Showing 18,181 - 18,200 results of 81,622 for search '(( 2 we decrease ) OR ( 50 ((teer decrease) OR (((nn decrease) OR (a decrease)))) ))', query time: 1.43s Refine Results
  1. 18181

    Image_2_The impact of supervised physical exercise on chemokines and cytokines in recovered COVID-19 patients.tiff by Tayrine Ordonio Filgueira (14326311)

    Published 2023
    “…The CXCL8/IL-8 (p = 0.04), CCL2/MCP-1 (p = 0.03), and IFN-γ (p = 0.004) levels decreased after 12 weeks of supervised exercise. …”
  2. 18182

    Table_2_Early Response Assessment in Advanced Stage Melanoma Treated with Combination Ipilimumab/Nivolumab.docx by Vincent T. Ma (13003329)

    Published 2022
    “…There was no survival risk difference comparing 1 or 2 vs 3 or 4 doses of I/N for PFS (HR: 0.95, 0.37-2.48; p=0.921) and OS (HR: 1.04, 0.22-4.78; p=0.965).…”
  3. 18183
  4. 18184

    Image_2_Resolvin D1 improves allograft osteointegration and directly enhances osteoblasts differentiation.jpeg by Noy Pinto (14680048)

    Published 2023
    “…Furthermore, RvD1 increased the expression of RUNX2, OSX, BSP and OC/BGLAP2 and the mineralized extracellular matrix during MC3T3-E1 osteoblasts differentiation.…”
  5. 18185

    Video_7_Contribution of 5-HT2 Receptors to the Control of the Spinal Locomotor System in Intact Rats.WMV by Henryk Majczyński (830716)

    Published 2020
    “…Little is known about the role of 5-HT receptors in the control of voluntary locomotion, so we administered inverse agonists of 5-HT<sub>2</sub> (Cyproheptadine; Cypr), 5-HT<sub>2A</sub> neutral antagonist (Volinanserin; Volin), 5-HT<sub>2C</sub> neutral antagonist (SB 242084), and 5-HT<sub>2B/2C</sub> inverse agonist (SB 206553) receptors intrathecally in intact rats and monitored their effects on unrestrained locomotion. …”
  6. 18186

    Image_3_Contribution of 5-HT2 Receptors to the Control of the Spinal Locomotor System in Intact Rats.JPEG by Henryk Majczyński (830716)

    Published 2020
    “…Little is known about the role of 5-HT receptors in the control of voluntary locomotion, so we administered inverse agonists of 5-HT<sub>2</sub> (Cyproheptadine; Cypr), 5-HT<sub>2A</sub> neutral antagonist (Volinanserin; Volin), 5-HT<sub>2C</sub> neutral antagonist (SB 242084), and 5-HT<sub>2B/2C</sub> inverse agonist (SB 206553) receptors intrathecally in intact rats and monitored their effects on unrestrained locomotion. …”
  7. 18187

    Image_4_Contribution of 5-HT2 Receptors to the Control of the Spinal Locomotor System in Intact Rats.JPEG by Henryk Majczyński (830716)

    Published 2020
    “…Little is known about the role of 5-HT receptors in the control of voluntary locomotion, so we administered inverse agonists of 5-HT<sub>2</sub> (Cyproheptadine; Cypr), 5-HT<sub>2A</sub> neutral antagonist (Volinanserin; Volin), 5-HT<sub>2C</sub> neutral antagonist (SB 242084), and 5-HT<sub>2B/2C</sub> inverse agonist (SB 206553) receptors intrathecally in intact rats and monitored their effects on unrestrained locomotion. …”
  8. 18188

    Video_3_Contribution of 5-HT2 Receptors to the Control of the Spinal Locomotor System in Intact Rats.WMV by Henryk Majczyński (830716)

    Published 2020
    “…Little is known about the role of 5-HT receptors in the control of voluntary locomotion, so we administered inverse agonists of 5-HT<sub>2</sub> (Cyproheptadine; Cypr), 5-HT<sub>2A</sub> neutral antagonist (Volinanserin; Volin), 5-HT<sub>2C</sub> neutral antagonist (SB 242084), and 5-HT<sub>2B/2C</sub> inverse agonist (SB 206553) receptors intrathecally in intact rats and monitored their effects on unrestrained locomotion. …”
  9. 18189

    Video_5_Contribution of 5-HT2 Receptors to the Control of the Spinal Locomotor System in Intact Rats.WMV by Henryk Majczyński (830716)

