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用于获取旋转弹性成像的空间复合技术:一项可行性研究。

Spatial Compounding Technique to Obtain Rotation Elastogram: A Feasibility Study.

作者信息

Kothawala AliArshad, Chandramoorthi Sowmiya, Reddy N Ravi Kiran, Thittai Arun Kumar

机构信息

Department of Applied Mechanics (Biomedical Engineering Group), Indian Institute of Technology, Madras, Chennai, India.

Department of Applied Mechanics (Biomedical Engineering Group), Indian Institute of Technology, Madras, Chennai, India.

出版信息

Ultrasound Med Biol. 2017 Jun;43(6):1290-1301. doi: 10.1016/j.ultrasmedbio.2017.01.026. Epub 2017 Apr 19.

Abstract

The perception of stiffness and slipperiness of a breast mass on palpation is used by physicians to assess the level of suspicion of a lesion as being malignant or benign. However, most current ultrasound elastography imaging methods provide only stiffness-related information. There is no existing approach that provides information about the local rigid body rotation undergone by only a loosely bonded, asymmetrically oriented lesion subjected to a small quasi-static compression. The inherent poor lateral resolution in ultrasound imaging poses a limitation in estimating the local rigid body rotation. Several techniques have been reported in the literature to improve the lateral resolution in ultrasound imaging, and among them is spatial compounding. In this study, we explore the feasibility of obtaining better-quality rotation elastograms with spatial compounding through simulations using Field II and experiments on tissue-mimicking phantoms. The phantom was subjected to axial compression (∼1%-2%) from the top, and the angular axial and lateral displacement estimates were obtained using a multilevel 2-D displacement tracking algorithm at different insonification angles. A rotation elastogram (RE) was obtained by taking half of the difference between the lateral gradient of the axial displacement estimates and the axial gradient of the lateral displacement estimates. Contrast-to-noise ratio was used to quantify the improvements in quality of RE. Contrast-to-noise ratio values were calculated by varying the maximum steering angle and the incremental angle, and its effects on RE quality were evaluated. Both simulation and experimental results corroborated and indicated a significant improvement in the quality of RE using compounding technique.

摘要

医生通过触诊乳房肿块时对其硬度和滑腻感的感知来评估病变为恶性或良性的可疑程度。然而,目前大多数超声弹性成像方法仅提供与硬度相关的信息。对于仅受小准静态压缩的松散结合、不对称取向病变所经历的局部刚体旋转,尚无现有方法能提供相关信息。超声成像中固有的较差横向分辨率限制了对局部刚体旋转的估计。文献中已报道了几种提高超声成像横向分辨率的技术,其中包括空间复合技术。在本研究中,我们通过使用Field II进行模拟以及在组织模拟体模上进行实验,探索利用空间复合获得更高质量旋转弹性图的可行性。体模从顶部受到轴向压缩(约1%-2%),并使用多级二维位移跟踪算法在不同的声束入射角度获得角向轴向和横向位移估计值。通过取轴向位移估计值的横向梯度与横向位移估计值的轴向梯度之差的一半来获得旋转弹性图(RE)。对比度噪声比用于量化RE质量的改善情况。通过改变最大转向角和增量角来计算对比度噪声比值,并评估其对RE质量的影响。模拟和实验结果均证实并表明使用复合技术可显著提高RE的质量。

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