Showing 1,141 - 1,160 results of 21,513 for search '(( a ((teer decrease) OR (linear decrease)) ) OR ( a ((greater decrease) OR (largest decrease)) ))', query time: 0.65s Refine Results
  1. 1141
  2. 1142

    Transient dynamics and IFA for piecewise linear external drive. by Natalie Schieferstein (17996519)

    Published 2024
    “…Right: linearly decreasing drive with slope <i>m</i> = −0.4/ms. …”
  3. 1143

    Novel Additive Manufactured Multielectrode Electrochemical Cell with Honeycomb Inspired Design for the Detection of Methyl Parathion in Honey Samples by Bruno C. Janegitz (10381342)

    Published 2023
    “…Under optimized parameters, the proposed sensor presented a linear range between 0.85 and 19.6 μmol L<sup>–1</sup>, with a limit of detection of 0.20 μmol L<sup>–1</sup>. …”
  4. 1144
  5. 1145
  6. 1146
  7. 1147

    Multiple C–H Activations of Linear Alkanes by Various (η<sup>5</sup>‑Cyclopentadienyl)W(NO)(CH<sub>2</sub>CMe<sub>3</sub>)<sub>2</sub> Complexes by Monica V. Shree (4092343)

    Published 2017
    “…Due to steric factors the most abundant isomer in all cases has a monosubstituted allyl ligand in the endo orientation with the alkyl end distal to the nitrosyl ligand. …”
  8. 1148
  9. 1149

    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. …”
  10. 1150

    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. …”
  11. 1151

    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. …”
  12. 1152

    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. …”
  13. 1153

    Assessment of Urban Heat Islands Based on the Relationship Between Land Surface Temperature and Land Use/Land Cover in Greater Doha by Siddiqui, Simil Amir

    Published 2020
    “…Transect profiles showed positive correlation between NDBI and LST and a negative correlation between NDVI and LST.…”
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  14. 1154

    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. …”
  15. 1155

    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. …”
  16. 1156

    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. …”
  17. 1157

    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. …”
  18. 1158

    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. …”
  19. 1159

    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. …”
  20. 1160

    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. …”