Title :
An Adaptive Inverse Image Construction Method for Contrast 3D Echocardiography
Author :
Shaheen, Anjuman ; Rajpoot, Kashif
Author_Institution :
Sch. of Electr. Eng. & Comput. Sci. (SEECS), Nat. Univ. of Sci. & Technol. (NUST), Islamabad, Pakistan
Abstract :
Contrast 3D echocardiography (C3DE) enhances the visual quality of ultrasound images in comparison with conventional 3D echocardiography (3DE). Though the image quality in C3DE is perceived to be improved for visual analysis, but it actually deteriorates for the purpose of automatic or semi-automatic analysis due to high speckle noise and intensity in homogeneity. Therefore, the left ventricle (LV) endocardial feature extraction and segmentation from C3DE images remains a challenging problem. To overcome this challenge, this work proposes a simple adaptive method to invert the appearance of C3DE image. In this inverted appearance, the LV cavity appears dark while the myocardium appears bright similar to 3DE image. Moreover, the resulting inverted image has high contrast and low noise appearance, yielding strong LV endocardium boundary and facilitating feature extraction for segmentation. The proposed method inverts the C3DE image by using a threshold that is determined automatically through image histogram analysis. Subsequently, the inverted image information is utilized in an edge-driven LV feature extraction and segmentation method. The segmentation results of LV boundary delineation are compared to manual LV boundary delineation and a good match is observed.
Keywords :
echocardiography; feature extraction; image segmentation; medical image processing; speckle; C3DE image; LV boundary delineation; LV endocardial feature extraction; LV endocardial segmentatoin; LV endocardium boundary; adaptive inverse image construction method; contrast 3D echocardiography; fLV cavity; image histogram analysis; image quality; inverted image information; left ventricle endocardial feature extraction; left ventricle endocardial segmentation; low noise appearance; myocardium; semiautomatic analysis; speckle noise; ultrasound images; visual analysis; visual quality; Blood; Cavity resonators; Echocardiography; Estimation; Feature extraction; Histograms; Image segmentation; Contrast 3D echocardiography; LV feature extraction; histogram; image inversion;
Conference_Titel :
Frontiers of Information Technology (FIT), 2014 12th International Conference on
Print_ISBN :
978-1-4799-7504-4
DOI :
10.1109/FIT.2014.69