Showing 15,721 - 15,740 results of 104,728 for search '(( 5 ((a decrease) OR (mean decrease)) ) OR ( a ((fold decrease) OR (nn decrease)) ))', query time: 1.17s Refine Results
  1. 15721

    Presentation_1.PDF by Suborno Jati (5073956)

    Published 2018
    “…We found that during the initial hours of infection with PA and SP, there is decrease in the steady state levels of the Wnt5A protein in macrophages. …”
  2. 15722

    Primer sequences and parameters. by José David Nuñez-Ríos (18823719)

    Published 2024
    “…We observed a decrease in cell migration and an increase in transepithelial electrical resistance and cell markers, suggesting a role in maintaining a mesenchymal phenotype. …”
  3. 15723

    Enriched pathways for microarray data. by José David Nuñez-Ríos (18823719)

    Published 2024
    “…We observed a decrease in cell migration and an increase in transepithelial electrical resistance and cell markers, suggesting a role in maintaining a mesenchymal phenotype. …”
  4. 15724

    Enriched REACTOME pathways for microarray data. by José David Nuñez-Ríos (18823719)

    Published 2024
    “…We observed a decrease in cell migration and an increase in transepithelial electrical resistance and cell markers, suggesting a role in maintaining a mesenchymal phenotype. …”
  5. 15725
  6. 15726

    Hydroxyl Defects in LiFePO<sub>4</sub> Cathode Material: DFT+<i>U</i> and an Experimental Study by Dmitry A. Aksyonov (4918594)

    Published 2021
    “…The P occupancy decrease is explained by the formation of hydrogarnet-like P/4H and P/5H defects, which have the lowest formation energies among all considered OH defects. …”
  7. 15727
  8. 15728

    Computational model of WDR neuron with ASIC1a channel parameters and a synaptic cleft acidification system. by Magda Chafaï (15307098)

    Published 2023
    “…<b><i>E</i></b>, Simulation windup curves obtained without (control, no ASIC, black dots) and with moderate heteromeric ASIC1a conductances <i><u>g</u></i> is 0.4nS, 0.8nS, 1.5nS and 3nS, green squares). …”
  9. 15729
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  11. 15731
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  13. 15733
  14. 15734
  15. 15735

    Turning Flexibility into Rigidity: Stepwise Locking of Interpenetrating Networks in a MOF Crystal through Click Reaction by Damian Jędrzejowski (3130023)

    Published 2021
    “…In this work, for the first time, we utilize inverse-electron demand Diels–Alder (iEDDA) modification to control the structural flexibility and porosity of an open framework material. We selected a series of dienophiles with increasing bulkiness including ethyl vinyl ether (<b>eve</b>), cyclohexene (<b>chx</b>), norbornene (<b>nor</b>), and 5-norbornene-2-methanol (<b>noh</b>) to modify a tetrazine-based linker (3,6-dipyridyl-1,2,4,5-tetrazine, <b>dpt</b>) incorporated in a unique doubly interpenetrated 3D hybrid MOF–HOF porous material (HOF, hydrogen-bonded organic framework), {[Cd<sub>2</sub>(coh)<sub>2</sub>(dpt)<sub>2</sub>]·guests}<sub><i>n</i></sub> (<b>JUK-20</b>). …”
  16. 15736

    Turning Flexibility into Rigidity: Stepwise Locking of Interpenetrating Networks in a MOF Crystal through Click Reaction by Damian Jędrzejowski (3130023)

    Published 2021
    “…In this work, for the first time, we utilize inverse-electron demand Diels–Alder (iEDDA) modification to control the structural flexibility and porosity of an open framework material. We selected a series of dienophiles with increasing bulkiness including ethyl vinyl ether (<b>eve</b>), cyclohexene (<b>chx</b>), norbornene (<b>nor</b>), and 5-norbornene-2-methanol (<b>noh</b>) to modify a tetrazine-based linker (3,6-dipyridyl-1,2,4,5-tetrazine, <b>dpt</b>) incorporated in a unique doubly interpenetrated 3D hybrid MOF–HOF porous material (HOF, hydrogen-bonded organic framework), {[Cd<sub>2</sub>(coh)<sub>2</sub>(dpt)<sub>2</sub>]·guests}<sub><i>n</i></sub> (<b>JUK-20</b>). …”
  17. 15737

    Turning Flexibility into Rigidity: Stepwise Locking of Interpenetrating Networks in a MOF Crystal through Click Reaction by Damian Jędrzejowski (3130023)

    Published 2021
    “…In this work, for the first time, we utilize inverse-electron demand Diels–Alder (iEDDA) modification to control the structural flexibility and porosity of an open framework material. We selected a series of dienophiles with increasing bulkiness including ethyl vinyl ether (<b>eve</b>), cyclohexene (<b>chx</b>), norbornene (<b>nor</b>), and 5-norbornene-2-methanol (<b>noh</b>) to modify a tetrazine-based linker (3,6-dipyridyl-1,2,4,5-tetrazine, <b>dpt</b>) incorporated in a unique doubly interpenetrated 3D hybrid MOF–HOF porous material (HOF, hydrogen-bonded organic framework), {[Cd<sub>2</sub>(coh)<sub>2</sub>(dpt)<sub>2</sub>]·guests}<sub><i>n</i></sub> (<b>JUK-20</b>). …”
  18. 15738

    Turning Flexibility into Rigidity: Stepwise Locking of Interpenetrating Networks in a MOF Crystal through Click Reaction by Damian Jędrzejowski (3130023)

    Published 2021
    “…In this work, for the first time, we utilize inverse-electron demand Diels–Alder (iEDDA) modification to control the structural flexibility and porosity of an open framework material. We selected a series of dienophiles with increasing bulkiness including ethyl vinyl ether (<b>eve</b>), cyclohexene (<b>chx</b>), norbornene (<b>nor</b>), and 5-norbornene-2-methanol (<b>noh</b>) to modify a tetrazine-based linker (3,6-dipyridyl-1,2,4,5-tetrazine, <b>dpt</b>) incorporated in a unique doubly interpenetrated 3D hybrid MOF–HOF porous material (HOF, hydrogen-bonded organic framework), {[Cd<sub>2</sub>(coh)<sub>2</sub>(dpt)<sub>2</sub>]·guests}<sub><i>n</i></sub> (<b>JUK-20</b>). …”
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  20. 15740