Showing 83,361 - 83,380 results of 122,544 for search '(( a ((mean decrease) OR (we decrease)) ) OR ( i ((largest decrease) OR (larger decrease)) ))', query time: 1.53s Refine Results
  1. 83361

    Rank distributions in three cities. by Anastasios Noulas (321068)

    Published 2013
    “…We observe that the distributions of the three cities collapse to a single line, which suggests that universal laws can be formulated in terms of the rank variable. …”
  2. 83362

    Time course of changes in heart rate and blood pressure variability in rats with myocardial infarction by R. Aires (6510197)

    Published 2019
    “…A sharp reduction (P<0.05) of BPV (mmHg2) was observed in the first week after MI (SO-1=8.55±0.80; SO-3=9.11±1.08; SO-7=7.92±1.10 vs MI-1=5.63±0.73; MI-3=5.93±0.30; MI-7=5.30±0.25). …”
  3. 83363

    FABP5 expression modulates TLR2 and TLR4 mRNA expression. by Fabienne Gally (260470)

    Published 2013
    “…<p><b>A.</b> TLR2 mRNA expression was induced in cells knocked down for FABP5. …”
  4. 83364

    Ca<sup>2+</sup> flux assay in Y511F and S512 mutants for capsaicin and [6]-gingerol. by Katsuya Ohbuchi (559460)

    Published 2016
    “…<p>(A) The potency of capsaicin against TRPV1 was decreased a little for Y511F (red) but unchanged for S512A (blue). …”
  5. 83365

    Image_1_Lacticaseibacillus rhamnosus Hao9 exerts antidiabetic effects by regulating gut microbiome, glucagon metabolism, and insulin levels in type 2 diabetic mice.TIF by Mei Han (127139)

    Published 2023
    “…Introduction<p>Type 2 diabetes mellitus (T2DM) is a metabolic disease that has led to a significant global public health burden.…”
  6. 83366

    Table_1_Lacticaseibacillus rhamnosus Hao9 exerts antidiabetic effects by regulating gut microbiome, glucagon metabolism, and insulin levels in type 2 diabetic mice.XLSX by Mei Han (127139)

    Published 2023
    “…Introduction<p>Type 2 diabetes mellitus (T2DM) is a metabolic disease that has led to a significant global public health burden.…”
  7. 83367

    The wound healing microenvironment prevented lung cell malignant transformation. by Linxin Liu (829738)

    Published 2015
    “…(B) The combination of three compounds decreased A549 cell self-renew shown as the number of tumor spheres and soft agar colonies. …”
  8. 83368

    DataSheet1_Similar deamination activities but different phenotypic outcomes induced by APOBEC3 enzymes in breast epithelial cells.PDF by Milaid Granadillo Rodríguez (16002443)

    Published 2023
    “…Thus, we developed stable cell lines expressing A3A, A3B, or A3H Hap I using non-tumorigenic MCF10A and tumorigenic MCF7 breast epithelial cells to assess their mutagenic potential and cancer phenotypes in breast cells. …”
  9. 83369

    Cellular Oct4 and Sox2 expression after MK differentiation from hESSCs. by Jinju Wang (309273)

    Published 2013
    “…<p>The expression levels of Oct4 and Sox2 in cells were decreased after induction of MK differentiation (A: representative western blot bands; B: summarized data). …”
  10. 83370

    Number of errors in WSBRT and NWSBRT (stable and rotated conditions). by Irene León (4020383)

    Published 2018
    “…<p>A, B and C for three, five and seven boxes conditions, respectively. …”
  11. 83371

    Socio-spatial heterogeneity in participation in mass dog rabies vaccination campaigns, Arequipa, Peru by Ricardo Castillo-Neyra (682311)

    Published 2019
    “…We found that the odds of participating in the campaign decreased by 16% for every 100 m from the owner’s house to the nearest vaccination point (p = 0.041) after controlling for potential covariates. …”
  12. 83372

    Supplementary Material for: Long Non-Coding RNA H19 Acts as an Estrogen Receptor Modulator that is Required for Endocrine Therapy Resistance in ER<sup>+</sup> Breast Cancer Cells by Basak P. (6021641)

