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Robust Short-Lag Spatial Coherence Imaging of Breast Ultrasound Data: Initial Clinical Results

机译:乳腺超声数据的稳健的短时滞空间相干成像:初步临床结果

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摘要

Ultrasound is frequently used in conjunction with mammography in order to detect breast cancer as early as possible. However, due largely to the heterogeneity of breast tissue, ultrasound images are plagued with clutter that obstructs important diagnostic features. Short-lag spatial coherence (SLSC) imaging has proven to be effective at clutter reduction in noisy ultrasound images. M-Weighted SLSC and Robust-SLSC (R-SLSC) imaging were recently introduced to further improve image quality at higher lag values, while R-SLSC imaging has the added benefit of enabling the adjustment of tissue texture to produce a tissue signal-to-noise ratio (SNR) that is quantitatively similar to B-mode speckle SNR. This paper investigates the initial application of SLSC, M-Weighted SLSC, and R-SLSC imaging to nine targets in the female breast [two simple cysts, one complicated cyst, two fibroadenomas, one hematoma, one complex cystic and solid mass, one invasive ductal carcinoma (IDC), and one ductal carcinoma in situ (DCIS)]. As expected, R-SLSC beamforming improves cyst and hematoma contrast by up to 6.35 and 1.55 dB, respectively, when compared to the original B-mode image, and similar improvements are achieved with SLSC and M-Weighted SLSC imaging. However, an interesting finding from this initial investigation is that the solid masses (i.e., fibroadenoma, complex cystic and solid mass, IDC, and DCIS), which appear as hypoechoic in the B-mode image, have similarly high coherence to that of surrounding tissue in coherence-based images. This work holds promise for using SLSC, M-Weighted SLSC, and/or R-SLSC imaging to distinguish between fluid-filled and solid hypoechoic breast masses.
机译:超声通常与乳房X线照相术结合使用,以便尽早发现乳腺癌。然而,很大程度上由于乳房组织的异质性,超声图像困扰着阻碍重要诊断特征的混乱。事实证明,短时空相干(SLSC)成像可有效减少嘈杂的超声图像中的杂波。最近引入了M加权SLSC和Robust-SLSC(R-SLSC)成像,以进一步改善在较高滞后值时的图像质量,而R-SLSC成像的附加好处是可以调整组织纹理以产生组织信号。噪声比(SNR)在数量上类似于B模式散斑SNR。本文研究了SLSC,M加权SLSC和R-SLSC成像技术在女性乳房中的9个靶标上的初步应用[2个简单的囊肿,1个复杂的囊肿,2个纤维腺瘤,1个血肿,1个复杂的囊性和实性肿块,1个侵入性导管癌(IDC)和一种原位导管癌(DCIS)]。正如预期的那样,与原始B模式图像相比,R-SLSC波束成形分别将囊肿和血肿对比度提高了6.35和1.55 dB,并且SLSC和M加权SLSC成像实现了类似的改进。然而,从这项初步研究中得出的有趣发现是,在B型图像中表现为低回声的实体肿块(即纤维腺瘤,复杂的囊性和实体肿块,IDC和DCIS)具有与周围类似的高相干性相干图像中的组织。这项工作有望使用SLSC,M加权SLSC和/或R-SLSC成像来区分充液性和固态低回声乳腺肿块。

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