Search alternatives:
altered decrease » altered release (Expand Search), teer decrease (Expand Search)
altered decrease » altered release (Expand Search), teer decrease (Expand Search)
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1901
Univariate and multivariable analyses for OS.
Published 2025“…</p><p>Results</p><p>The findings indicated that high pre-RT D-dimer concentrations were significantly assoccciated with advanced stages of disease, worse response of radiotherapy, Eastern Cooperative Oncology Group performance status, and decreased survival outcomes. …”
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1902
Characteristics of LC patients.
Published 2025“…</p><p>Results</p><p>The findings indicated that high pre-RT D-dimer concentrations were significantly assoccciated with advanced stages of disease, worse response of radiotherapy, Eastern Cooperative Oncology Group performance status, and decreased survival outcomes. …”
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1903
Flowchart of this study.
Published 2025“…</p><p>Results</p><p>The findings indicated that high pre-RT D-dimer concentrations were significantly assoccciated with advanced stages of disease, worse response of radiotherapy, Eastern Cooperative Oncology Group performance status, and decreased survival outcomes. …”
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1904
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1905
Bacterial strains and plasmids.
Published 2025“…Furthermore, the SL1344Δ<i>bipA</i> and 14028Δ<i>bipA</i> strains exhibited significantly decreased swimming motility at 20°C compared to 37°C, confirmed by microscopic observation showing fewer flagella at 20°C. …”
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1906
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1907
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
Published 2025“…Velocity changes do not significantly impact friction or structural deformation, as the motion patterns of the probe and nanoparticles remain consistent. …”
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1908
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
Published 2025“…Velocity changes do not significantly impact friction or structural deformation, as the motion patterns of the probe and nanoparticles remain consistent. …”
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1909
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
Published 2025“…Velocity changes do not significantly impact friction or structural deformation, as the motion patterns of the probe and nanoparticles remain consistent. …”
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1910
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
Published 2025“…Velocity changes do not significantly impact friction or structural deformation, as the motion patterns of the probe and nanoparticles remain consistent. …”
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1911
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
Published 2025“…Velocity changes do not significantly impact friction or structural deformation, as the motion patterns of the probe and nanoparticles remain consistent. …”
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1912
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
Published 2025“…Velocity changes do not significantly impact friction or structural deformation, as the motion patterns of the probe and nanoparticles remain consistent. …”
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1913
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
Published 2025“…Velocity changes do not significantly impact friction or structural deformation, as the motion patterns of the probe and nanoparticles remain consistent. …”
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1914
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
Published 2025“…Velocity changes do not significantly impact friction or structural deformation, as the motion patterns of the probe and nanoparticles remain consistent. …”
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1915
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
Published 2025“…Velocity changes do not significantly impact friction or structural deformation, as the motion patterns of the probe and nanoparticles remain consistent. …”
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1916
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
Published 2025“…Velocity changes do not significantly impact friction or structural deformation, as the motion patterns of the probe and nanoparticles remain consistent. …”
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1917
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
Published 2025“…Velocity changes do not significantly impact friction or structural deformation, as the motion patterns of the probe and nanoparticles remain consistent. …”
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1918
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
Published 2025“…Velocity changes do not significantly impact friction or structural deformation, as the motion patterns of the probe and nanoparticles remain consistent. …”
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1919
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
Published 2025“…Velocity changes do not significantly impact friction or structural deformation, as the motion patterns of the probe and nanoparticles remain consistent. …”
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1920
Lubrication Behavior of Fullerene-Coated Nanoparticles on Rough Surfaces
Published 2025“…Velocity changes do not significantly impact friction or structural deformation, as the motion patterns of the probe and nanoparticles remain consistent. …”