MAJTNER, Tomáš and David SVOBODA. Extension of Tamura Texture Features for 3D Fluorescence Microscopy. In 2012 Second Joint 3DIM/3DPVT Conference: 3D Imaging, Modeling, Processing, Visualization & Transmission. Los Alamitos, CA, USA: IEEE Computer Society, 2012, p. 301-307. ISBN 978-0-7695-4873-9.
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Basic information
Original name Extension of Tamura Texture Features for 3D Fluorescence Microscopy
Authors MAJTNER, Tomáš (703 Slovakia, belonging to the institution) and David SVOBODA (203 Czech Republic, guarantor, belonging to the institution).
Edition Los Alamitos, CA, USA, 2012 Second Joint 3DIM/3DPVT Conference: 3D Imaging, Modeling, Processing, Visualization & Transmission, p. 301-307, 7 pp. 2012.
Publisher IEEE Computer Society
Other information
Original language English
Type of outcome Proceedings paper
Field of Study 20200 2.2 Electrical engineering, Electronic engineering, Information engineering
Country of publisher Switzerland
Confidentiality degree is not subject to a state or trade secret
Publication form printed version "print"
RIV identification code RIV/00216224:14330/12:00057527
Organization unit Faculty of Informatics
ISBN 978-0-7695-4873-9
UT WoS 000337507600039
Keywords in English image descriptors; Tamura features; 3D
Tags cbia-web
Tags International impact, Reviewed
Changed by Changed by: RNDr. Ing. Bc. Tomáš Majtner, Ph.D., učo 172786. Changed: 21/1/2013 09:09.
Abstract
The image descriptors are a very useful tool in the task of classification. In biomedical image analysis, they may characterize either the shape or the internal structure of studied objects. Both characteristics are very important. When analysing cells, their shape is usually determined first. In the second step, their mask may be used for the selection of the area where the texture descriptor should be applied. In this paper, we are going to focus on the texture-based image descriptors called Tamura features. For their basic properties, they seem to be a very promising tool applicable to the biomedical image data. We will apply them to selected types of cell lines and test how they perform. We will also introduce their extension to higher dimensions and show that they give even better results than in the 2D case.
Links
GBP302/12/G157, research and development projectName: Dynamika a organizace chromosomů během buněčného cyklu a při diferenciaci v normě a patologii
Investor: Czech Science Foundation
MUNI/A/0914/2009, interní kód MUName: Rozsáhlé výpočetní systémy: modely, aplikace a verifikace (Acronym: SV-FI MAV)
Investor: Masaryk University, Category A
PrintDisplayed: 12/6/2024 01:46