Showing 12,781 - 12,800 results of 66,741 for search '(( 50 ((((we decrease) OR (mean decrease))) OR (a decrease)) ) OR ( 5 c decrease ))', query time: 1.47s Refine Results
  1. 12781
  2. 12782

    Fast-slow decomposition of the model dynamics when the V0<sub>V</sub> excitatory pathways are deleted. by Yaroslav I. Molkov (542831)

    Published 2015
    “…Accordingly, there is a phase in the step cycle in which both flexors are inactive and therefore climbing up along the left branch of the gray <i>V</i>-nullcline until the RF escapes. This regime corresponds to the alternation of flexor center activities with a phase difference Δ<i>φ</i> ≠ 0.5 (“coupled” alternations, see <a href="http://www.ploscompbiol.org/article/info:doi/10.1371/journal.pcbi.1004270#pcbi.1004270.g005" target="_blank">Fig 5A</a>)<b>. …”
  3. 12783
  4. 12784

    Cdk2 and PTPLAD1 interact with IR complex organization. by Martial Boutchueng-Djidjou (5832626)

    Published 2018
    “…IPs Cdk2, Rab5c: 0 NT vs) T: Fold decrease 52 ± 7.5 n = 3, p ≤ 0.01). …”
  5. 12785

    Characterization and Functional Analysis of Extracellular Vesicles and Muscle-Abundant miRNAs (miR-1, miR-133a, and miR-206) in C<sub>2</sub>C<sub>12</sub> Myocytes and <i>mdx</i>... by Yasunari Matsuzaka (3559256)

    Published 2016
    “…Both the exposure of C<sub>2</sub>C<sub>12</sub> myoblasts and myotubes to EVs from the serum of <i>mdx</i> mice, and the overexpression of miR-133a in C<sub>2</sub>C<sub>12</sub> cells in presence of cellular stress resulted in a significant decrease in cell death. …”
  6. 12786

    Seventy Years of Asthma in Italy: Age, Period and Cohort Effects on Incidence and Remission of Self-Reported Asthma from 1940 to 2010 by Giancarlo Pesce (184046)

    Published 2015
    “…</p><p>Conclusions</p><p>After 50 years of a continuous upward trend, the rates of asthma incidence underwent a substantial stabilization in the late 90s. …”
  7. 12787

    Comparative Toxicity and Metabolism of N‑Acyl Homologues of Acetaminophen and Its Isomer 3′-Hydroxyacetanilide by Yakov M. Koen (1970593)

    Published 2016
    “…Homologating the acyl side chain from C-2 to C-5 led to progressive increases in toxicity up to 80-fold in the para series. …”
  8. 12788

    Comparative Toxicity and Metabolism of N‑Acyl Homologues of Acetaminophen and Its Isomer 3′-Hydroxyacetanilide by Yakov M. Koen (1970593)

    Published 2016
    “…Homologating the acyl side chain from C-2 to C-5 led to progressive increases in toxicity up to 80-fold in the para series. …”
  9. 12789

    Comparative Toxicity and Metabolism of N‑Acyl Homologues of Acetaminophen and Its Isomer 3′-Hydroxyacetanilide by Yakov M. Koen (1970593)

    Published 2016
    “…Homologating the acyl side chain from C-2 to C-5 led to progressive increases in toxicity up to 80-fold in the para series. …”
  10. 12790

    Comparative Toxicity and Metabolism of N‑Acyl Homologues of Acetaminophen and Its Isomer 3′-Hydroxyacetanilide by Yakov M. Koen (1970593)

    Published 2016
    “…Homologating the acyl side chain from C-2 to C-5 led to progressive increases in toxicity up to 80-fold in the para series. …”
  11. 12791

    Magnetic and Structural Transitions at Dimerization of C<sub>60</sub><sup>•−</sup> in Ionic Fullerene Complexes with Metalloporphyrins: {(TMP<sup>+</sup>)<sub>2</sub>·M<sup>II</sup... by Dmitri V. Konarev (1405348)

    Published 2010
    “…Ionic complexes containing C<sub>60</sub><sup>•−</sup> radical anions and metalloporphyrins coordinatively bound to <i>N</i>,<i>N</i>′,<i>N</i>′-trimethylpiperazinium cations {(TMP<sup>+</sup>)<sub>2</sub>·M<sup>II</sup>TPP}·(C<sub>60</sub><sup>−</sup>)<sub>2</sub>·(C<sub>6</sub>H<sub>4</sub>Cl<sub>2</sub>)<sub>2</sub>·(C<sub>6</sub>H<sub>5</sub>CN)<sub>2</sub> [M = Zn (<b>1</b>) and Mn (<b>2</b>)] have been obtained. …”
  12. 12792

