Showing 14,621 - 14,640 results of 21,342 for search '(( significant decrease decrease ) OR ( significant ((teer decrease) OR (a decrease)) ))', query time: 0.56s Refine Results
  1. 14621

    Supplementary Material for: Case Report of Myeloproliferative Neoplasm Complicated with Hepatic Sinusoidal Obstruction Syndrome and Focal Segmental Glomerulosclerosis by figshare admin karger (2628495)

    Published 2025
    “…This therapeutic approach led to a decrease in the patient's weight and 24-hour urinary protein, along with a significant reduction in pleural and abdominal effusions. …”
  2. 14622

    Table 2_Lyg1 deficiency aggravated LPS-induced chronic epididymal inflammation and sperm dysfunction in mouse.docx by XueXia Liu (13114949)

    Published 2025
    “…However, LPS-induced inflammation led to more severe epididymal damage, enhanced oxidative stress, abnormal ECM pathways and worse sperm dysfunction (reduced acrosomal integrity and functional proteins) in KO mice. IVF showed a more significant decrease in fertilization rate in KO mice.…”
  3. 14623

    Table 1_Lyg1 deficiency aggravated LPS-induced chronic epididymal inflammation and sperm dysfunction in mouse.docx by XueXia Liu (13114949)

    Published 2025
    “…However, LPS-induced inflammation led to more severe epididymal damage, enhanced oxidative stress, abnormal ECM pathways and worse sperm dysfunction (reduced acrosomal integrity and functional proteins) in KO mice. IVF showed a more significant decrease in fertilization rate in KO mice.…”
  4. 14624

    Image 7_Lyg1 deficiency aggravated LPS-induced chronic epididymal inflammation and sperm dysfunction in mouse.jpeg by XueXia Liu (13114949)

    Published 2025
    “…However, LPS-induced inflammation led to more severe epididymal damage, enhanced oxidative stress, abnormal ECM pathways and worse sperm dysfunction (reduced acrosomal integrity and functional proteins) in KO mice. IVF showed a more significant decrease in fertilization rate in KO mice.…”
  5. 14625

    Image 2_Lyg1 deficiency aggravated LPS-induced chronic epididymal inflammation and sperm dysfunction in mouse.jpeg by XueXia Liu (13114949)

    Published 2025
    “…However, LPS-induced inflammation led to more severe epididymal damage, enhanced oxidative stress, abnormal ECM pathways and worse sperm dysfunction (reduced acrosomal integrity and functional proteins) in KO mice. IVF showed a more significant decrease in fertilization rate in KO mice.…”
  6. 14626

    Image 4_Lyg1 deficiency aggravated LPS-induced chronic epididymal inflammation and sperm dysfunction in mouse.jpeg by XueXia Liu (13114949)

    Published 2025
    “…However, LPS-induced inflammation led to more severe epididymal damage, enhanced oxidative stress, abnormal ECM pathways and worse sperm dysfunction (reduced acrosomal integrity and functional proteins) in KO mice. IVF showed a more significant decrease in fertilization rate in KO mice.…”
  7. 14627

    Data Sheet 1_Lyg1 deficiency aggravated LPS-induced chronic epididymal inflammation and sperm dysfunction in mouse.pdf by XueXia Liu (13114949)

    Published 2025
    “…However, LPS-induced inflammation led to more severe epididymal damage, enhanced oxidative stress, abnormal ECM pathways and worse sperm dysfunction (reduced acrosomal integrity and functional proteins) in KO mice. IVF showed a more significant decrease in fertilization rate in KO mice.…”
  8. 14628

    Image 5_Lyg1 deficiency aggravated LPS-induced chronic epididymal inflammation and sperm dysfunction in mouse.jpeg by XueXia Liu (13114949)

    Published 2025
    “…However, LPS-induced inflammation led to more severe epididymal damage, enhanced oxidative stress, abnormal ECM pathways and worse sperm dysfunction (reduced acrosomal integrity and functional proteins) in KO mice. IVF showed a more significant decrease in fertilization rate in KO mice.…”
  9. 14629

    Image 6_Lyg1 deficiency aggravated LPS-induced chronic epididymal inflammation and sperm dysfunction in mouse.jpeg by XueXia Liu (13114949)

    Published 2025
    “…However, LPS-induced inflammation led to more severe epididymal damage, enhanced oxidative stress, abnormal ECM pathways and worse sperm dysfunction (reduced acrosomal integrity and functional proteins) in KO mice. IVF showed a more significant decrease in fertilization rate in KO mice.…”
  10. 14630

