Showing 901 - 920 results of 27,622 for search '(( 50 ((nn decrease) OR (we decrease)) ) OR ( 50 ((n decrease) OR (a decrease)) ))', query time: 0.88s Refine Results
  1. 901
  2. 902

    Diagnostic performance of blood parameters to discriminate abnormal from normal MAD activity (A) and decreased from absent MAD activity (B). by Fabrice Rannou (775170)

    Published 2015
    “…(B) Classifiers for the differentiation of Absent (n = 5) from Decreased (n = 6) MAD activity. 50% PMP: 50% from predicted maximal power (see <a href="http://www.plosone.org/article/info:doi/10.1371/journal.pone.0132972#sec006" target="_blank">Methods</a>), R: Recovery from exercise, Se: Sensibility, Sp: Specificity, Acc: Accuracy, PPV: Positive predictive value, NPV: Negative predictive value, LR+: Positive likelihood ratio, LR-: Negative likelihood ratio, DOR: Diagnostic odds ratio, NC: Not calculable.…”
  3. 903

    The numerical values underlying Fig 4. by Wataru Matsunaga (3452621)

    Published 2023
    “…However, only the KO mice showed a significant decrease in rotarod performance of 1.2 g/kg EtOH. …”
  4. 904

    A Minor (<50%) Signet-Ring Cell Component Associated with Poor Prognosis in Colorectal Cancer Patients: A 26-Year Retrospective Study in China by Yinuo Tan (705777)

    Published 2015
    “…<div><p>Background</p><p>We performed a retrospective study to determine the cancer-specific survival of colorectal cancer patients with a component of signet-ring cells or mucin comprising < 50% of the tumor mass.…”
  5. 905

    Morpholine antisense oligonucleotide treatment decreases expression of the flow-responsive gene <i>klf2a</i> results in valve dysgenesis. by Julien Vermot (257990)

    Published 2009
    “…(K and L) <i>notch1b</i> expression at 48 hpf decreases in the AV boundary of the <i>klf2a</i> morphants (<i>n</i> = 45, 71%). …”
  6. 906
  7. 907
  8. 908
  9. 909
  10. 910
  11. 911

    Neural networks classify states which differ in neuronal activity levels using ensembles of neurons that increase/decrease their activity in each state. by Nicholas A. Frost (10739821)

    Published 2021
    “…As a result, there is an increase (neurons 51:100) or decrease (neurons 1:50) in activity levels in State B compared to State A. …”
  12. 912
  13. 913

    A Yoga Strengthening Program Designed to Minimize the Knee Adduction Moment for Women with Knee Osteoarthritis: A Proof-Of-Principle Cohort Study by Elora C. Brenneman (795723)

    Published 2015
    “…A secondary objective was to determine whether the program could improve mobility and fitness, and decrease peak KAM during gait. …”
  14. 914

    Tacrolimus Decreases Albuminuria in Patients with IgA Nephropathy and Normal Blood Pressure: A Double-Blind Randomized Controlled Trial of Efficacy of Tacrolimus on IgA Nephropathy by Yong-Chul Kim (1637572)

    Published 2013
    “…We randomly assigned patients either to receive tacrolimus or placebo with stratification by using a renin angiotensin system blocker. …”
  15. 915

    DataSheet_1_Hemizygous nonsense variant in the moesin gene (MSN) leads to a new autoimmune phenotype of Immunodeficiency 50.pdf by András L. Kovács (13565251)

    Published 2022
    “…We present a putative new autoimmune phenotype of Immunodeficiency 50 (MIM300988) characterized by antiphospholipid syndrome, Hashimoto’s thyroiditis, leg ulcers, and juvenile tooth loss, associated with W217X mutation of the MSN gene.…”
  16. 916

    Table_2_Move for Life an intervention for inactive adults aged 50 years and older: a cluster randomised feasibility trial.DOCX by Catherine B. Woods (10517765)

    Published 2024
    “…Background<p>Move for Life (MFL) is a theory-informed intervention that was developed to augment established physical activity (PA) programmes and enable inactive adults aged 50 years and older to be more active. …”
  17. 917

    Table_1_Move for Life an intervention for inactive adults aged 50 years and older: a cluster randomised feasibility trial.DOCX by Catherine B. Woods (10517765)

    Published 2024
    “…Background<p>Move for Life (MFL) is a theory-informed intervention that was developed to augment established physical activity (PA) programmes and enable inactive adults aged 50 years and older to be more active. …”
  18. 918
  19. 919
  20. 920