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一种结合有限角度空间复合和基于模型的合成孔径聚焦的高频超声成像系统。

A high-frequency ultrasound imaging system combining limited-angle spatial compounding and model-based synthetic aperture focusing.

机构信息

High Frequency Engineering Research Group, Ruhr-Universität Bochum, Bochum, Germany.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2011 Jul;58(7):1355-65. doi: 10.1109/TUFFC.2011.1955.

Abstract

High-frequency ultrasound (HFUS) imaging systems are routinely used for medical diagnostics (skin, eyes) and for medical research (small animal imaging). Although systems with array transducers are already commercially available, imaging systems with single-element transducers are still of interest and available as well, because this type of transducer is less complex, less expensive, and technically mature. Nevertheless, drawbacks exist, for example, the need for mechanical scanning units and the limited depth of field. In this paper, we present a high-frequency (20 MHz) ultrasound imaging system equipped with a spherically focused transducer. Limited-angle spatial compounding is utilized to improve the image contrast, to suppress speckle and noise, and to reduce imaging artifacts. To overcome the limitation in depth of field, the system uses a novel synthetic aperture focusing technique based on the correlation of the recorded echo signals with the simulated point spread function of the imaging system. This method results in lower side lobe levels and greater noise reduction compared with delay-and-sum focusing, which is demonstrated by wire phantom measurements. When used in combination with limited-angle spatial compounding, as presented in this paper, the resulting image quality is superior to conventional single-element HFUS imaging systems and to array systems. Examples of measurements on tissue phantoms and small animals (ex vivo) are presented and discussed in detail.

摘要

高频超声(HFUS)成像系统通常用于医学诊断(皮肤、眼睛)和医学研究(小动物成像)。尽管已经有商用的阵列换能器系统,但单元素换能器的成像系统仍然具有吸引力并且也可用,因为这种类型的换能器结构更简单、成本更低且技术更成熟。然而,它也存在一些缺点,例如需要机械扫描单元和有限的景深。在本文中,我们提出了一种配备球形聚焦换能器的高频(20MHz)超声成像系统。利用有限角度空间复合来提高图像对比度、抑制斑点和噪声以及减少成像伪影。为了克服景深的限制,该系统使用了一种新颖的基于记录的回波信号与成像系统的模拟点扩散函数相关的合成孔径聚焦技术。与延迟求和聚焦相比,这种方法的旁瓣水平更低,噪声降低更大,这在对金属丝体模的测量中得到了证明。当与本文中提出的有限角度空间复合相结合使用时,所得到的图像质量优于传统的单元素高频超声成像系统和阵列系统。本文详细介绍和讨论了对组织体模和小动物(离体)的测量结果。

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