    Data Sheet 2_Lyg1 deficiency aggravated LPS-induced chronic epididymal inflammation and sperm dysfunction in mouse.pdf by XueXia Liu (13114949)

    Published 2025
    “…However, LPS-induced inflammation led to more severe epididymal damage, enhanced oxidative stress, abnormal ECM pathways and worse sperm dysfunction (reduced acrosomal integrity and functional proteins) in KO mice. IVF showed a more significant decrease in fertilization rate in KO mice.…”
  11. 14631

    Image 1_Lyg1 deficiency aggravated LPS-induced chronic epididymal inflammation and sperm dysfunction in mouse.jpeg by XueXia Liu (13114949)

    Published 2025
    “…However, LPS-induced inflammation led to more severe epididymal damage, enhanced oxidative stress, abnormal ECM pathways and worse sperm dysfunction (reduced acrosomal integrity and functional proteins) in KO mice. IVF showed a more significant decrease in fertilization rate in KO mice.…”
  12. 14632

    Table 1_Effect of low-frequency acupuncture on muscle and fascia stiffness: examination with or without intervention.docx by Toshihiro Maemichi (9028751)

    Published 2024
    “…</p>Conclusions<p>Low-frequency acupuncture may decrease muscle stiffness and improve fascial gliding. …”
  13. 14633

    Table 3_Lyg1 deficiency aggravated LPS-induced chronic epididymal inflammation and sperm dysfunction in mouse.docx by XueXia Liu (13114949)

    Published 2025
    “…However, LPS-induced inflammation led to more severe epididymal damage, enhanced oxidative stress, abnormal ECM pathways and worse sperm dysfunction (reduced acrosomal integrity and functional proteins) in KO mice. IVF showed a more significant decrease in fertilization rate in KO mice.…”
  14. 14634

    Image 3_Lyg1 deficiency aggravated LPS-induced chronic epididymal inflammation and sperm dysfunction in mouse.jpeg by XueXia Liu (13114949)

    Published 2025
    “…However, LPS-induced inflammation led to more severe epididymal damage, enhanced oxidative stress, abnormal ECM pathways and worse sperm dysfunction (reduced acrosomal integrity and functional proteins) in KO mice. IVF showed a more significant decrease in fertilization rate in KO mice.…”
  15. 14635

    Supplementary file 1_Widespread declining in vegetation climate sensitivity across Central Asia.docx by Ping Jiang (243020)

    Published 2025
    “…Temporally, the VSI in Central Asia showed a clear declining trend, with the rate of decrease accelerating after 1995 from −0.274 to −0.476. …”
  16. 14636

    Data Sheet 1_Amyloid-induced mitochondrial network disruption in neurons monitored by STED super-resolution imaging.pdf by Iuliia Golovynska (18880049)

    Published 2025
    “…As a result, the volume and surface area per mitochondrion decrease by 6-fold and 4-fold, respectively. …”
  17. 14637

    Merge dataset. by Mhairi Webster (20454888)

    Published 2024
    “…Domestic and familial factors did not have a significant impact on young people’s mental health.…”
  18. 14638

    Data Sheet 1_Unveiling spatiotemporal evolution and driving factors of ecosystem service value: interpretable HGB-SHAP machine learning model.docx by Xiangming Xu (420946)

    Published 2025
    “…The ESV exhibited a slight increase in two counties, while it demonstrated a decrease in the remaining 16 counties at the county scale. …”
  19. 14639

    Supplementary file 1_Comparative analysis of lipid metabolism in trophoblast subpopulations in preeclampsia and in vitro hypoxia model.pdf by Ivan Antipenko (22808513)

    Published 2025
    “…In vitro hypoxia modeling in BeWo b30 cells recapitulated the SCT-specific phenotype and identified a potential regulatory mechanism: a fivefold increase in PCSK9 expression (padj = 3.53e−10) and a 1.5-fold decrease in SNX17 (padj = 1.76e−04)—key regulators that limit lipoprotein receptor recycling. …”
  20. 14640

    Table 1_Comparative analysis of lipid metabolism in trophoblast subpopulations in preeclampsia and in vitro hypoxia model.xlsx by Ivan Antipenko (22808513)

    Published 2025
    “…In vitro hypoxia modeling in BeWo b30 cells recapitulated the SCT-specific phenotype and identified a potential regulatory mechanism: a fivefold increase in PCSK9 expression (padj = 3.53e−10) and a 1.5-fold decrease in SNX17 (padj = 1.76e−04)—key regulators that limit lipoprotein receptor recycling. …”