    Published 2020
    “…Little is known about the role of 5-HT receptors in the control of voluntary locomotion, so we administered inverse agonists of 5-HT<sub>2</sub> (Cyproheptadine; Cypr), 5-HT<sub>2A</sub> neutral antagonist (Volinanserin; Volin), 5-HT<sub>2C</sub> neutral antagonist (SB 242084), and 5-HT<sub>2B/2C</sub> inverse agonist (SB 206553) receptors intrathecally in intact rats and monitored their effects on unrestrained locomotion. …”
  10. 18190

    Video_6_Contribution of 5-HT2 Receptors to the Control of the Spinal Locomotor System in Intact Rats.WMV by Henryk Majczyński (830716)

    Published 2020
    “…Little is known about the role of 5-HT receptors in the control of voluntary locomotion, so we administered inverse agonists of 5-HT<sub>2</sub> (Cyproheptadine; Cypr), 5-HT<sub>2A</sub> neutral antagonist (Volinanserin; Volin), 5-HT<sub>2C</sub> neutral antagonist (SB 242084), and 5-HT<sub>2B/2C</sub> inverse agonist (SB 206553) receptors intrathecally in intact rats and monitored their effects on unrestrained locomotion. …”
  11. 18191

    Video_1_Contribution of 5-HT2 Receptors to the Control of the Spinal Locomotor System in Intact Rats.WMV by Henryk Majczyński (830716)

    Published 2020
    “…Little is known about the role of 5-HT receptors in the control of voluntary locomotion, so we administered inverse agonists of 5-HT<sub>2</sub> (Cyproheptadine; Cypr), 5-HT<sub>2A</sub> neutral antagonist (Volinanserin; Volin), 5-HT<sub>2C</sub> neutral antagonist (SB 242084), and 5-HT<sub>2B/2C</sub> inverse agonist (SB 206553) receptors intrathecally in intact rats and monitored their effects on unrestrained locomotion. …”
  12. 18192

    Video_4_Contribution of 5-HT2 Receptors to the Control of the Spinal Locomotor System in Intact Rats.WMV by Henryk Majczyński (830716)

    Published 2020
    “…Little is known about the role of 5-HT receptors in the control of voluntary locomotion, so we administered inverse agonists of 5-HT<sub>2</sub> (Cyproheptadine; Cypr), 5-HT<sub>2A</sub> neutral antagonist (Volinanserin; Volin), 5-HT<sub>2C</sub> neutral antagonist (SB 242084), and 5-HT<sub>2B/2C</sub> inverse agonist (SB 206553) receptors intrathecally in intact rats and monitored their effects on unrestrained locomotion. …”
  13. 18193

    Image_1_Contribution of 5-HT2 Receptors to the Control of the Spinal Locomotor System in Intact Rats.JPEG by Henryk Majczyński (830716)

    Published 2020
    “…Little is known about the role of 5-HT receptors in the control of voluntary locomotion, so we administered inverse agonists of 5-HT<sub>2</sub> (Cyproheptadine; Cypr), 5-HT<sub>2A</sub> neutral antagonist (Volinanserin; Volin), 5-HT<sub>2C</sub> neutral antagonist (SB 242084), and 5-HT<sub>2B/2C</sub> inverse agonist (SB 206553) receptors intrathecally in intact rats and monitored their effects on unrestrained locomotion. …”
  14. 18194
  15. 18195
  16. 18196
  17. 18197

    Supplementary file 2_Antibiotic pretreatment inhibits white band disease infection by suppressing the bacterial pathobiome.csv by Jason D. Selwyn (2633932)

    Published 2025
    “…We found the prophylactic use of antibiotics led to significantly reduced infection rates in disease exposed corals with a 30-percentage point decrease in the infection rate. …”
  18. 18198

    Image_2_Influence of Step Frequency on the Dynamic Characteristics of Ventilation and Gas Exchange During Sinusoidal Walking in humans.TIF by Mako Fujita (12403201)

    Published 2022
    “…<p>We tested the hypothesis that restricting either step frequency (SF) or stride length (SL) causes a decrease in ventilatory response with limited breath frequency during sinusoidal walking. …”
  19. 18199

    <b>Field-based evidence of sperm quality impairment associated with conventional farming in two passerine birds</b>. by Ségolène Humann-Guilleminot (20908844)

    Published 2025
    “…We hypothesized that birds living near conventional fields would exhibit lower body mass due to reduced food availability. …”
  20. 18200

    The pharmacokinetics of dexmedetomidine in patients with obstructive jaundice: A clinical trial by Jin-Chao Song (5963936)

    Published 2018
    “…The clearance of dexmedetomidine in patients with severe hepatic failure decreased by 50% compared with controls. We tested the hypothesis that the pharmacokinetics of dexmedetomidine would be affected by obstructive jaundice. …”