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PMID: 12723058 Published · ppublish English Comparative Study Evaluation Study Journal Article Research Support, U.S. Gov't, Non-P.H.S. Validation Study

Harmonic cut and regularized centroid transform for localization of subcellular structures.

IEEE transactions on bio-medical engineering ·Vol. 50 ·No. 4 ·2003-04-00 ·Pages 469-75

Yang Q, Parvin B

Abstract

Two novel computational techniques, harmonic cut and regularized centroid transform, are developed for segmentation of cells and their corresponding substructures observed with an epi-fluorescence microscope. Harmonic cut detects small regions that correspond to small subcellular structures. These regions also affect the accuracy of the overall segmentation. They are detected, removed, and interpolated to ensure continuity within each region. We show that interpolation within each region (subcellular compartment) is equivalent to solving the Laplace equation on a multi-connected domain with irregular boundaries. The second technique, referred to as the regularized centroid transform, aims to separate touching compartments. This is achieved by adopting a quadratic model for the shape of the object and relaxing it for final segmentation.

MeSH Terms
Algorithms Cells/cytology Image Enhancement/methods Image Interpretation, Computer-Assisted/methods Microscopy, Confocal/methods Microscopy, Fluorescence/methods Pattern Recognition, Automated
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Yang Qing
Imaging and Informatics Group, Computational Science Division, Lawrence Berkeley National Laboratory, 1 Cyclotron Road, MS 50B-2239, Berkeley, CA 94720 USA. [email protected]
Parvin Bahram
Article Info
Journal
IEEE transactions on bio-medical engineering
Abbr.
IEEE Trans Biomed Eng
ISSN
0018-9294
Published
2003-04-00
Pages
469-75
Language
English
Region
United States
NLM ID
0012737
Subset
IM
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