DocumentCode :
1949460
Title :
Adaptive cell nuclei detection from fluorescence images by optimizing object sizes
Author :
Bashar, M.K. ; Fujimori, Takumi ; Komatsu, Kazuhiko ; Kobayashi, Tetsuya J.
Author_Institution :
Inst. of Ind. Sci., Univ. of Tokyo, Tokyo, Japan
fYear :
2012
fDate :
17-19 Dec. 2012
Firstpage :
621
Lastpage :
626
Abstract :
Although a few attempts were observed, there are high biological demands for the extraction of three dimensional cell nuclei from cellular images. Most common methods are manual and their results include subjective errors. Some other methods apply segmentation followed by centroid extraction. However, high dimensional segmentation is still unreliable, especially for biomedical images having juxtaposed cells. In this research, we propose direct method that exploits intensity distribution and object geometry to extract nuclei centroids from fluorescence microscopy images. A spatiotemporal adaptive multiscale filtering is applied for the object enhancement with noise suppression. A two-stage procedure is then followed. In Stage-1, we extract candidate centroids for the probable cell nuclei based on a local characteristic ratio (R) at every voxel. In Stage-2, an iterative procedure is proposed, which estimates approximate object radius from each candidate centroid by maximizing mean intensity gradients over successive pairs of regions in the enhanced image and removing smaller spurious objects. Investigations and quantitative analysis with a set 100 3D mouse embryo images reveal a promising performance of the proposed method in terms of average sensitivity and positional error, compared to an existing method.
Keywords :
biomedical optical imaging; cellular biophysics; feature extraction; fluorescence; geometry; image denoising; image enhancement; image segmentation; iterative methods; medical image processing; optical microscopy; 3D cell nuclei extraction; adaptive cell nuclei detection; biomedical images; cell centroid extraction; cell local characteristic ratio; cellular images; centroid approximate object radius; fluorescence microscopy images; high dimensional segmentation; image enhancement; image juxtaposed cells; image noise suppression; image segmentation; image voxels; intensity distribution; iterative procedure; mean intensity gradients; mouse embryo images; object enhancement; object geometry; object size optimization; spatiotemporal adaptive multiscale filtering; adaptive multiscale cube filtering; characteristics voxel ratio; intensity gradient tracking;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Biomedical Engineering and Sciences (IECBES), 2012 IEEE EMBS Conference on
Conference_Location :
Langkawi
Print_ISBN :
978-1-4673-1664-4
Type :
conf
DOI :
10.1109/IECBES.2012.6498044
Filename :
6498044
Link To Document :
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