Related Experiment Video
Updated: Jan 20, 2026

Label-Free Imaging of Single Proteins Secreted from Living Cells via iSCAT Microscopy
Published on: November 20, 2018
Learning unsupervised feature representations for single cell microscopy images with paired cell inpainting
Alex X Lu1, Oren Z Kraus2, Sam Cooper2
1Department of Computer Science, University of Toronto, Toronto, Canada.
Abstract:
Cellular microscopy images contain rich insights about biology. To extract this information, researchers use features, or measurements of the patterns of interest in the images. Here, we introduce a convolutional neural network (CNN) to automatically design features for fluorescence microscopy. We use a self-supervised method to learn feature representations of single cells in microscopy images without labelled training data. We train CNNs on a simple task that leverages the inherent structure of microscopy images and controls for variation in cell morphology and imaging: given one cell from an image, the CNN is asked to predict the fluorescence pattern in a second different cell from the same image. We show that our method learns high-quality features that describe protein expression patterns in single cells both yeast and human microscopy datasets. Moreover, we demonstrate that our features are useful for exploratory biological analysis, by capturing high-resolution cellular components in a proteome-wide cluster analysis of human proteins, and by quantifying multi-localized proteins and single-cell variability. We believe paired cell inpainting is a generalizable method to obtain feature representations of single cells in multichannel microscopy images.
Related Concept Videos
10:55Label-Free Imaging of Single Proteins Secreted from Living Cells via iSCAT Microscopy
15:00Long-term Imaging Mammalian Cells using Wide-Field Microscopy
06:33Three-dimensional Imaging of Bacterial Cells for Accurate Cellular Representations and Precise Protein Localization
07:29Reconstruction of Single-Cell Innate Fluorescence Signatures by Confocal Microscopy
06:15Quantification of Efferocytosis by Single-cell Fluorescence Microscopy
10:41Generation of Dispersed Presomitic Mesoderm Cell Cultures for Imaging of the Zebrafish Segmentation Clock in Single Cells

