Showing 3,201 - 3,220 results of 18,229 for search 'significantly ((((((teer decrease) OR (a decrease))) OR (linear decrease))) OR (greater decrease))', query time: 0.72s Refine Results
  1. 3201

    Dynamic light scattering (DLS) data of NF-O. by Yashwanth Elumalai (21743452)

    Published 2025
    “…Dynamic light scattering showed a significant reduction in the improved particle size (PDI decreased from 0.863 to 0.173) by nano-formulation from 559 nm to 220 nm. …”
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    All infection data from the study. by Hala Tamim El Jarkass (16625309)

    Published 2025
    “…We show that infection causes an increase in the level of <i>C. elegans</i> lipid droplet associated lipase, ATGL-1, and a decrease in host fat levels. A mutation that decreases ATGL-1 activity and overexpression of ATGL-1 did not significantly change <i>N. parisii</i> infection levels. …”
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    Prime sequences. by Qiaozhen Qin (13159201)

    Published 2025
    “…In this study, we found that microRNA-129-5p (miR-129-5p) was significantly decreased in the brains of depressive mice. …”
  5. 3205

    Data Sheet 1_Dose-dependent changes in global brain activity and functional connectivity following exposure to psilocybin: a BOLD MRI study in awake rats.pdf by Evan Fuini (21224939)

    Published 2025
    “…We hypothesized that psilocybin would show a dose-dependent increase in activity in the prefrontal cortex and thalamus, while decreasing hippocampal activity. …”
  6. 3206

    Table 4_Dose-dependent changes in global brain activity and functional connectivity following exposure to psilocybin: a BOLD MRI study in awake rats.xlsx by Evan Fuini (21224939)

    Published 2025
    “…We hypothesized that psilocybin would show a dose-dependent increase in activity in the prefrontal cortex and thalamus, while decreasing hippocampal activity. …”
  7. 3207

    Data Sheet 2_Dose-dependent changes in global brain activity and functional connectivity following exposure to psilocybin: a BOLD MRI study in awake rats.docx by Evan Fuini (21224939)

    Published 2025
    “…We hypothesized that psilocybin would show a dose-dependent increase in activity in the prefrontal cortex and thalamus, while decreasing hippocampal activity. …”
  8. 3208

    Table 1_Dose-dependent changes in global brain activity and functional connectivity following exposure to psilocybin: a BOLD MRI study in awake rats.docx by Evan Fuini (21224939)

    Published 2025
    “…We hypothesized that psilocybin would show a dose-dependent increase in activity in the prefrontal cortex and thalamus, while decreasing hippocampal activity. …”
  9. 3209

    Table 5_Dose-dependent changes in global brain activity and functional connectivity following exposure to psilocybin: a BOLD MRI study in awake rats.xlsx by Evan Fuini (21224939)

    Published 2025
    “…We hypothesized that psilocybin would show a dose-dependent increase in activity in the prefrontal cortex and thalamus, while decreasing hippocampal activity. …”
  10. 3210

    Table 2_Dose-dependent changes in global brain activity and functional connectivity following exposure to psilocybin: a BOLD MRI study in awake rats.xlsx by Evan Fuini (21224939)

    Published 2025
    “…We hypothesized that psilocybin would show a dose-dependent increase in activity in the prefrontal cortex and thalamus, while decreasing hippocampal activity. …”
  11. 3211

    Table 3_Dose-dependent changes in global brain activity and functional connectivity following exposure to psilocybin: a BOLD MRI study in awake rats.xlsx by Evan Fuini (21224939)

    Published 2025
    “…We hypothesized that psilocybin would show a dose-dependent increase in activity in the prefrontal cortex and thalamus, while decreasing hippocampal activity. …”
  12. 3212

    Image 1_A comprehensive analysis of vitamin a deficiency burden and trends: insights from the global burden of disease study 2021 and future predictions to 2050.pdf by Qianhong Hu (22640267)

    Published 2025
    “…Background<p>Vitamin A deficiency (VAD) continues to pose a significant public health challenge, particularly in low socio-demographic index (SDI) regions, contributing to increased infections, blindness, and child mortality. …”
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