Kothapalli Sri-Rajasekhar, Yelleswarapu Chandra S, Naraharisetty Sriram G, Wu Pengfei, Rao D V G L N
Department of Physics, University of Massachusetts Boston, 100 Morrissey Blvd, Boston, Massachusetts, 02125, USA.
Acad Radiol. 2005 Jun;12(6):708-21. doi: 10.1016/j.acra.2004.09.017.
To exploit the spectral phase characteristics of digital or digitized mammograms for early detection of microcalcifications, shape, and sizes of suspected lesions and to demonstrate its use for training radiologists to discriminate signal features in different spatially varying backgrounds.
We propose two algorithms: in the phase-only image (POI) reconstruction algorithm the spectral phase of the digital mammogram is extracted from its Fourier spectrum. This is coupled with unit magnitude and inverse Fourier transformed to reconstruct the POI thus enhancing the features of interest such as microcalcifications, shape, and sizes of suspected lesions. In the algorithm for image reconstruction from a priori phase-only information, spectral phase is used to extract signal features of the digital mammogram and then this is combined with spectral magnitude that is extracted and averaged over an ensemble of unrelated digital mammograms.
The results for several digital phantoms and mammograms show that POI reconstructs only high spatial frequencies related to the features such as microcalcifications, shape, and size of masses like cysts and tumors. The results on image reconstruction from a priori phase-only information demonstrate the changes in the visibility of signal features when buried in a wide variety of real world mammogram backgrounds with different densities.
The POI can aid radiologists in early detection of microcalcifications, lesions, and other masses of interest in digital mammograms. This reconstruction method is self-adaptive to changes in the background. The image reconstruction from a priori phase-only information can help the radiologist as a training tool in his decision-making process. Preliminary experiments indicate the potential of the techniques for early diagnosis of breast cancer. Clinical studies on these algorithm procedures are in progress for application as a diagnostic CAD tool in digital mammography. These methods can in general be applied to other medical images such as CT and MRI images.
利用数字乳腺X线摄影或数字化乳腺X线摄影的频谱相位特征来早期检测微钙化、可疑病变的形状和大小,并展示其在训练放射科医生辨别不同空间变化背景下的信号特征方面的应用。
我们提出了两种算法:在仅相位图像(POI)重建算法中,从数字乳腺X线摄影的傅里叶频谱中提取其频谱相位。将其与单位幅度相结合并进行傅里叶逆变换以重建POI,从而增强感兴趣的特征,如微钙化、可疑病变的形状和大小。在先验仅相位信息的图像重建算法中,频谱相位用于提取数字乳腺X线摄影的信号特征,然后将其与从一组不相关的数字乳腺X线摄影中提取并平均的频谱幅度相结合。
对多个数字体模和乳腺X线摄影的结果表明,POI仅重建与微钙化、囊肿和肿瘤等肿块的形状和大小等特征相关的高空间频率。在先验仅相位信息的图像重建结果表明,当信号特征埋藏在具有不同密度的各种真实世界乳腺X线摄影背景中时,其可见性会发生变化。
POI有助于放射科医生早期检测数字乳腺X线摄影中的微钙化、病变和其他感兴趣的肿块。这种重建方法对背景变化具有自适应性。先验仅相位信息的图像重建可以作为一种训练工具,帮助放射科医生进行决策。初步实验表明了这些技术在乳腺癌早期诊断方面的潜力。关于这些算法程序的临床研究正在进行中,以作为数字乳腺X线摄影中的诊断CAD工具应用。这些方法一般可应用于其他医学图像,如CT和MRI图像。