Showing 19,541 - 19,560 results of 19,624 for search '(( 10 ((teer decrease) OR (nn decrease)) ) OR ( 100 ((we decrease) OR (a decrease)) ))', query time: 0.87s Refine Results
  1. 19541

    Arl2-K71R mutant causes mitochondrial fragmentation and has no effect on microtubule regrowth. by Dongliang Ma (19415424)

    Published 2024
    “…<p>(<b>A</b>) Immunostaining micrographs showing decreased neural complexities of primary cortical neurons (labeled by Map2) in vitro in overexpression of Arl2<sup>T30N</sup> and Arl2<sup>Q70L</sup> mutants. …”
  2. 19542

    Phenotypic characterization of <i>CsIVP</i>-RNAi transgenic plants. by Shuangshuang Yan (798064)

    Published 2020
    “…Scale bars represent 2 cm in panels A, D–J, and P; 2 mm in panel K; 200 μm in panels L–O; 50 μm in panels L’–O’; and 100 μm in panels R–U. …”
  3. 19543

    Living 3,4-Polymerization of Isoprene by Cationic Rare Earth Metal Alkyl Complexes Bearing Iminoamido Ligands by Gaixia Du (1631482)

    Published 2011
    “…The sterically crowded complexes <b>1</b>−<b>3</b> give a mixture of 3,4- and <i>trans</i>-1,4-polyisoprenes (3,4-selectivities: 48−82%, <i>trans</i>-1,4-selectivities: 50−17%), whereas the less sterically demanding complexes <b>4</b>−<b>6</b> show high 3,4-selectivities (3,4-selectivities: 90−100%). …”
  4. 19544

    Loss of MLL1 in adult mice. by Neha Goveas (11790822)

    Published 2021
    “…<p>(A) Giemsa-stained sections from the femur of <i>Mll1</i><sup><i>FC/+; RC/+</i></sup> and <i>Mll1</i><sup><i>FC/FC; RC/+</i></sup> mice. …”
  5. 19545

    Supplementary materials: US cost–effectiveness analysis of apixaban compared with warfarin, dabigatran and rivaroxaban for nonvalvular atrial fibrillation, focusing on equal value... by Nipun Atreja (20352417)

    Published 2024
    “…Cost–effectiveness was assessed based on a willingness-to-pay threshold of $100,000 per evLY gained (evLYG) or HYT gained (HYTG). …”
  6. 19546

    CG8093 and CG6277 are novel lipases in the gut activated by AKT/FOXO in <i>dcerk<sup>1</sup></i>. by Niraj K. Nirala (424266)

    Published 2013
    “…<p>(A). Relative TAG level in ad libitum fed <i>dcerk<sup>1</sup></i> is 80% of <i>w<sup>1118</sup></i> and increases to 120% when AKT is reduced. …”
  7. 19547

    Silencing of the body wall muscles caused pumping inhibition in addition to reduction in locomotion speed and elongation of the body length in <i>C</i>. <i>elegans</i>. by Megumi Takahashi (4720299)

    Published 2017
    “…(B) The change in body length during the trials is shown in (A). The body length was normalized so that the average body length during the 1 min period before starting illumination was 100%. …”
  8. 19548
  9. 19549

    Sulfates of the Refractory Metals: Crystal Structure and Thermal Behavior of Nb<sub>2</sub>O<sub>2</sub>(SO<sub>4</sub>)<sub>3</sub>, MoO<sub>2</sub>(SO<sub>4</sub>), WO(SO<sub>4</... by Ulf Betke (2233432)

    Published 2011
    “…In MoO<sub>2</sub>(SO<sub>4</sub>) (monoclinic, <i>I</i>2<i>/a, a</i> = 8.5922(6) Å, <i>b</i> = 12.2951(6) Å, <i>c</i> = 25.671(2) Å, β = 94.567(9)°, <i>V</i> = 2703.4(3) Å<sup>3</sup>, <i>Z</i> = 24) [MoO<sub>2</sub>] units are connected through sulfate ions to a three-dimensional network, which is pervaded by channels along [100] accommodating the terminal oxide ligands. …”
  10. 19550

    Sulfates of the Refractory Metals: Crystal Structure and Thermal Behavior of Nb<sub>2</sub>O<sub>2</sub>(SO<sub>4</sub>)<sub>3</sub>, MoO<sub>2</sub>(SO<sub>4</sub>), WO(SO<sub>4</... by Ulf Betke (2233432)

    Published 2011
    “…In MoO<sub>2</sub>(SO<sub>4</sub>) (monoclinic, <i>I</i>2<i>/a, a</i> = 8.5922(6) Å, <i>b</i> = 12.2951(6) Å, <i>c</i> = 25.671(2) Å, β = 94.567(9)°, <i>V</i> = 2703.4(3) Å<sup>3</sup>, <i>Z</i> = 24) [MoO<sub>2</sub>] units are connected through sulfate ions to a three-dimensional network, which is pervaded by channels along [100] accommodating the terminal oxide ligands. …”
  11. 19551

    Sulfates of the Refractory Metals: Crystal Structure and Thermal Behavior of Nb<sub>2</sub>O<sub>2</sub>(SO<sub>4</sub>)<sub>3</sub>, MoO<sub>2</sub>(SO<sub>4</sub>), WO(SO<sub>4</... by Ulf Betke (2233432)

