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Live single cell functional phenotyping in droplet nano-liter reactors
Tania Konry
, Alexander Golberg
, Martin Yarmush
Research output
:
Contribution to journal
›
Article
›
peer-review
70
Scopus citations
Overview
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Dive into the research topics of 'Live single cell functional phenotyping in droplet nano-liter reactors'. Together they form a unique fingerprint.
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Keyphrases
Microenvironment
100%
Dendritic Cells
100%
Nanoliter
100%
Functional Phenotyping
100%
Nanoliter Reactor
100%
Biological Systems
50%
T Cells
50%
Living Cells
50%
Cell Behavior
50%
Gas Exchange
50%
Cell Stimulation
50%
Cell Surface
50%
Live-cell Microscopy
50%
Microfluidics
50%
Cell Surface Markers
50%
Cell Interaction
50%
Immunological Study
50%
Surface Monitoring
50%
Encapsulated Cells
50%
Reaction Volume
50%
Single Marker Analysis
50%
Droplet Microfluidics
50%
Cellular Heterogeneity
50%
Cell Secretion
50%
Nanoliter Droplets
50%
Secretion Analysis
50%
Immunology and Microbiology
Secretion (Process)
100%
Dendritic Cell
100%
T Cell
50%
Cell Function
50%
Cell Surface
50%
Cell Interaction
50%
Gas Exchange
50%
Microsphere
50%
Cell Stimulation
50%
Cell Surface Marker
50%
Cell Encapsulation
50%
Cellular Secretion
50%
Cell Heterogeneity
50%
In Vitro
50%
Biochemistry, Genetics and Molecular Biology
Secretion (Process)
100%
Dendritic Cell
66%
Cell Function
33%
T Cell
33%
Microsphere
33%
Gas Exchange
33%
Cell Stimulation
33%
Cell-Cell Interaction
33%
Cell Surface Marker
33%
Bioassay
33%
Cell Encapsulation
33%
Cell Heterogeneity
33%
Material Science
Microsphere
100%
T-Cells
100%