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Backscattering Analysis of High Frequency Ultrasonic Imaging for Ultrasound-guided Breast Biopsy

机译:超声引导下乳腺穿刺活检的高频超声成像的反向散射分析

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A new ultrasound-guided breast biopsy technique is proposed. The technique utilizes conventional ultrasound guidance coupled with a high frequency embedded ultrasound array located within the biopsy needle to improve the accuracy in breast cancer diagnosis. The array within the needle is intended to be used to detect micro-calcifications indicative of early breast cancers such as ductal carcinoma in situ (DCIS). Backscattering analysis has the potential to characterize tissues to improve localization of lesions. This paper describes initial results of the application of backscattering analysis of breast biopsy tissue specimens and shows the usefulness of high frequency ultrasound for the new biopsy related technique. Ultrasound echoes of ex-vivo breast biopsy tissue specimens were acquired by using a single-element transducer with a bandwidth from 41 MHz to 88 MHz utilizing a UBM methodology, and the backscattering coefficients were calculated. These values as well as B-mode image data were mapped in 2D and matched with each pathology image for the identification of tissue type for the comparison to the pathology images corresponding to each plane. Microcalcifications were significantly distinguished from normal tissue. Adenocarcinoma was also successfully differentiated from adipose tissue. These results indicate that backscattering analysis is able to quantitatively distinguish tissues into normal and abnormal, which should help radiologists locate abnormal areas during the proposed ultrasound-guided breast biopsy with high frequency ultrasound.
机译:提出了一种新的超声引导下乳腺活检技术。该技术利用常规超声引导与位于活检针内的高频嵌入式超声阵列相结合,以提高乳腺癌诊断的准确性。针头内的阵列旨在用于检测指示早期乳腺癌(例如导管原位癌(DCIS))的微钙化。反向散射分析具有表征组织的潜力,可以改善病变的定位。本文介绍了乳腺活检组织标本的反向散射分析应用的初步结果,并显示了高频超声对新的活检相关技术的有用性。使用UBM方法,通过使用带宽从41 MHz到88 MHz的单元素换能器获取离体乳房活检组织标本的超声回波,并计算后向散射系数。将这些值以及B模式图像数据二维映射,并与每个病理图像匹配,以识别组织类型,以便与对应于每个平面的病理图像进行比较。微钙化明显不同于正常组织。腺癌也已成功地从脂肪组织中分化出来。这些结果表明,反向散射分析能够定量地将组织区分为正常组织和异常组织,这将有助于放射科医生在拟议的超声引导下的高频乳腺穿刺活检中定位异常区域。

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