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Ultrasonic Synthetic Aperture Focusing Technique With Finite Source Element for Focused Transducers

机译:具有有限源元素的聚焦换能器超声合成孔径聚焦技术

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A spherically focused transducer (SFT) can concentrate the ultrasounds to a focal zone that yields a better lateral resolution at a certain axial range. Unfortunately, this result is always accompanied by a loss of resolution outside the focal zone. The synthetic aperture focusing technique (SAFT) is a type of digital signal processing technique that is commonly based on the point-source wavefront backpropagation (WFBP) theory to improve the axial resolution of the image. However, the ultrasound is refracted when it propagates through the couplant-specimen interface to detect the flaws in specimens; thus, the capability of a virtual point-source SAFT in refocusing ultrasonic energy is deteriorated caused by the phase aberration by an SFT. Therefore, in this study, the finite source element (FSE) refraction corrected WFBP SAFT imaging method will be introduced to reduce the phase aberration effect when refocusing a defocused ultrasonic image. Study results show that the axial resolution of the image is largely improved by this technique, but improvement is not yet attained in the lateral resolution. In addition, the signal-to-noise ratio of the image is enhanced. Therefore, for cases with a strong phase aberration, the proposed method is recommended for obtaining better image resolution.
机译:球形聚焦换能器(SFT)可以将超声波集中到一个聚焦区域,从而在一定的轴向范围内产生更好的横向分辨率。不幸的是,这种结果总是伴随着聚焦区域外分辨率的降低。合成孔径聚焦技术(SAFT)是一种数字信号处理技术,通常基于点源波前反向传播(WFBP)理论来提高图像的轴向分辨率。但是,当超声波通过耦合剂-样本界面传播以检测样本中的缺陷时,超声波会发生折射。因此,由SFT引起的相差导致虚拟点源SAFT重新聚焦超声能量的能力降低。因此,在这项研究中,将引入有限源元素(FSE)折射校正的WFBP SAFT成像方法,以减少重新聚焦散焦超声图像时的相位像差效应。研究结果表明,通过这种技术可以大大提高图像的轴向分辨率,但是横向分辨率尚未得到改善。另外,增强了图像的信噪比。因此,对于相差较大的情况,建议使用该方法以获得更好的图像分辨率。

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