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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Improved synthetic aperture focusing technique with applications in high-frequency ultrasound imaging
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Improved synthetic aperture focusing technique with applications in high-frequency ultrasound imaging

机译:改进的合成孔径聚焦技术及其在高频超声成像中的应用

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Synthetic aperture focusing using a virtual source was used previously to increase the penetration and to extend the depth of focus in high-frequency ultrasonic imaging. However, the performance of synthetic aperture focusing is limited by its high sidelobes. In this paper, an adaptive weighting technique based on a focusing-quality index is introduced to suppress the sidelobes. The focusing-quality index is derived from the spatial spectrum of the scan-line data along the mechanical scan direction (i.e., the synthetic aperture direction) after focusing delays relative to the virtual source have been applied. The proposed technique is of particular value in high-frequency ultrasound in which dynamic focusing using array transducers is not yet possible. Experimental ultrasound data from a 50-MHz imaging system with a single-crystal transducer (f-number=2) are used to demonstrate the efficacy of the proposed technique on both wire targets and speckle-generating objects. An in vivo experiment also is performed on a mouse to further demonstrate the effectiveness. Both 50-MHz fundamental imaging and 50-MHz tissue harmonic imaging are tested. The results clearly demonstrate the effectiveness in sidelobe reduction and background-noise suppression for both imaging modes. The principles, experimental results, and implementation issues of the new technique are described in this paper.
机译:以前使用虚拟光源进行合成孔径聚焦来增加穿透力并扩展高频超声成像中的聚焦深度。但是,合成孔径聚焦的性能受到其高旁瓣的限制。本文介绍了一种基于聚焦质量指标的自适应加权技术来抑制旁瓣。在已经施加了相对于虚拟源的聚焦延迟之后,从沿着机械扫描方向(即,合成孔径方向)的扫描线数据的空间光谱中得出聚焦质量指标。所提出的技术在高频超声中特别有价值,在高频超声中,使用阵列换能器的动态聚焦尚不可能。来自具有单晶换能器(f-number = 2)的50 MHz成像系统的实验超声数据用于证明所提出的技术对线靶和散斑产生对象的功效。还对小鼠进行了体内实验,以进一步证明其有效性。同时测试了50 MHz基本成像和50 MHz组织谐波成像。结果清楚地证明了两种成像模式在旁瓣减小和背景噪声抑制方面的有效性。本文介绍了该新技术的原理,实验结果和实现问题。

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