    Published 2011
    “…In MoO<sub>2</sub>(SO<sub>4</sub>) (monoclinic, <i>I</i>2<i>/a, a</i> = 8.5922(6) Å, <i>b</i> = 12.2951(6) Å, <i>c</i> = 25.671(2) Å, β = 94.567(9)°, <i>V</i> = 2703.4(3) Å<sup>3</sup>, <i>Z</i> = 24) [MoO<sub>2</sub>] units are connected through sulfate ions to a three-dimensional network, which is pervaded by channels along [100] accommodating the terminal oxide ligands. …”
  12. 19552

    Sulfates of the Refractory Metals: Crystal Structure and Thermal Behavior of Nb<sub>2</sub>O<sub>2</sub>(SO<sub>4</sub>)<sub>3</sub>, MoO<sub>2</sub>(SO<sub>4</sub>), WO(SO<sub>4</... by Ulf Betke (2233432)

    Published 2011
    “…In MoO<sub>2</sub>(SO<sub>4</sub>) (monoclinic, <i>I</i>2<i>/a, a</i> = 8.5922(6) Å, <i>b</i> = 12.2951(6) Å, <i>c</i> = 25.671(2) Å, β = 94.567(9)°, <i>V</i> = 2703.4(3) Å<sup>3</sup>, <i>Z</i> = 24) [MoO<sub>2</sub>] units are connected through sulfate ions to a three-dimensional network, which is pervaded by channels along [100] accommodating the terminal oxide ligands. …”
  13. 19553

    Sulfates of the Refractory Metals: Crystal Structure and Thermal Behavior of Nb<sub>2</sub>O<sub>2</sub>(SO<sub>4</sub>)<sub>3</sub>, MoO<sub>2</sub>(SO<sub>4</sub>), WO(SO<sub>4</... by Ulf Betke (2233432)

    Published 2011
    “…In MoO<sub>2</sub>(SO<sub>4</sub>) (monoclinic, <i>I</i>2<i>/a, a</i> = 8.5922(6) Å, <i>b</i> = 12.2951(6) Å, <i>c</i> = 25.671(2) Å, β = 94.567(9)°, <i>V</i> = 2703.4(3) Å<sup>3</sup>, <i>Z</i> = 24) [MoO<sub>2</sub>] units are connected through sulfate ions to a three-dimensional network, which is pervaded by channels along [100] accommodating the terminal oxide ligands. …”
  14. 19554

    Loss of <i>Lhx6</i> compromises dental mesenchymal proliferation in the furcation development region. by Jinzhi He (10156964)

    Published 2021
    “…Black dotted lines indicate the border between the dental epithelium and dental mesenchyme. Scale bar:100μm in A, B, D, G, K; 20μm in E, F, H, I, L and M. …”
  15. 19555

    PAK inhibition induces apoptosis via BAD and blocks the progression of BRAF mutant melanomas. by Rolando Ruiz (4285165)

    Published 2017
    “…<p>(A) FRAX597 inhibits PAK1 activation and induces apoptosis in BRAF<sup>V600E</sup> melanoma cell lines. …”
  16. 19556

    Photoluminescent and Slow Magnetic Relaxation Studies on Lanthanide(III)-2,5-pyrazinedicarboxylate Frameworks by Maria Vanda Marinho (2724424)

    Published 2017
    “…In these compounds, τ<sup>–1</sup> decreases with decreasing temperature at any magnetic field, but no Arrhenius law can simulate such a dependence in all the temperature range. …”
  17. 19557

    Photoluminescent and Slow Magnetic Relaxation Studies on Lanthanide(III)-2,5-pyrazinedicarboxylate Frameworks by Maria Vanda Marinho (2724424)

    Published 2017
    “…In these compounds, τ<sup>–1</sup> decreases with decreasing temperature at any magnetic field, but no Arrhenius law can simulate such a dependence in all the temperature range. …”
  18. 19558

    Photoluminescent and Slow Magnetic Relaxation Studies on Lanthanide(III)-2,5-pyrazinedicarboxylate Frameworks by Maria Vanda Marinho (2724424)

    Published 2017
    “…In these compounds, τ<sup>–1</sup> decreases with decreasing temperature at any magnetic field, but no Arrhenius law can simulate such a dependence in all the temperature range. …”
  19. 19559

    Photoluminescent and Slow Magnetic Relaxation Studies on Lanthanide(III)-2,5-pyrazinedicarboxylate Frameworks by Maria Vanda Marinho (2724424)

    Published 2017
    “…In these compounds, τ<sup>–1</sup> decreases with decreasing temperature at any magnetic field, but no Arrhenius law can simulate such a dependence in all the temperature range. …”
  20. 19560

    Photoluminescent and Slow Magnetic Relaxation Studies on Lanthanide(III)-2,5-pyrazinedicarboxylate Frameworks by Maria Vanda Marinho (2724424)

    Published 2017
    “…In these compounds, τ<sup>–1</sup> decreases with decreasing temperature at any magnetic field, but no Arrhenius law can simulate such a dependence in all the temperature range. …”