Showing 65,101 - 65,120 results of 104,718 for search '(( 50 we decrease ) OR ( 5 ((wt decrease) OR (((a decrease) OR (mean decrease)))) ))', query time: 1.73s Refine Results
  1. 65101

    Data_Sheet_2_Phylogeographic Assessment Reveals Geographic Sources of HIV-1 Dissemination Among Men Who Have Sex With Men in Kenya.docx by George M. Nduva (12216416)

    Published 2022
    “…Maximum-likelihood (ML) phylogenetics and Bayesian inference were used to determine HIV-1 clusters, evolutionary dynamics, and virus migration rates between geographic regions. HIV-1 sub-subtype A1 (72.0%) was most common followed by subtype D (11.0%), unique recombinant forms (8.9%), subtype C (5.9%), CRF 21A2D (0.8%), subtype G (0.8%), CRF 16A2D (0.3%), and subtype B (0.3%). …”
  2. 65102

    Table 3_TSG-6 promotes healing of critical-sized bone defects in mice.xlsx by Oliver Küppers (22742732)

    Published 2025
    “…To investigate the in vivo relevance, we assessed the effects of locally delivered recombinant TSG-6 (rTSG-6), embedded in a collagen gel, on bone regeneration in a 1.5 mm critical-sized femoral defect model in male C57BL/6J mice. …”
  3. 65103

    Data Sheet 2_TSG-6 promotes healing of critical-sized bone defects in mice.pdf by Oliver Küppers (22742732)

    Published 2025
    “…To investigate the in vivo relevance, we assessed the effects of locally delivered recombinant TSG-6 (rTSG-6), embedded in a collagen gel, on bone regeneration in a 1.5 mm critical-sized femoral defect model in male C57BL/6J mice. …”
  4. 65104

    Data Sheet 1_The impact of architectural modifications on relative resistance to fluid flow in ventricular catheters.pdf by Rajesh Kumar Madhavan (20634731)

    Published 2025
    “…</p>Results<p>With increasing hole and lumen diameter, we found a significant decrease in overall catheter relative resistance using DIH<sub>2</sub>0 (P < 0.001 and P < 0.002 respectively, n = 5). …”
  5. 65105

    Toward Controlling Water Oxidation Catalysis: Tunable Activity of Ruthenium Complexes with Axial Imidazole/DMSO Ligands by Lei Wang (6656)

    Published 2012
    “…The measured catalytic activities and kinetics of complex <b>1</b>–<b>6</b> revealed details about an important structure–activity relation: the connection between the nature of axial ligands in the combination and either the increase or decrease of the catalytic activity. In particular, an axial DMSO group substantially increases the turnover frequency of WOCs reported in the article, with the ruthenium-complex having one axial 5-bromo-N-methyl-imidazole and one axial DMSO (<b>4</b>), we have obtained a high initial turnover frequency of ∼180 s<sup>–1</sup>. …”
  6. 65106

    Loss of Fnip1 synergizes with loss of TSC1 resulting in accelerated PKD and mTOR activation. by Ryan Centini (5390768)

    Published 2018
    “…(D) Immunoblots of proteins isolated from whole kidney lysates derived from 5 week-old wildtype, <i>Tsc1</i><sup><i>-/-</i></sup>, and <i>Tsc1</i><sup><i>-/-</i></sup><i>Fnip1</i><sup><i>-/-</i></sup> blots showing increased p-Erk, p-S6R, and p-4E-BP in <i>Tsc1</i><sup><i>-/-</i></sup> <i>Fnip1</i><sup><i>-/-</i></sup> kidney tissue compared to <i>Tsc1</i><sup><i>-/-</i></sup> and WT mice indicating hyperactivation of the mTORC1 and Erk pathways. p-AMPK is decreased in double null mice relative to <i>Tsc1</i><sup><i>-/-</i></sup> and WT mice, suggesting decreased AMPK activation. …”
  7. 65107

    Image_2_Multiomic Fermentation Using Chemically Defined Synthetic Hydrolyzates Revealed Multiple Effects of Lignocellulose-Derived Inhibitors on Cell Physiology and Xylose Utilizat... by Yaoping Zhang (629825)

    Published 2019
    “…<p>Utilization of both C5 and C6 sugars to produce biofuels and bioproducts is a key goal for the development of integrated lignocellulosic biorefineries. …”
  8. 65108

    Table_3_Multiomic Fermentation Using Chemically Defined Synthetic Hydrolyzates Revealed Multiple Effects of Lignocellulose-Derived Inhibitors on Cell Physiology and Xylose Utilizat... by Yaoping Zhang (629825)

