Automated Image Analysis for High-Content Screening and Analysis

Author:

Shariff Aabid12,Kangas Joshua12,Coelho Luis Pedro12,Quinn Shannon13,Murphy Robert F.12345

Affiliation:

1. Lane Center for Computational Biology and Center for Bioimage Informatics, Carnegie Mellon University, Pittsburgh, PA.

2. Joint Carnegie Mellon University–University of Pittsburgh Ph.D. Program in Computational Biology, Pittsburgh, PA.

3. Department of Biological Sciences, Carnegie Mellon University, Pittsburgh, PA.

4. Departments of Biomedical Engineering and Machine Learning, Carnegie Mellon University, Pittsburgh, PA.

5. Freiburg Institute for Advanced Studies, Albert Ludwig University of Freiburg, Freiburg, Germany.

Abstract

The field of high-content screening and analysis consists of a set of methodologies for automated discovery in cell biology and drug development using large amounts of image data. In most cases, imaging is carried out by automated microscopes, often assisted by automated liquid handling and cell culture. Image processing, computer vision, and machine learning are used to automatically process high-dimensional image data into meaningful cell biological results. The key is creating automated analysis pipelines typically consisting of 4 basic steps: (1) image processing (normalization, segmentation, tracing, tracking), (2) spatial transformation to bring images to a common reference frame (registration), (3) computation of image features, and (4) machine learning for modeling and interpretation of data. An overview of these image analysis tools is presented here, along with brief descriptions of a few applications.

Publisher

Elsevier BV

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