Showing 64,301 - 64,320 results of 101,390 for search '(( 5 ((wt decrease) OR (we decrease)) ) OR ( 5 ((a decrease) OR (mean decrease)) ))', query time: 1.96s Refine Results
  1. 64301

    Image_1_Tremor supression following treatment with MRgFUS: skull density ratio consistency and degree of posterior dentatorubrothalamic tract lesioning predicts long-term clinical... by Kain Kyle (15350116)

    Published 2023
    “…Combined pre-treatment CRST (mean: 60.7 ± 17.3) and HTS (mean: 19.2 ± 5.7) improved by an average of 45.5 and 62.6%, respectively. …”
  2. 64302

    Image_1_Tremor suppression following treatment with MRgFUS: skull density ratio consistency and degree of posterior dentatorubrothalamic tract lesioning predicts long-term clinical... by Kain Kyle (15350116)

    Published 2023
    “…Combined pre-treatment CRST (mean: 60.7 ± 17.3) and HTS (mean: 19.2 ± 5.7) improved by an average of 45.5 and 62.6%, respectively. …”
  3. 64303

    DataSheet1_Baseline of Surface and Column-Integrated Aerosol Loadings in the Pearl River Delta Region, China.DOCX by Xuehua Fan (12688418)

    Published 2022
    “…Significant decreases in PM<sub>10</sub>, PM<sub>2.5</sub>, and PM<sub>1</sub> mass concentrations are observed with magnitudes up to −2.13, −1.82, and −1.37 yr<sup>−1</sup>, respectively, at a 95% confidence level. …”
  4. 64304

    <b>IER3IP1 mutations cause neonatal diabetes due to impaired proinsulin trafficking</b> by Hossam Montaser (10017443)

    Published 2024
    “…Using CRISPR-Cas9, we generated two distinct <i>IER3IP1</i>-mutant human embryonic stem cell lines: a homozygous knock-in model of a patient mutation (IER3IP1<sup>V21G</sup>), and a knockout model (IER3IP1<sup>-/-</sup>). …”
  5. 64305

    Data_Sheet_1_Genome-Wide Characterization of Ascorbate Peroxidase Gene Family in Peanut (Arachis hypogea L.) Revealed Their Crucial Role in Growth and Multiple Stress Tolerance.ZIP by Ali Raza (3558965)

    Published 2022
    “…<p>Ascorbate peroxidase (APX), an important antioxidant enzyme, plays a significant role in ROS scavenging by catalyzing the decrease of hydrogen peroxide under various environmental stresses. …”
  6. 64306

    Data_Sheet_1_Genome-Wide Characterization of Ascorbate Peroxidase Gene Family in Peanut (Arachis hypogea L.) Revealed Their Crucial Role in Growth and Multiple Stress Tolerance.ZIP by Ali Raza (3558965)

    Published 2022
    “…<p>Ascorbate peroxidase (APX), an important antioxidant enzyme, plays a significant role in ROS scavenging by catalyzing the decrease of hydrogen peroxide under various environmental stresses. …”
  7. 64307

    DataSheet1_DNA Condensation Triggered by the Synergistic Self-Assembly of Tetraphenylethylene-Viologen Aggregates and CT-DNA.pdf by Sajena Kanangat Saraswathi (11169489)

    Published 2021
    “…Decrease in the hydrodynamic size, increase in the zeta potential value with the addition of TPE-V molecules to CT-DNA, failure of TPE-V/cucurbit(8)uril complex to condense CT-DNA, and the enhanced DNA condensation ability of TPE-V2 with two viologen units compared to TPE-V1 with a single viologen unit confirm the importance of positively charged viologen units in the DNA condensation process. …”
  8. 64308
  9. 64309

    Clinical and epidemiological profile of patients with hypertensive peak after Ahmed glaucoma valve implant by Flávia da Silva Vilas-Boas (5910116)

    Published 2018
    “…After 3 months of surgery the mean IOP was 16.5mmHg, with use of 1.86 of medications. …”
  10. 64310

    Monitoring intracellular K<sup>+</sup> concentrations with GINKO2 in <i>E</i>. <i>coli</i> grown in K<sup>+</sup>-depleted media. by Sheng-Yi Wu (10887927)