    Published 2019
    “…<p>Utilization of both C5 and C6 sugars to produce biofuels and bioproducts is a key goal for the development of integrated lignocellulosic biorefineries. …”
  9. 65109

    Table_1_Multiomic Fermentation Using Chemically Defined Synthetic Hydrolyzates Revealed Multiple Effects of Lignocellulose-Derived Inhibitors on Cell Physiology and Xylose Utilizat... by Yaoping Zhang (629825)

    Published 2019
    “…<p>Utilization of both C5 and C6 sugars to produce biofuels and bioproducts is a key goal for the development of integrated lignocellulosic biorefineries. …”
  10. 65110

    Table_2_Multiomic Fermentation Using Chemically Defined Synthetic Hydrolyzates Revealed Multiple Effects of Lignocellulose-Derived Inhibitors on Cell Physiology and Xylose Utilizat... by Yaoping Zhang (629825)

    Published 2019
    “…<p>Utilization of both C5 and C6 sugars to produce biofuels and bioproducts is a key goal for the development of integrated lignocellulosic biorefineries. …”
  11. 65111

    Table_6_Multiomic Fermentation Using Chemically Defined Synthetic Hydrolyzates Revealed Multiple Effects of Lignocellulose-Derived Inhibitors on Cell Physiology and Xylose Utilizat... by Yaoping Zhang (629825)

    Published 2019
    “…<p>Utilization of both C5 and C6 sugars to produce biofuels and bioproducts is a key goal for the development of integrated lignocellulosic biorefineries. …”
  12. 65112

    Table_4_Multiomic Fermentation Using Chemically Defined Synthetic Hydrolyzates Revealed Multiple Effects of Lignocellulose-Derived Inhibitors on Cell Physiology and Xylose Utilizat... by Yaoping Zhang (629825)

    Published 2019
    “…<p>Utilization of both C5 and C6 sugars to produce biofuels and bioproducts is a key goal for the development of integrated lignocellulosic biorefineries. …”
  13. 65113

    Image_1_Multiomic Fermentation Using Chemically Defined Synthetic Hydrolyzates Revealed Multiple Effects of Lignocellulose-Derived Inhibitors on Cell Physiology and Xylose Utilizat... by Yaoping Zhang (629825)

    Published 2019
    “…<p>Utilization of both C5 and C6 sugars to produce biofuels and bioproducts is a key goal for the development of integrated lignocellulosic biorefineries. …”
  14. 65114
  15. 65115
  16. 65116
  17. 65117

    DataSheet_1_Novel insights into chloroplast genome evolution in the green macroalgal genus Ulva (Ulvophyceae, Chlorophyta).pdf by Feng Liu (72874)

    Published 2023
    “…Ulva plastome evolution reflects the strong selection pressure driving the compactness of genome organization and the decrease of overall GC composition. The overall plastome sequences including canonical genes, introns, derived foreign sequences and non-coding regions show a synergetic decrease in GC content at varying degrees. …”
  18. 65118

    DataSheet_4_Novel insights into chloroplast genome evolution in the green macroalgal genus Ulva (Ulvophyceae, Chlorophyta).pdf by Feng Liu (72874)

    Published 2023
    “…Ulva plastome evolution reflects the strong selection pressure driving the compactness of genome organization and the decrease of overall GC composition. The overall plastome sequences including canonical genes, introns, derived foreign sequences and non-coding regions show a synergetic decrease in GC content at varying degrees. …”
  19. 65119

    DataSheet_2_Novel insights into chloroplast genome evolution in the green macroalgal genus Ulva (Ulvophyceae, Chlorophyta).pdf by Feng Liu (72874)

    Published 2023
    “…Ulva plastome evolution reflects the strong selection pressure driving the compactness of genome organization and the decrease of overall GC composition. The overall plastome sequences including canonical genes, introns, derived foreign sequences and non-coding regions show a synergetic decrease in GC content at varying degrees. …”
  20. 65120

    DataSheet_3_Novel insights into chloroplast genome evolution in the green macroalgal genus Ulva (Ulvophyceae, Chlorophyta).pdf by Feng Liu (72874)

    Published 2023
    “…Ulva plastome evolution reflects the strong selection pressure driving the compactness of genome organization and the decrease of overall GC composition. The overall plastome sequences including canonical genes, introns, derived foreign sequences and non-coding regions show a synergetic decrease in GC content at varying degrees. …”