Recovery and Visualization of 3D Structure of Chromosomes from Tomographic Reconstruction Images

<p/> <p>The objectives of this work include automatic recovery and visualization of a 3D chromosome structure from a sequence of 2D tomographic reconstruction images taken through the nucleus of a cell. Structure is very important for biologists as it affects chromosome functions, behavi...

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Main Authors: Tsap Leonid V, Babu Sabarish, Liao Pao-Chuan, Shin Min C
Format: Article
Language:English
Published: SpringerOpen 2006-01-01
Series:EURASIP Journal on Advances in Signal Processing
Online Access:http://dx.doi.org/10.1155/ASP/2006/45684
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spelling doaj-40599b2cb11c4e0c99fd06f8c129ae432020-11-24T22:02:59ZengSpringerOpenEURASIP Journal on Advances in Signal Processing1687-61721687-61802006-01-0120061045684Recovery and Visualization of 3D Structure of Chromosomes from Tomographic Reconstruction ImagesTsap Leonid VBabu SabarishLiao Pao-ChuanShin Min C<p/> <p>The objectives of this work include automatic recovery and visualization of a 3D chromosome structure from a sequence of 2D tomographic reconstruction images taken through the nucleus of a cell. Structure is very important for biologists as it affects chromosome functions, behavior of the cell, and its state. Analysis of chromosome structure is significant in the detection of diseases, identification of chromosomal abnormalities, study of DNA structural conformation, in-depth study of chromosomal surface morphology, observation of in vivo behavior of the chromosomes over time, and in monitoring environmental gene mutations. The methodology incorporates thresholding based on a histogram analysis with a polyline splitting algorithm, contour extraction via active contours, and detection of the 3D chromosome structure by establishing corresponding regions throughout the slices. Visualization using point cloud meshing generates a 3D surface. The 3D triangular mesh of the chromosomes provides surface detail and allows a user to interactively analyze chromosomes using visualization software.</p> http://dx.doi.org/10.1155/ASP/2006/45684
collection DOAJ
language English
format Article
sources DOAJ
author Tsap Leonid V
Babu Sabarish
Liao Pao-Chuan
Shin Min C
spellingShingle Tsap Leonid V
Babu Sabarish
Liao Pao-Chuan
Shin Min C
Recovery and Visualization of 3D Structure of Chromosomes from Tomographic Reconstruction Images
EURASIP Journal on Advances in Signal Processing
author_facet Tsap Leonid V
Babu Sabarish
Liao Pao-Chuan
Shin Min C
author_sort Tsap Leonid V
title Recovery and Visualization of 3D Structure of Chromosomes from Tomographic Reconstruction Images
title_short Recovery and Visualization of 3D Structure of Chromosomes from Tomographic Reconstruction Images
title_full Recovery and Visualization of 3D Structure of Chromosomes from Tomographic Reconstruction Images
title_fullStr Recovery and Visualization of 3D Structure of Chromosomes from Tomographic Reconstruction Images
title_full_unstemmed Recovery and Visualization of 3D Structure of Chromosomes from Tomographic Reconstruction Images
title_sort recovery and visualization of 3d structure of chromosomes from tomographic reconstruction images
publisher SpringerOpen
series EURASIP Journal on Advances in Signal Processing
issn 1687-6172
1687-6180
publishDate 2006-01-01
description <p/> <p>The objectives of this work include automatic recovery and visualization of a 3D chromosome structure from a sequence of 2D tomographic reconstruction images taken through the nucleus of a cell. Structure is very important for biologists as it affects chromosome functions, behavior of the cell, and its state. Analysis of chromosome structure is significant in the detection of diseases, identification of chromosomal abnormalities, study of DNA structural conformation, in-depth study of chromosomal surface morphology, observation of in vivo behavior of the chromosomes over time, and in monitoring environmental gene mutations. The methodology incorporates thresholding based on a histogram analysis with a polyline splitting algorithm, contour extraction via active contours, and detection of the 3D chromosome structure by establishing corresponding regions throughout the slices. Visualization using point cloud meshing generates a 3D surface. The 3D triangular mesh of the chromosomes provides surface detail and allows a user to interactively analyze chromosomes using visualization software.</p>
url http://dx.doi.org/10.1155/ASP/2006/45684
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AT liaopaochuan recoveryandvisualizationof3dstructureofchromosomesfromtomographicreconstructionimages
AT shinminc recoveryandvisualizationof3dstructureofchromosomesfromtomographicreconstructionimages
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