    Published 2022
    “…<p>(A) <i>E</i>. <i>coli</i> are capable of accumulating K<sup>+</sup> to a higher concentration than the environment. …”
  11. 64311

    Examples of CFIR domains adapted to our research. by Ricardo Castillo-Neyra (682311)

    Published 2025
    “…With these stakeholders we explored factors contributing to the decrease in MDVC post COVID-19. …”
  12. 64312

    Table_4_Physiological and Proteomic Analysis of Different Molecular Mechanisms of Sugar Beet Response to Acidic and Alkaline pH Environment.XLSX by Gui Geng (6706085)

    Published 2021
    “…Limited data are available on sugar beet growth status under different pH conditions. In this study, we analyzed the growth status and phenotype of sugar beet under pH 5, pH 7.5, and pH 9.5. …”
  13. 64313

    Table_7_Physiological and Proteomic Analysis of Different Molecular Mechanisms of Sugar Beet Response to Acidic and Alkaline pH Environment.XLSX by Gui Geng (6706085)

    Published 2021
    “…Limited data are available on sugar beet growth status under different pH conditions. In this study, we analyzed the growth status and phenotype of sugar beet under pH 5, pH 7.5, and pH 9.5. …”
  14. 64314

    Table_6_Physiological and Proteomic Analysis of Different Molecular Mechanisms of Sugar Beet Response to Acidic and Alkaline pH Environment.XLSX by Gui Geng (6706085)

    Published 2021
    “…Limited data are available on sugar beet growth status under different pH conditions. In this study, we analyzed the growth status and phenotype of sugar beet under pH 5, pH 7.5, and pH 9.5. …”
  15. 64315

    Table_8_Physiological and Proteomic Analysis of Different Molecular Mechanisms of Sugar Beet Response to Acidic and Alkaline pH Environment.XLSX by Gui Geng (6706085)

    Published 2021
    “…Limited data are available on sugar beet growth status under different pH conditions. In this study, we analyzed the growth status and phenotype of sugar beet under pH 5, pH 7.5, and pH 9.5. …”
  16. 64316

    Data_Sheet_3_Physiological and Proteomic Analysis of Different Molecular Mechanisms of Sugar Beet Response to Acidic and Alkaline pH Environment.DOCX by Gui Geng (6706085)

    Published 2021
    “…Limited data are available on sugar beet growth status under different pH conditions. In this study, we analyzed the growth status and phenotype of sugar beet under pH 5, pH 7.5, and pH 9.5. …”
  17. 64317

    Data_Sheet_2_Physiological and Proteomic Analysis of Different Molecular Mechanisms of Sugar Beet Response to Acidic and Alkaline pH Environment.DOCX by Gui Geng (6706085)

    Published 2021
    “…Limited data are available on sugar beet growth status under different pH conditions. In this study, we analyzed the growth status and phenotype of sugar beet under pH 5, pH 7.5, and pH 9.5. …”
  18. 64318

    Table_3_Physiological and Proteomic Analysis of Different Molecular Mechanisms of Sugar Beet Response to Acidic and Alkaline pH Environment.XLSX by Gui Geng (6706085)

    Published 2021
    “…Limited data are available on sugar beet growth status under different pH conditions. In this study, we analyzed the growth status and phenotype of sugar beet under pH 5, pH 7.5, and pH 9.5. …”
  19. 64319

    Data_Sheet_4_Physiological and Proteomic Analysis of Different Molecular Mechanisms of Sugar Beet Response to Acidic and Alkaline pH Environment.DOCX by Gui Geng (6706085)

    Published 2021
    “…Limited data are available on sugar beet growth status under different pH conditions. In this study, we analyzed the growth status and phenotype of sugar beet under pH 5, pH 7.5, and pH 9.5. …”
  20. 64320

    Table_2_Physiological and Proteomic Analysis of Different Molecular Mechanisms of Sugar Beet Response to Acidic and Alkaline pH Environment.XLSX by Gui Geng (6706085)

    Published 2021
    “…Limited data are available on sugar beet growth status under different pH conditions. In this study, we analyzed the growth status and phenotype of sugar beet under pH 5, pH 7.5, and pH 9.5. …”