Showing 161 - 180 results of 42,900 for search '(((( c largest decrease ) OR ( ((c large) OR (i large)) decrease ))) OR ( 1 cases increased ))*', query time: 3.22s Refine Results
  1. 161

    Table_1_Nonclassical Monocytes Are Prone to Migrate Into Tumor in Diffuse Large B-Cell Lymphoma.xlsx by Simon Le Gallou (10742601)

    Published 2021
    “…Herein, we broadly assessed circulating monocyte heterogeneity in 91 DLBCL patients. Classical- (cMO, CD14<sup>pos</sup> CD16<sup>neg</sup>) and intermediate- (iMO, CD14<sup>pos</sup> CD16<sup>pos</sup>) monocytes accumulated in DLBCL peripheral blood and exhibited an inflammatory phenotype. …”
  2. 162

    Image_1_Nonclassical Monocytes Are Prone to Migrate Into Tumor in Diffuse Large B-Cell Lymphoma.pdf by Simon Le Gallou (10742601)

    Published 2021
    “…Herein, we broadly assessed circulating monocyte heterogeneity in 91 DLBCL patients. Classical- (cMO, CD14<sup>pos</sup> CD16<sup>neg</sup>) and intermediate- (iMO, CD14<sup>pos</sup> CD16<sup>pos</sup>) monocytes accumulated in DLBCL peripheral blood and exhibited an inflammatory phenotype. …”
  3. 163

    Supplementary Materials for Genotypic and phenotypic spectrum and pathogenesis of WNT1 variants in a large cohort of patients with OI / osteoporosis by Jing Hu (14249099)

    Published 2022
    “…Western blot analysis, qPCR, and immunofluorescence staining were used to evaluate the expression levels of WNT1, total β-catenin, and type I collagen in the tibial bone or skin from one patient. …”
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    Multistage Condensation Pathway Minimizes Hysteresis in Water Harvesting with Large-Pore Metal–Organic Frameworks by Alberto Zaragoza (17752617)

    Published 2024
    “…Co<sub>2</sub>Cl<sub>2</sub>(BTDD) is a noteworthy exception. This MOF has large, 2.2 nm diameter one-dimensional pores and combines both record-high water capacity and minimal hysteresis, making it an excellent material for water capture in arid areas. …”
  9. 169

    Multistage Condensation Pathway Minimizes Hysteresis in Water Harvesting with Large-Pore Metal–Organic Frameworks by Alberto Zaragoza (17752617)

    Published 2024
    “…Co<sub>2</sub>Cl<sub>2</sub>(BTDD) is a noteworthy exception. This MOF has large, 2.2 nm diameter one-dimensional pores and combines both record-high water capacity and minimal hysteresis, making it an excellent material for water capture in arid areas. …”
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    Treatment compartment changes the dynamics with increasing the number of infected cases of HIV; Treatment population are increasing with increasing the value of <i>λ</i><sub>2</sub>. by Dilber Uzun Ozsahin (18320075)

    Published 2024
    “…<p>Treatment compartment changes the dynamics with increasing the number of infected cases of HIV; Treatment population are increasing with increasing the value of <i>λ</i><sub>2</sub>.…”
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    Large and Tunable Wavelength Blue Shifts in Luminescent Piezochromism of Cu(I) Complexes via a Guest Encapsulation Strategy by Wan-Tao Chen (330486)

    Published 2024
    “…Detailed study reveals that, after grinding, the stacking mode of Cu­(I) complexes cracks and the encapsulated guests release rapidly, along with the decrease in the surrounding polarity of emitters and the corresponding luminescence change. …”
  19. 179

    Large and Tunable Wavelength Blue Shifts in Luminescent Piezochromism of Cu(I) Complexes via a Guest Encapsulation Strategy by Wan-Tao Chen (330486)

    Published 2024
    “…Detailed study reveals that, after grinding, the stacking mode of Cu­(I) complexes cracks and the encapsulated guests release rapidly, along with the decrease in the surrounding polarity of emitters and the corresponding luminescence change. …”
  20. 180

    Large and Tunable Wavelength Blue Shifts in Luminescent Piezochromism of Cu(I) Complexes via a Guest Encapsulation Strategy by Wan-Tao Chen (330486)

    Published 2024
    “…Detailed study reveals that, after grinding, the stacking mode of Cu­(I) complexes cracks and the encapsulated guests release rapidly, along with the decrease in the surrounding polarity of emitters and the corresponding luminescence change. …”