Showing 7,161 - 7,180 results of 32,444 for search '(( a step decrease ) OR ( 50 ((((we decrease) OR (a decrease))) OR (mean decrease)) ))', query time: 0.69s Refine Results
  1. 7161
  2. 7162
  3. 7163
  4. 7164

    The number of Brn3a-expressing RGCs undergoes a reduction during the first postnatal week. by Sylvie Voyatzis (332702)

    Published 2013
    “…The inner surface of the retina (RGC layer) is down. The density of Brn3a-expressing cells decreases from P0 to P7 and the retinal ganglion cell layer reorganizes from a multiple cell layer at P0 to a single cell layer at P7. …”
  5. 7165
  6. 7166
  7. 7167

    Mechanism Studies on the Chemical Stability of FIrpic, a Typical Blue Phosphorescent Emitter for Electroluminescence, in the Redox States by Weiqiang Wei (19728558)

    Published 2024
    “…Charge analysis indicates a decreasing trend in electronic delocalization between the LP<sub>N</sub> electron donor natural bond orbital (NBO) and the d*<sub>N–Ir(pic.)…”
  8. 7168

    Mechanism Studies on the Chemical Stability of FIrpic, a Typical Blue Phosphorescent Emitter for Electroluminescence, in the Redox States by Weiqiang Wei (19728558)

    Published 2024
    “…Charge analysis indicates a decreasing trend in electronic delocalization between the LP<sub>N</sub> electron donor natural bond orbital (NBO) and the d*<sub>N–Ir(pic.)…”
  9. 7169

    Mechanism Studies on the Chemical Stability of FIrpic, a Typical Blue Phosphorescent Emitter for Electroluminescence, in the Redox States by Weiqiang Wei (19728558)

    Published 2024
    “…Charge analysis indicates a decreasing trend in electronic delocalization between the LP<sub>N</sub> electron donor natural bond orbital (NBO) and the d*<sub>N–Ir(pic.)…”
  10. 7170

    Mechanism Studies on the Chemical Stability of FIrpic, a Typical Blue Phosphorescent Emitter for Electroluminescence, in the Redox States by Weiqiang Wei (19728558)

    Published 2024
    “…Charge analysis indicates a decreasing trend in electronic delocalization between the LP<sub>N</sub> electron donor natural bond orbital (NBO) and the d*<sub>N–Ir(pic.)…”
  11. 7171

    Mechanism Studies on the Chemical Stability of FIrpic, a Typical Blue Phosphorescent Emitter for Electroluminescence, in the Redox States by Weiqiang Wei (19728558)

    Published 2024
    “…Charge analysis indicates a decreasing trend in electronic delocalization between the LP<sub>N</sub> electron donor natural bond orbital (NBO) and the d*<sub>N–Ir(pic.)…”
  12. 7172

    Mechanism Studies on the Chemical Stability of FIrpic, a Typical Blue Phosphorescent Emitter for Electroluminescence, in the Redox States by Weiqiang Wei (19728558)

    Published 2024
    “…Charge analysis indicates a decreasing trend in electronic delocalization between the LP<sub>N</sub> electron donor natural bond orbital (NBO) and the d*<sub>N–Ir(pic.)…”
  13. 7173
  14. 7174

    Predicting improved protein conformations with a temporal deep recurrent neural network - Fig 5 by Erik Pfeiffenberger (5714645)

    Published 2018
    “…<p>(A)–(D) Effect of sequence length (SL) 1, 5, 30 and 50 on precision and recall for the improved state class as a function of training steps tested on validation fold 4. …”
  15. 7175
  16. 7176

    Structure-function correlation of the central retina in a patient with X-linked retinoschisis (upper panels) and a patient with Usher syndrome 2A (lower panels). by Peter Charbel Issa (241475)

    Published 2010
    “…Only the most distinct alterations result in a relative scotoma (10 dB decreased light intensity compared to the brightest stimulus). …”
  17. 7177

    Proposed Dyrk1A functions in regulating synaptic vesicle endocytosis. by Noriko Murakami (171144)

    Published 2012
    “…<p>Dyrk1A phosphorylated AP180 in cytosol. The phosphorylated AP180 may decrease its binding affinity to the AP2 complex; we hypothesize here that the decrease in such binding affinity would reduce recruitment of clathrin at the <i>nucleation</i> and <i>invagination</i> sites. …”
  18. 7178

    Lack of HP1a or POF shifts the enrichment pattern of RNA pol II on chromosome 4. by Nicole C. Riddle (134424)

    Published 2012
    “…In both HP1a and POF mutants, the RNA pol II enrichment decreases significantly only in the gene body. …”
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