yifan Xia (11331264)

    Published 2021
    “…We found disrupted EG and ZO-1 when P to dextran-70k was increased and TEER was decreased by the DCS. To further investigate the cellular signaling mechanism of DCS on the BBB permeability, we pretreated the in vitro BBB with a nitric oxide synthase (NOS) inhibitor, L-NMMA. …”
  3. 1063

    Image_2_Direct Current Stimulation Disrupts Endothelial Glycocalyx and Tight Junctions of the Blood-Brain Barrier in vitro.tif by Yifan Xia (11331264)

    Published 2021
    “…We found disrupted EG and ZO-1 when P to dextran-70k was increased and TEER was decreased by the DCS. To further investigate the cellular signaling mechanism of DCS on the BBB permeability, we pretreated the in vitro BBB with a nitric oxide synthase (NOS) inhibitor, L-NMMA. …”
  4. 1064

    Image_3_Direct Current Stimulation Disrupts Endothelial Glycocalyx and Tight Junctions of the Blood-Brain Barrier in vitro.tif by Yifan Xia (11331264)

    Published 2021
    “…We found disrupted EG and ZO-1 when P to dextran-70k was increased and TEER was decreased by the DCS. To further investigate the cellular signaling mechanism of DCS on the BBB permeability, we pretreated the in vitro BBB with a nitric oxide synthase (NOS) inhibitor, L-NMMA. …”
  5. 1065

    Data_Sheet_2_Reducing the Number of Individuals to Monitor Shoaling Fish Systems – Application of the Shannon Entropy to Construct a Biological Warning System Model.DOCX by Harkaitz Eguiraun (5183036)

    Published 2018
    “…Two different experiments were performed: (i) one starting with 50 fish and decreasing to 25, 13, and 1 fish, and (ii) a second experiment starting with one fish, adding one new fish per day during 5 days, ending up with five fish in the tank. …”
  6. 1066

    Data_Sheet_6_Reducing the Number of Individuals to Monitor Shoaling Fish Systems – Application of the Shannon Entropy to Construct a Biological Warning System Model.DOCX by Harkaitz Eguiraun (5183036)

    Published 2018
    “…Two different experiments were performed: (i) one starting with 50 fish and decreasing to 25, 13, and 1 fish, and (ii) a second experiment starting with one fish, adding one new fish per day during 5 days, ending up with five fish in the tank. …”
  7. 1067

    Data_Sheet_8_Reducing the Number of Individuals to Monitor Shoaling Fish Systems – Application of the Shannon Entropy to Construct a Biological Warning System Model.DOCX by Harkaitz Eguiraun (5183036)

    Published 2018
    “…Two different experiments were performed: (i) one starting with 50 fish and decreasing to 25, 13, and 1 fish, and (ii) a second experiment starting with one fish, adding one new fish per day during 5 days, ending up with five fish in the tank. …”
  8. 1068

    Data_Sheet_4_Reducing the Number of Individuals to Monitor Shoaling Fish Systems – Application of the Shannon Entropy to Construct a Biological Warning System Model.DOCX by Harkaitz Eguiraun (5183036)

    Published 2018
    “…Two different experiments were performed: (i) one starting with 50 fish and decreasing to 25, 13, and 1 fish, and (ii) a second experiment starting with one fish, adding one new fish per day during 5 days, ending up with five fish in the tank. …”
  9. 1069

    Data_Sheet_1_Reducing the Number of Individuals to Monitor Shoaling Fish Systems – Application of the Shannon Entropy to Construct a Biological Warning System Model.DOCX by Harkaitz Eguiraun (5183036)

    Published 2018
    “…Two different experiments were performed: (i) one starting with 50 fish and decreasing to 25, 13, and 1 fish, and (ii) a second experiment starting with one fish, adding one new fish per day during 5 days, ending up with five fish in the tank. …”
  10. 1070

    Data_Sheet_3_Reducing the Number of Individuals to Monitor Shoaling Fish Systems – Application of the Shannon Entropy to Construct a Biological Warning System Model.DOCX by Harkaitz Eguiraun (5183036)

    Published 2018
    “…Two different experiments were performed: (i) one starting with 50 fish and decreasing to 25, 13, and 1 fish, and (ii) a second experiment starting with one fish, adding one new fish per day during 5 days, ending up with five fish in the tank. …”
  11. 1071

    Data_Sheet_5_Reducing the Number of Individuals to Monitor Shoaling Fish Systems – Application of the Shannon Entropy to Construct a Biological Warning System Model.ZIP by Harkaitz Eguiraun (5183036)

    Published 2018
    “…Two different experiments were performed: (i) one starting with 50 fish and decreasing to 25, 13, and 1 fish, and (ii) a second experiment starting with one fish, adding one new fish per day during 5 days, ending up with five fish in the tank. …”
  12. 1072

    Data_Sheet_7_Reducing the Number of Individuals to Monitor Shoaling Fish Systems – Application of the Shannon Entropy to Construct a Biological Warning System Model.DOCX by Harkaitz Eguiraun (5183036)

    Published 2018
    “…Two different experiments were performed: (i) one starting with 50 fish and decreasing to 25, 13, and 1 fish, and (ii) a second experiment starting with one fish, adding one new fish per day during 5 days, ending up with five fish in the tank. …”
  13. 1073
  14. 1074

    Novel Lanthanide-Based Metal–Organic Framework Isomer as a Double Ratiometric Fluorescent Probe for Vanillymandelic Acid by Wenwen Fan (7479152)

    Published 2023
    “…Owing to the reduced energy gap [Δ<i>E</i> (S<sub>1</sub> – T<sub>1</sub>)], the antenna effect was hampered and luminescence of Eu<sup>3+</sup> ions also decreased. The developed double ratiometric (<i>I</i><sub>615nm</sub>/<i>I</i><sub>475nm</sub>, <i>I</i><sub>390nm</sub>/<i>I</i><sub>475nm</sub>) fluorescence sensors based on QBA-Eu and QBA-Gd<sub>0.875</sub>Eu<sub>0.125</sub> possessed the advantages of fast response (4 min), low detection limits (0.58 and 0.51; 0.22 and 0.31 μM), and wide linear ranges (2–100 and 2–80 μM), which met the requirements of pheochromocytoma diagnosis. …”
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