Showing 10,381 - 10,400 results of 14,224 for search '(( a ((laser decrease) OR (linear decrease)) ) OR ( a ((latent decrease) OR (largest decrease)) ))', query time: 0.73s Refine Results
  1. 10381

    Image_1_Single-Cell Glia and Neuron Gene Expression in the Central Amygdala in Opioid Withdrawal Suggests Inflammation With Correlated Gut Dysbiosis.TIF by Sean J. O’Sullivan (6910763)

    Published 2019
    “…We found that neuroinflammatory genes, notably Tnf, were upregulated in the withdrawal condition and that astrocytes, in particular, were highly active. We also observe a decreased Firmicutes to Bacteroides ratio in opioid withdrawal indicating gut dysbiosis. …”
  2. 10382

    Image_3_Single-Cell Glia and Neuron Gene Expression in the Central Amygdala in Opioid Withdrawal Suggests Inflammation With Correlated Gut Dysbiosis.TIF by Sean J. O’Sullivan (6910763)

    Published 2019
    “…We found that neuroinflammatory genes, notably Tnf, were upregulated in the withdrawal condition and that astrocytes, in particular, were highly active. We also observe a decreased Firmicutes to Bacteroides ratio in opioid withdrawal indicating gut dysbiosis. …”
  3. 10383

    Image_4_Single-Cell Glia and Neuron Gene Expression in the Central Amygdala in Opioid Withdrawal Suggests Inflammation With Correlated Gut Dysbiosis.TIF by Sean J. O’Sullivan (6910763)

    Published 2019
    “…We found that neuroinflammatory genes, notably Tnf, were upregulated in the withdrawal condition and that astrocytes, in particular, were highly active. We also observe a decreased Firmicutes to Bacteroides ratio in opioid withdrawal indicating gut dysbiosis. …”
  4. 10384

    Table_1_Single-Cell Glia and Neuron Gene Expression in the Central Amygdala in Opioid Withdrawal Suggests Inflammation With Correlated Gut Dysbiosis.xlsx by Sean J. O’Sullivan (6910763)

    Published 2019
    “…We found that neuroinflammatory genes, notably Tnf, were upregulated in the withdrawal condition and that astrocytes, in particular, were highly active. We also observe a decreased Firmicutes to Bacteroides ratio in opioid withdrawal indicating gut dysbiosis. …”
  5. 10385

    Table_9_Single-Cell Glia and Neuron Gene Expression in the Central Amygdala in Opioid Withdrawal Suggests Inflammation With Correlated Gut Dysbiosis.XLSX by Sean J. O’Sullivan (6910763)

    Published 2019
    “…We found that neuroinflammatory genes, notably Tnf, were upregulated in the withdrawal condition and that astrocytes, in particular, were highly active. We also observe a decreased Firmicutes to Bacteroides ratio in opioid withdrawal indicating gut dysbiosis. …”
  6. 10386

    Image_6_Single-Cell Glia and Neuron Gene Expression in the Central Amygdala in Opioid Withdrawal Suggests Inflammation With Correlated Gut Dysbiosis.TIF by Sean J. O’Sullivan (6910763)

    Published 2019
    “…We found that neuroinflammatory genes, notably Tnf, were upregulated in the withdrawal condition and that astrocytes, in particular, were highly active. We also observe a decreased Firmicutes to Bacteroides ratio in opioid withdrawal indicating gut dysbiosis. …”
  7. 10387

    Image_2_Single-Cell Glia and Neuron Gene Expression in the Central Amygdala in Opioid Withdrawal Suggests Inflammation With Correlated Gut Dysbiosis.TIF by Sean J. O’Sullivan (6910763)

    Published 2019
    “…We found that neuroinflammatory genes, notably Tnf, were upregulated in the withdrawal condition and that astrocytes, in particular, were highly active. We also observe a decreased Firmicutes to Bacteroides ratio in opioid withdrawal indicating gut dysbiosis. …”
  8. 10388

    Table_6_Single-Cell Glia and Neuron Gene Expression in the Central Amygdala in Opioid Withdrawal Suggests Inflammation With Correlated Gut Dysbiosis.XLSX by Sean J. O’Sullivan (6910763)

    Published 2019
    “…We found that neuroinflammatory genes, notably Tnf, were upregulated in the withdrawal condition and that astrocytes, in particular, were highly active. We also observe a decreased Firmicutes to Bacteroides ratio in opioid withdrawal indicating gut dysbiosis. …”
  9. 10389

    Table_3_Single-Cell Glia and Neuron Gene Expression in the Central Amygdala in Opioid Withdrawal Suggests Inflammation With Correlated Gut Dysbiosis.XLSX by Sean J. O’Sullivan (6910763)

    Published 2019
    “…We found that neuroinflammatory genes, notably Tnf, were upregulated in the withdrawal condition and that astrocytes, in particular, were highly active. We also observe a decreased Firmicutes to Bacteroides ratio in opioid withdrawal indicating gut dysbiosis. …”
  10. 10390

