Search alternatives:
larger decrease » marked decrease (Expand Search)
large decrease » marked decrease (Expand Search), large increases (Expand Search), large degree (Expand Search)
task decrease » a decrease (Expand Search), teer decrease (Expand Search), ash decreased (Expand Search)
larger decrease » marked decrease (Expand Search)
large decrease » marked decrease (Expand Search), large increases (Expand Search), large degree (Expand Search)
task decrease » a decrease (Expand Search), teer decrease (Expand Search), ash decreased (Expand Search)
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Continuous, Label-Free Phenotyping of Single Cells Based on Antibody Interaction Profiling in Microfluidic Channels
Published 2025“…Using computational imaging, numerous cells are tracked across a large field of view (12 × 3 mm<sup>2</sup>) and the resulting motion profiles are used for phenotypic cell characterization. …”
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66
Continuous, Label-Free Phenotyping of Single Cells Based on Antibody Interaction Profiling in Microfluidic Channels
Published 2025“…Using computational imaging, numerous cells are tracked across a large field of view (12 × 3 mm<sup>2</sup>) and the resulting motion profiles are used for phenotypic cell characterization. …”
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67
Continuous, Label-Free Phenotyping of Single Cells Based on Antibody Interaction Profiling in Microfluidic Channels
Published 2025“…Using computational imaging, numerous cells are tracked across a large field of view (12 × 3 mm<sup>2</sup>) and the resulting motion profiles are used for phenotypic cell characterization. …”
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68
Continuous, Label-Free Phenotyping of Single Cells Based on Antibody Interaction Profiling in Microfluidic Channels
Published 2025“…Using computational imaging, numerous cells are tracked across a large field of view (12 × 3 mm<sup>2</sup>) and the resulting motion profiles are used for phenotypic cell characterization. …”
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69
Continuous, Label-Free Phenotyping of Single Cells Based on Antibody Interaction Profiling in Microfluidic Channels
Published 2025“…Using computational imaging, numerous cells are tracked across a large field of view (12 × 3 mm<sup>2</sup>) and the resulting motion profiles are used for phenotypic cell characterization. …”
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70
Continuous, Label-Free Phenotyping of Single Cells Based on Antibody Interaction Profiling in Microfluidic Channels
Published 2025“…Using computational imaging, numerous cells are tracked across a large field of view (12 × 3 mm<sup>2</sup>) and the resulting motion profiles are used for phenotypic cell characterization. …”
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71
Continuous, Label-Free Phenotyping of Single Cells Based on Antibody Interaction Profiling in Microfluidic Channels
Published 2025“…Using computational imaging, numerous cells are tracked across a large field of view (12 × 3 mm<sup>2</sup>) and the resulting motion profiles are used for phenotypic cell characterization. …”
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72
Continuous, Label-Free Phenotyping of Single Cells Based on Antibody Interaction Profiling in Microfluidic Channels
Published 2025“…Using computational imaging, numerous cells are tracked across a large field of view (12 × 3 mm<sup>2</sup>) and the resulting motion profiles are used for phenotypic cell characterization. …”
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73
Continuous, Label-Free Phenotyping of Single Cells Based on Antibody Interaction Profiling in Microfluidic Channels
Published 2025“…Using computational imaging, numerous cells are tracked across a large field of view (12 × 3 mm<sup>2</sup>) and the resulting motion profiles are used for phenotypic cell characterization. …”
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