DocumentCode :
627885
Title :
Multiresolution Image Analysis for Automatic Quantification of Collagen Gel Contraction
Author :
Hsin-Chen Chen ; Tai-Hua Yang ; Thoreson, Andrew R. ; Chunfeng Zhao ; Amadio, Peter C. ; Fong-Chin Su ; Wenyan Jia ; Yung-Nien Sun ; Kai-Nan An ; Mingui Sun
Author_Institution :
Depts. of Neurosurg., Univ. of Pittsburgh, Pittsburgh, PA, USA
fYear :
2013
fDate :
5-7 April 2013
Firstpage :
64
Lastpage :
65
Abstract :
Quantifying collagen gel contraction is important in tissue engineering and biological research because it provides spatial-temporal assessments of cell behaviors and tissue material properties. However, these assessments currently rely on manual processing, which is time-consuming and subjective to personal opinions. We present a multiresolution image analysis system for automatic quantification of gel contraction. This system includes a color conversion process to normalize and enhance the contrast between gel and background. Then, a deformable circular model is activated automatically to capture details of gel boundaries. These steps are coordinated by a multiresolution strategy. The target measurements are obtained after gel segmentation. Our experiments using 30 images demonstrated a high consistency between the proposed and manual segmentation methods. The system can process large-size images (4000×3000) at a rate of approximately one second per image. It thus serves as a useful tool for analyzing large biological and biomaterial imaging datasets efficiently and objectively.
Keywords :
biological tissues; biomedical materials; biomedical optical imaging; deformation; gels; image enhancement; image segmentation; medical image processing; molecular biophysics; proteins; tissue engineering; biological imaging dataset; biological research; biomaterial imaging dataset; cell behavior; collagen gel boundary capturing; collagen gel contraction; collagen gel segmentation; color conversion process; deformable circular model; multiresolution image analysis system; spatial-temporal assessment; tissue engineering; tissue material property; Image analysis; Image color analysis; Image segmentation; Manuals; Shape; Spatial resolution; deformable model; gel contraction; multiresolution;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Bioengineering Conference (NEBEC), 2013 39th Annual Northeast
Conference_Location :
Syracuse, NY
ISSN :
2160-7001
Print_ISBN :
978-1-4673-4928-4
Type :
conf
DOI :
10.1109/NEBEC.2013.115
Filename :
6574359
Link To Document :
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