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  4. Breast ultrasound computer-aided diagnosis using both acoustic and image features
 
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Breast ultrasound computer-aided diagnosis using both acoustic and image features

Journal
2007 International IEEE Ultrasonics Symposium
Date Issued
2007-10
Author(s)
H.-C. Yang
C.-H. Chang
S.-W. Huang
Y.-H. Chou
PAI-CHI LI  
DOI
10.1109/ULTSYM.2007.626
URI
http://scholars.lib.ntu.edu.tw/handle/123456789/334071
Abstract
Acoustic, texture, and morphological features of the breast in ultrasound imaging were extracted for computer-aided diagnosis. In addition, correlations among different categories of features were analyzed. Clinical data from 14 patients (7 malignant and 7 benign samples) were acquired. A custom-made setup was used for simultaneous data acquisition of B-mode ultrasound and limited-angle tomography images. Texture features were extracted from B-mode images, including Ave parameters derived from the gray-level concurrence matrix and five parameters derived from a nonseparable wavelet transform. Morphological features were also extracted from B-mode images, including the depth-to-width ratio and normalized radial gradient. Acoustic features were estimated using limited-angle tomography, including the sound velocity and attenuation coefficient. Generally, the correlation coefficients for features within the texture feature group were relatively high (0.48-0.79), whereas those between different feature categories were relatively low (0.17-0.40). This suggests that combining different sets of features would improve the computer-aided diagnosis of breast cancer. ? 2007 IEEE.
Subjects
Acoustic features; Attenuation; Breast ultrasound; Computer-aided diagnosis; Morphological features; Sound velocity; Texture features
SDGs

[SDGs]SDG3

Other Subjects
Acoustic waves; Acoustics; Correlation methods; Data acquisition; Diagnostic radiography; Image enhancement; Imaging techniques; Medical imaging; Textures; Thermography (temperature measurement); Tomography; Ultrasonic imaging; Ultrasonics; Wavelet transforms; Acoustic features; Attenuation; B-mode imaging; Breast cancers; Breast ultrasound; Clinical data; Correlation co-efficient; Gray levels; Image features; Morphological features; Nonseparable wavelets; Radial gradients; Sound velocity; Sound velocity and attenuation; Texture features; Ultrasound imaging; Width ratios; Computer aided diagnosis
Type
conference paper

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