Title :
3D image processing for mitochondria morphology variation analysis
Author :
Han-Wei Dan ; Wan-Chi Hung ; Yuh-Show Tsai ; Chung-Chih Lin
Author_Institution :
Dept. of Biomed. Eng. & Center of Biomed. Technol., Chung Yuan Christian Univ., Chungli, Taiwan
Abstract :
Mitochondria play an important role in producing energy of cell, aging and cell death. Previous investigations suggest that mitochondrial dysfunctions are associated with neurodegenerative, and the peripheral blood cells of those patients have validation of mitochondrial morphology. This study presents an analysis system of automated 3D mitochondrial morphology of lymphocytes in 3D images to reveal morphological features of mitochondria, and this system is specific for analyzing mice T lymphocyte precursors in thymus and mature lymphocytes in spleen. Mitochondria in original confocal and deconvoluted wild-field micrographs are segmented by Support Vector Machine, and then image features are extracted for morphological subtype clustering. The distribution of subtypes in individual lymphocytes is used to classify precursors and mature lymphocytes by decision tree. There are more short tubules in spleen lymphocyte, and more globules in thymus lymphocyte. The accuracy of cell classified from confocal and wild-field images in this system are both over 96% for training set, and for testing set, the accuracy for confocal and wild-field micrographs are 79% and 71% respectively. In conclusions, this new system can be used for investigations of lymphocyte development and drug discovery for inflammation and immunity.
Keywords :
biological organs; biomedical optical imaging; blood; cellular biophysics; decision trees; deconvolution; feature extraction; image classification; image segmentation; medical image processing; optical microscopy; support vector machines; 3D image processing; automated 3D mitochondrial morphology; cell aging; cell death; cell energy; confocal wild-field micrographs; decision tree; deconvoluted wild-field micrographs; drug discovery; image feature extraction; image segmentation; immunity; inflammation; mature lymphocytes; mice T lymphocyte precursors; mitochondria morphology variation analysis; mitochondrial dysfunctions; morphological features; morphological subtype clustering; neurodegenerative; peripheral blood cells; precursor classification; spleen lymphocyte; support vector machine; testing set; thymus lymphocyte; training set; tubules; Accuracy; Deconvolution; Diseases; Feature extraction; Microscopy; Morphology; Three-dimensional displays; 3D image analysis; deconvolution; image processing; mitochondrial morphology;
Conference_Titel :
Bioelectronics and Bioinformatics (ISBB), 2014 IEEE International Symposium on
Conference_Location :
Chung Li
Print_ISBN :
978-1-4799-2769-2
DOI :
10.1109/ISBB.2014.6820953