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采用 Capon 法的频域干涉测量的高分辨率超声血管成像。

High range resolution ultrasonographic vascular imaging using frequency domain interferometry with the Capon method.

机构信息

Graduate School of Informatics, Kyoto University,Yoshida-honmachi, Sakyo-ku, Kyoto 606-8501, Japan.

出版信息

IEEE Trans Med Imaging. 2012 Feb;31(2):417-29. doi: 10.1109/TMI.2011.2170847. Epub 2011 Oct 6.

Abstract

For high range resolution ultrasonographic vascular imaging, we apply frequency domain interferometry with the Capon method to a single frame of in-phase and quadrature (IQ) data acquired using a commercial ultrasonographic device with a 7.5 MHz linear array probe. In order to tailor the adaptive beam forming algorithm for ultrasonography we employ four techniques: frequency averaging, whitening, radio-frequency data oversampling, and the moving average. The proposed method had a range resolution of 0.05 mm in an ideal condition, and experimentally detected the boundary couple 0.17 mm apart, where the boundary couple was indistinguishable from a single boundary utilizing a B-mode image. Further, this algorithm could depict a swine femoral artery with a range beam width of 0.054 mm and an estimation error for the vessel wall thickness of 0.009 mm, whereas using a conventional method the range beam width and estimation error were 0.182 and 0.021 mm, respectively. The proposed method requires 7.7 s on a mobile PC with a single CPU for a 1×3 cm region of interest. These findings indicate the potential of the proposed method for the improvement of range resolution in ultrasonography without deterioration in temporal resolution, resulting in enhanced detection of vessel stenosis.

摘要

对于高分辨率超声血管成像,我们应用频域干涉法和 Capon 方法,对商业超声设备的同相和正交(IQ)数据进行单帧采集,该设备使用 7.5MHz 线性阵列探头。为了针对超声成像定制自适应波束形成算法,我们采用了四种技术:频率平均、白化、射频数据过采样和移动平均。在理想条件下,该方法的距离分辨率为 0.05mm,实验检测到相隔 0.17mm 的边界对,其中边界对在 B 模式图像中与单个边界无法区分。此外,该算法可以描绘出猪股动脉,距离波束宽度为 0.054mm,血管壁厚度的估计误差为 0.009mm,而使用传统方法时,距离波束宽度和估计误差分别为 0.182mm 和 0.021mm。该方法在具有单个 CPU 的移动 PC 上,对 1×3cm 的感兴趣区域,需要 7.7s。这些发现表明,该方法有望在不降低时间分辨率的情况下提高超声的距离分辨率,从而增强对血管狭窄的检测。

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