    Published 2018
    “…Unfortunately, development of endocrine therapy resistance (ETR) is a frequent event resulting in disease relapse and decreased overall patient survival. …”
  13. 83373

    Image5_Reduction of Drosophila Mitochondrial RNase P in Skeletal and Heart Muscle Causes Muscle Degeneration, Cardiomyopathy, and Heart Arrhythmia.JPEG by Maithili Saoji (12568108)

    Published 2022
    “…<p>In this study, we examine the cause and progression of mitochondrial diseases linked to the loss of mtRNase P, a three-protein complex responsible for processing and cleaving mitochondrial transfer RNAs (tRNA) from their nascent transcripts. …”
  14. 83374

    Image12_Reduction of Drosophila Mitochondrial RNase P in Skeletal and Heart Muscle Causes Muscle Degeneration, Cardiomyopathy, and Heart Arrhythmia.JPEG by Maithili Saoji (12568108)

    Published 2022
    “…<p>In this study, we examine the cause and progression of mitochondrial diseases linked to the loss of mtRNase P, a three-protein complex responsible for processing and cleaving mitochondrial transfer RNAs (tRNA) from their nascent transcripts. …”
  15. 83375

    Image2_Reduction of Drosophila Mitochondrial RNase P in Skeletal and Heart Muscle Causes Muscle Degeneration, Cardiomyopathy, and Heart Arrhythmia.JPEG by Maithili Saoji (12568108)

    Published 2022
    “…<p>In this study, we examine the cause and progression of mitochondrial diseases linked to the loss of mtRNase P, a three-protein complex responsible for processing and cleaving mitochondrial transfer RNAs (tRNA) from their nascent transcripts. …”
  16. 83376

    Image10_Reduction of Drosophila Mitochondrial RNase P in Skeletal and Heart Muscle Causes Muscle Degeneration, Cardiomyopathy, and Heart Arrhythmia.JPEG by Maithili Saoji (12568108)

    Published 2022
    “…<p>In this study, we examine the cause and progression of mitochondrial diseases linked to the loss of mtRNase P, a three-protein complex responsible for processing and cleaving mitochondrial transfer RNAs (tRNA) from their nascent transcripts. …”
  17. 83377

    Image3_Reduction of Drosophila Mitochondrial RNase P in Skeletal and Heart Muscle Causes Muscle Degeneration, Cardiomyopathy, and Heart Arrhythmia.JPEG by Maithili Saoji (12568108)

    Published 2022
    “…<p>In this study, we examine the cause and progression of mitochondrial diseases linked to the loss of mtRNase P, a three-protein complex responsible for processing and cleaving mitochondrial transfer RNAs (tRNA) from their nascent transcripts. …”
  18. 83378

    Image4_Reduction of Drosophila Mitochondrial RNase P in Skeletal and Heart Muscle Causes Muscle Degeneration, Cardiomyopathy, and Heart Arrhythmia.jpg by Maithili Saoji (12568108)

    Published 2022
    “…<p>In this study, we examine the cause and progression of mitochondrial diseases linked to the loss of mtRNase P, a three-protein complex responsible for processing and cleaving mitochondrial transfer RNAs (tRNA) from their nascent transcripts. …”
  19. 83379

    Image6_Reduction of Drosophila Mitochondrial RNase P in Skeletal and Heart Muscle Causes Muscle Degeneration, Cardiomyopathy, and Heart Arrhythmia.jpg by Maithili Saoji (12568108)

    Published 2022
    “…<p>In this study, we examine the cause and progression of mitochondrial diseases linked to the loss of mtRNase P, a three-protein complex responsible for processing and cleaving mitochondrial transfer RNAs (tRNA) from their nascent transcripts. …”
  20. 83380

    Image11_Reduction of Drosophila Mitochondrial RNase P in Skeletal and Heart Muscle Causes Muscle Degeneration, Cardiomyopathy, and Heart Arrhythmia.jpg by Maithili Saoji (12568108)

    Published 2022
    “…<p>In this study, we examine the cause and progression of mitochondrial diseases linked to the loss of mtRNase P, a three-protein complex responsible for processing and cleaving mitochondrial transfer RNAs (tRNA) from their nascent transcripts. …”