    Table_5_Single-Cell Glia and Neuron Gene Expression in the Central Amygdala in Opioid Withdrawal Suggests Inflammation With Correlated Gut Dysbiosis.XLSX by Sean J. O’Sullivan (6910763)

    Published 2019
    “…We found that neuroinflammatory genes, notably Tnf, were upregulated in the withdrawal condition and that astrocytes, in particular, were highly active. We also observe a decreased Firmicutes to Bacteroides ratio in opioid withdrawal indicating gut dysbiosis. …”
  11. 10391

    Image_5_Single-Cell Glia and Neuron Gene Expression in the Central Amygdala in Opioid Withdrawal Suggests Inflammation With Correlated Gut Dysbiosis.TIF by Sean J. O’Sullivan (6910763)

    Published 2019
    “…We found that neuroinflammatory genes, notably Tnf, were upregulated in the withdrawal condition and that astrocytes, in particular, were highly active. We also observe a decreased Firmicutes to Bacteroides ratio in opioid withdrawal indicating gut dysbiosis. …”
  12. 10392

    Table_7_Single-Cell Glia and Neuron Gene Expression in the Central Amygdala in Opioid Withdrawal Suggests Inflammation With Correlated Gut Dysbiosis.XLSX by Sean J. O’Sullivan (6910763)

    Published 2019
    “…We found that neuroinflammatory genes, notably Tnf, were upregulated in the withdrawal condition and that astrocytes, in particular, were highly active. We also observe a decreased Firmicutes to Bacteroides ratio in opioid withdrawal indicating gut dysbiosis. …”
  13. 10393

    Table_10_Single-Cell Glia and Neuron Gene Expression in the Central Amygdala in Opioid Withdrawal Suggests Inflammation With Correlated Gut Dysbiosis.XLSX by Sean J. O’Sullivan (6910763)

    Published 2019
    “…We found that neuroinflammatory genes, notably Tnf, were upregulated in the withdrawal condition and that astrocytes, in particular, were highly active. We also observe a decreased Firmicutes to Bacteroides ratio in opioid withdrawal indicating gut dysbiosis. …”
  14. 10394

    Table_2_Single-Cell Glia and Neuron Gene Expression in the Central Amygdala in Opioid Withdrawal Suggests Inflammation With Correlated Gut Dysbiosis.XLSX by Sean J. O’Sullivan (6910763)

    Published 2019
    “…We found that neuroinflammatory genes, notably Tnf, were upregulated in the withdrawal condition and that astrocytes, in particular, were highly active. We also observe a decreased Firmicutes to Bacteroides ratio in opioid withdrawal indicating gut dysbiosis. …”
  15. 10395

    Table_1_Midgut microbiota affects the intestinal barrier by producing short-chain fatty acids in Apostichopus japonicus.DOCX by Mingshan Song (7426604)

    Published 2023
    “…Specifically, acetic acid is associated with the largest number of microorganisms and has a significant correlation with occludin and ZO-1 among the seven SCFAs. …”
  16. 10396

    Parameter-dependence of model output. by Jonathan E. Rubin (7256252)

    Published 2019
    “…(C) Grey-coded inspiratory phase duration (seconds), measured as time between increased and subsequent decreases of <i>V</i><sub>1</sub> through a threshold of -35 mV. …”
  17. 10397

    Distribution and associations of IPL alterations in patients with glaucoma. by Rukiye Aydın (5762132)

    Published 2021
    “…In contrast, at 67 analysis locations (31%; green box-patterned area), both the IPL thickness and the linear density decreased, while only the IPL thickness decreased at 3 (1%; green area) or only the IPL density decreased at 31 (14%; green dotted area) analysis locations. …”
  18. 10398

    Antiferromagnetic Ordering in the Single-Component Molecular Conductor [Pd(tmdt)<sub>2</sub>] by Satomi Ogura (2880509)

    Published 2016
    “…The ESR intensity increased as the temperature decreased to 100 K and then decreased linearly as the temperature was further decreased to 50 K, where an abrupt decrease in the intensity was observed. …”
  19. 10399

    Antiferromagnetic Ordering in the Single-Component Molecular Conductor [Pd(tmdt)<sub>2</sub>] by Satomi Ogura (2880509)

    Published 2016
    “…The ESR intensity increased as the temperature decreased to 100 K and then decreased linearly as the temperature was further decreased to 50 K, where an abrupt decrease in the intensity was observed. …”
  20. 10400

    Antiferromagnetic Ordering in the Single-Component Molecular Conductor [Pd(tmdt)<sub>2</sub>] by Satomi Ogura (2880509)

    Published 2016
    “…The ESR intensity increased as the temperature decreased to 100 K and then decreased linearly as the temperature was further decreased to 50 K, where an abrupt decrease in the intensity was observed. …”