Search alternatives:
significant decrease » significant increase (Expand Search), significantly increased (Expand Search)
significant fold » significant force (Expand Search), significant co (Expand Search), significant all (Expand Search)
fold decrease » fold increase (Expand Search), fold increased (Expand Search), fold increases (Expand Search)
significant decrease » significant increase (Expand Search), significantly increased (Expand Search)
significant fold » significant force (Expand Search), significant co (Expand Search), significant all (Expand Search)
fold decrease » fold increase (Expand Search), fold increased (Expand Search), fold increases (Expand Search)
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4321
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4322
Imaging CDK4/6 Broaden Options of Breast Cancer Diagnostics with Positron Emission Tomography
Published 2025Subjects: -
4323
Cinnamaldehyde repellency test within 6 hours in parthenogenesis <i>H. longicornis.</i>
Published 2025Subjects: -
4324
IRs -EGFP-N1 (red) in transfected HEK 293T cells assessed by confocal microscopy.
Published 2025Subjects: -
4325
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4326
Negative Intrinsic Viscosity in Graphene Nanoparticle Suspensions Induced by Hydrodynamic Slip
Published 2025“…As the concentration of graphene particles increases in the dilute regime, the viscosity initially decreases, falling below that of pure water. At higher concentrations, however, particle aggregation becomes significant, leading to a rise in viscosity after a minimum is reached. …”
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4327
Negative Intrinsic Viscosity in Graphene Nanoparticle Suspensions Induced by Hydrodynamic Slip
Published 2025“…As the concentration of graphene particles increases in the dilute regime, the viscosity initially decreases, falling below that of pure water. At higher concentrations, however, particle aggregation becomes significant, leading to a rise in viscosity after a minimum is reached. …”
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4328
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4329
Enhanced Cell Proliferation and Maturation Using Carboxylated Bacterial Nanocellulose Scaffolds for 3D Cell Culture
Published 2025“…The surface properties and fibrillar structure of BNC–COOH facilitated the formation of hydrogels with significantly enhanced water uptake (1.4-fold) and adhesion force (2.3-fold) compared to BNC. …”
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4330
Enhanced Cell Proliferation and Maturation Using Carboxylated Bacterial Nanocellulose Scaffolds for 3D Cell Culture
Published 2025“…The surface properties and fibrillar structure of BNC–COOH facilitated the formation of hydrogels with significantly enhanced water uptake (1.4-fold) and adhesion force (2.3-fold) compared to BNC. …”
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4331
Enhanced Cell Proliferation and Maturation Using Carboxylated Bacterial Nanocellulose Scaffolds for 3D Cell Culture
Published 2025“…The surface properties and fibrillar structure of BNC–COOH facilitated the formation of hydrogels with significantly enhanced water uptake (1.4-fold) and adhesion force (2.3-fold) compared to BNC. …”
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4332
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4333
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4334
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4335
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4336
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4337
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4338
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4339
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4340
Pathological changes in lung tissue of mice exposed to continuous inhalation of CS.
Published 2024Subjects: