We report the application of supervised machine learning to the automated classification of lipid droplets in label-free, quantitative-phase images. By comparing various machine learning methods commonly used in biomedical imaging and remote sensing, we found convolutional neural networks to outperform others, both quantitatively and qualitatively. We describe our imaging approach, all implemented machine learning methods, and their performance with respect to computational efficiency, required training resources, and relative method performance measured across multiple metrics. Overall, our results indicate that quantitative-phase imaging coupled to machine learning enables accurate lipid droplet classification in single living cells. As s...
Cell membranes are believed to be laterally ordered into micro and nano-domains comprising of more f...
There is increasing evidence showing that cytosolic lipid droplets, present in all eukaryotic cells,...
Spatial heterogeneity at the molecular scale is a ubiquitous feature of all biological tissues, whic...
Label-free cell analysis is essential to personalized genomics, cancer diagnostics, and drug develop...
High-throughput multivariate sensing is essential for high-content cellular phenotypic screening, wh...
All living systems are maintained by a constant flux of metabolic energy and, among the different re...
This book introduces time-stretch quantitative phase imaging (TS-QPI), a high-throughput label-free ...
AbstractLipid droplets (LDs) are highly dynamic organelles that perform multiple functions, includin...
The importance of membrane reconstruction with giant unilamellar vesicles and optical imaging in bio...
Today new drugs are tested on cell cultures in wells to minimize time, cost, andanimal testing. The ...
Lipid droplets (LDs), present in many cell types, are highly dynamic organelles that store neutral l...
Image cytometry is the analysis of cell properties from microscopy image data and is used ubiquitous...
There is increasing evidence showing that cytosolic lipid droplets, present in all eucaryotic cells,...
Quantitative characterization of a single-cell phenotype remains challenging. We combined a scalable...
Quantitative characterization of a single-cell phenotype remains challenging. We combined a scalable...
Cell membranes are believed to be laterally ordered into micro and nano-domains comprising of more f...
There is increasing evidence showing that cytosolic lipid droplets, present in all eukaryotic cells,...
Spatial heterogeneity at the molecular scale is a ubiquitous feature of all biological tissues, whic...
Label-free cell analysis is essential to personalized genomics, cancer diagnostics, and drug develop...
High-throughput multivariate sensing is essential for high-content cellular phenotypic screening, wh...
All living systems are maintained by a constant flux of metabolic energy and, among the different re...
This book introduces time-stretch quantitative phase imaging (TS-QPI), a high-throughput label-free ...
AbstractLipid droplets (LDs) are highly dynamic organelles that perform multiple functions, includin...
The importance of membrane reconstruction with giant unilamellar vesicles and optical imaging in bio...
Today new drugs are tested on cell cultures in wells to minimize time, cost, andanimal testing. The ...
Lipid droplets (LDs), present in many cell types, are highly dynamic organelles that store neutral l...
Image cytometry is the analysis of cell properties from microscopy image data and is used ubiquitous...
There is increasing evidence showing that cytosolic lipid droplets, present in all eucaryotic cells,...
Quantitative characterization of a single-cell phenotype remains challenging. We combined a scalable...
Quantitative characterization of a single-cell phenotype remains challenging. We combined a scalable...
Cell membranes are believed to be laterally ordered into micro and nano-domains comprising of more f...
There is increasing evidence showing that cytosolic lipid droplets, present in all eukaryotic cells,...
Spatial heterogeneity at the molecular scale is a ubiquitous feature of all biological tissues, whic...