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使用高频超声(20兆赫)对皮肤进行有限角度空间复合成像。

Limited-angle spatial compound imaging of skin with high-frequency ultrasound (20 MHz).

作者信息

Vogt Michael, Ermert Helmut

机构信息

Department of Electrical Engineering and Information Technology, Institute of High Frequency Engineering, Ruhr-University, Bochum, Germany.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2008 Sep;55(9):1975-83. doi: 10.1109/TUFFC.888.

Abstract

In dermatology, high-frequency ultrasound (HFUS) is used for high-resolution skin imaging. The conventional B-scan type approach is to perform lateral scans perpendicular to the direction of sound propagation. Ultrasound spatial compounding enables improvement of the image contrast, suppression of speckle and noise, and reduction of imaging artifacts in comparison with conventional B-mode imaging, but it has not yet found its way into HFUS skin imaging applications. In this paper, the potential of HFUS spatial compounding for skin imaging is systematically evaluated. A new HFUS system with a sophisticated scanner for limited-angle (up to +/-40 degrees) spatial compound imaging was developed and implemented. Echo signals are acquired using a 20 MHz spherically focused single-element transducer with an axial and lateral resolution of 69 mum and 165 mum, respectively, in the focus. A calibration scheme for the estimation of unknown system parameters and precise image reconstruction has been developed. The implemented system has been evaluated using measurements of geometrically well-defined structures, speckle phantoms, and in vivo measurements. The results show the advantage of the proposed spatial compound skin imaging concept compared with conventional B-mode imaging in terms of image contrast, isotropy, and independence from the orientation of surfaces.

摘要

在皮肤病学中,高频超声(HFUS)用于高分辨率皮肤成像。传统的B扫描类型方法是进行垂直于声音传播方向的横向扫描。与传统B模式成像相比,超声空间复合能够改善图像对比度、抑制斑点和噪声并减少成像伪像,但它尚未应用于HFUS皮肤成像。本文系统地评估了HFUS空间复合在皮肤成像中的潜力。开发并实现了一种新型HFUS系统,该系统配备了用于有限角度(高达±40度)空间复合成像的精密扫描仪。使用20 MHz球形聚焦单元素换能器采集回波信号,在焦点处轴向分辨率和横向分辨率分别为69μm和165μm。已开发出一种用于估计未知系统参数和精确图像重建的校准方案。已使用对几何形状明确的结构、斑点模型的测量以及体内测量对所实现的系统进行了评估。结果表明,与传统B模式成像相比,所提出的空间复合皮肤成像概念在图像对比度、各向同性以及与表面方向无关性方面具有优势。

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