Showing 97,641 - 97,660 results of 102,958 for search '(( 2 wt decrease ) OR ( 5 ((((step decrease) OR (nn decrease))) OR (a decrease)) ))', query time: 1.75s Refine Results
  1. 97641
  2. 97642

    Defect Engineering of ZnO Nanoparticles for Bioimaging Applications by Josh E. Eixenberger (4349251)

    Published 2019
    “…Since the band gap significantly decreased and a relatively narrow visible emissions band was created by these defects, we investigated utilizing these new nZnO for bioimaging applications using traditional fluorescent microscopy techniques. …”
  3. 97643

    Image_13_Pedigree-based analysis in multi-parental diploid rose populations reveals QTLs for cercospora leaf spot disease resistance.png by Zena J. Rawandoozi (14337270)

    Published 2023
    “…The study used pedigree-based QTL analysis to dissect the genetic basis of CLS resistance using two multi-parental diploid rose populations (TX2WOB and TX2WSE) evaluated across five years in two Texas locations. A total 38 QTLs were identified across both populations and distributed over all linkage groups. …”
  4. 97644
  5. 97645
  6. 97646

    Table_3_TP53 Mutational Status-Based Genomic Signature for Prognosis and Predicting Therapeutic Response in Pancreatic Cancer.XLS by Feng Zhang (6548)

    Published 2021
    “…A five-gene TP53-associated signature was constructed in The Cancer Genome Atlas (TCGA) cohort by least absolute shrinkage and selection operator (LASSO)–Cox analysis and proven to be a robust prognostic predictor, which performed well in three independent Gene Expression Omnibus (GEO) validating cohorts. …”
  7. 97647

    Image_2_Pedigree-based analysis in multi-parental diploid rose populations reveals QTLs for cercospora leaf spot disease resistance.png by Zena J. Rawandoozi (14337270)

    Published 2023
    “…The study used pedigree-based QTL analysis to dissect the genetic basis of CLS resistance using two multi-parental diploid rose populations (TX2WOB and TX2WSE) evaluated across five years in two Texas locations. A total 38 QTLs were identified across both populations and distributed over all linkage groups. …”
  8. 97648

    Table_2_TP53 Mutational Status-Based Genomic Signature for Prognosis and Predicting Therapeutic Response in Pancreatic Cancer.XLS by Feng Zhang (6548)

    Published 2021
    “…A five-gene TP53-associated signature was constructed in The Cancer Genome Atlas (TCGA) cohort by least absolute shrinkage and selection operator (LASSO)–Cox analysis and proven to be a robust prognostic predictor, which performed well in three independent Gene Expression Omnibus (GEO) validating cohorts. …”
  9. 97649
  10. 97650
  11. 97651

    Image_1_Pedigree-based analysis in multi-parental diploid rose populations reveals QTLs for cercospora leaf spot disease resistance.png by Zena J. Rawandoozi (14337270)

    Published 2023
    “…The study used pedigree-based QTL analysis to dissect the genetic basis of CLS resistance using two multi-parental diploid rose populations (TX2WOB and TX2WSE) evaluated across five years in two Texas locations. A total 38 QTLs were identified across both populations and distributed over all linkage groups. …”
  12. 97652
  13. 97653
  14. 97654
  15. 97655

    <i>In Vitro</i> and <i>In Vivo</i> Anti-Schistosomal Activity of the Alkylphospholipid Analog Edelfosine by Edward Yepes (326743)

    Published 2014
    “…Edelfosine oral treatment also showed <i>in vivo</i> schistosomicidal activity and decreased significantly the egg burden in the liver, a key event in schistosomiasis.…”
  16. 97656

    Image_7_Pedigree-based analysis in multi-parental diploid rose populations reveals QTLs for cercospora leaf spot disease resistance.png by Zena J. Rawandoozi (14337270)

    Published 2023
    “…The study used pedigree-based QTL analysis to dissect the genetic basis of CLS resistance using two multi-parental diploid rose populations (TX2WOB and TX2WSE) evaluated across five years in two Texas locations. A total 38 QTLs were identified across both populations and distributed over all linkage groups. …”
  17. 97657
  18. 97658
  19. 97659
  20. 97660