    Magnetic and Structural Transitions at Dimerization of C<sub>60</sub><sup>•−</sup> in Ionic Fullerene Complexes with Metalloporphyrins: {(TMP<sup>+</sup>)<sub>2</sub>·M<sup>II</sup... by Dmitri V. Konarev (1405348)

    Published 2010
    “…Ionic complexes containing C<sub>60</sub><sup>•−</sup> radical anions and metalloporphyrins coordinatively bound to <i>N</i>,<i>N</i>′,<i>N</i>′-trimethylpiperazinium cations {(TMP<sup>+</sup>)<sub>2</sub>·M<sup>II</sup>TPP}·(C<sub>60</sub><sup>−</sup>)<sub>2</sub>·(C<sub>6</sub>H<sub>4</sub>Cl<sub>2</sub>)<sub>2</sub>·(C<sub>6</sub>H<sub>5</sub>CN)<sub>2</sub> [M = Zn (<b>1</b>) and Mn (<b>2</b>)] have been obtained. …”
  13. 12793

    Magnetic and Structural Transitions at Dimerization of C<sub>60</sub><sup>•−</sup> in Ionic Fullerene Complexes with Metalloporphyrins: {(TMP<sup>+</sup>)<sub>2</sub>·M<sup>II</sup... by Dmitri V. Konarev (1405348)

    Published 2010
    “…Ionic complexes containing C<sub>60</sub><sup>•−</sup> radical anions and metalloporphyrins coordinatively bound to <i>N</i>,<i>N</i>′,<i>N</i>′-trimethylpiperazinium cations {(TMP<sup>+</sup>)<sub>2</sub>·M<sup>II</sup>TPP}·(C<sub>60</sub><sup>−</sup>)<sub>2</sub>·(C<sub>6</sub>H<sub>4</sub>Cl<sub>2</sub>)<sub>2</sub>·(C<sub>6</sub>H<sub>5</sub>CN)<sub>2</sub> [M = Zn (<b>1</b>) and Mn (<b>2</b>)] have been obtained. …”
  14. 12794

    Magnetic and Structural Transitions at Dimerization of C<sub>60</sub><sup>•−</sup> in Ionic Fullerene Complexes with Metalloporphyrins: {(TMP<sup>+</sup>)<sub>2</sub>·M<sup>II</sup... by Dmitri V. Konarev (1405348)

    Published 2010
    “…Ionic complexes containing C<sub>60</sub><sup>•−</sup> radical anions and metalloporphyrins coordinatively bound to <i>N</i>,<i>N</i>′,<i>N</i>′-trimethylpiperazinium cations {(TMP<sup>+</sup>)<sub>2</sub>·M<sup>II</sup>TPP}·(C<sub>60</sub><sup>−</sup>)<sub>2</sub>·(C<sub>6</sub>H<sub>4</sub>Cl<sub>2</sub>)<sub>2</sub>·(C<sub>6</sub>H<sub>5</sub>CN)<sub>2</sub> [M = Zn (<b>1</b>) and Mn (<b>2</b>)] have been obtained. …”
  15. 12795

    Magnetic and Structural Transitions at Dimerization of C<sub>60</sub><sup>•−</sup> in Ionic Fullerene Complexes with Metalloporphyrins: {(TMP<sup>+</sup>)<sub>2</sub>·M<sup>II</sup... by Dmitri V. Konarev (1405348)

    Published 2010
    “…Ionic complexes containing C<sub>60</sub><sup>•−</sup> radical anions and metalloporphyrins coordinatively bound to <i>N</i>,<i>N</i>′,<i>N</i>′-trimethylpiperazinium cations {(TMP<sup>+</sup>)<sub>2</sub>·M<sup>II</sup>TPP}·(C<sub>60</sub><sup>−</sup>)<sub>2</sub>·(C<sub>6</sub>H<sub>4</sub>Cl<sub>2</sub>)<sub>2</sub>·(C<sub>6</sub>H<sub>5</sub>CN)<sub>2</sub> [M = Zn (<b>1</b>) and Mn (<b>2</b>)] have been obtained. …”
  16. 12796

    Y-P30 does not alter somatodendritic differentiation of cortical neurons but promotes filopodia pruning and morphological maturation of spines on pyramidal neurons. by Janine R. Neumann (6330863)

    Published 2019
    “…(D) Y-P30 did not alter the density of interneuronal (IN) dendritic protrusions and basal dendritic protrusions of pyramidal cells (PC) at DIV 10 (treated with 1 μM Y-P30 at DIV 7 and DIV 9) and DIV 20 (daily one pulse of 1 μM Y-P30 from DIV 15–19). Plotted is the mean number ± SEM per 100 μm dendritic length. (E) Y-P30 decreased the density of protrusions on secondary oblique branches from the apical dendrites of pyramidal cells at DIV 10 by 27% and at DIV 20 by 13%. …”
  17. 12797
  18. 12798
  19. 12799
  20. 12800