Related Experiment Video
Updated: Jun 12, 2026

Quantitative Multispectral Analysis Following Fluorescent Tissue Transplant for Visualization of Cell Origins, Types, and Interactions
Published on: September 22, 2013
3D geometry-based quantification of colocalizations in multichannel 3D microscopy images of human soft tissue tumors
Stefan Wörz1, Petra Sander, Martin Pfannmöller
1Department Bioinformatics and Functional Genomics, Biomedical Computer Vision Group, University of Heidelberg, IPMB, BIOQUANT, and DKFZ Heidelberg, 69120 Heidelberg, Germany. s.woerz@dkfz.de
Abstract:
We introduce a new model-based approach for automatic quantification of colocalizations in multichannel 3D microscopy images. The approach uses different 3D parametric intensity models in conjunction with a model fitting scheme to localize and quantify subcellular structures with high accuracy. The central idea is to determine colocalizations between different channels based on the estimated geometry of the subcellular structures as well as to differentiate between different types of colocalizations. A statistical analysis was performed to assess the significance of the determined colocalizations. This approach was used to successfully analyze about 500 three-channel 3D microscopy images of human soft tissue tumors and controls.

