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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Benefits of Minimum-Variance Beamforming in Medical Ultrasound Imaging
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Benefits of Minimum-Variance Beamforming in Medical Ultrasound Imaging

机译:最小方差波束形成在医学超声成像中的优势

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摘要

Recently, significant improvement in image resolution has been demonstrated by applying adaptive beamforming to medical ultrasound imaging. In this paper, we have used the minimum-variance beamformer to show how the low sidelobe levels and narrow beamwidth of adaptive methods can be used, not only to increase resolution, but also to enhance imaging in several ways. By using a minimum-variance beamformer instead of delay-and-sum on reception, reduced aperture, higher frame rates, or increased depth of penetration can be achieved without sacrificing image quality. We demonstrate comparable resolution on images of wire targets and a cyst phantom obtained with a 96-element, 18.5-mm transducer using delay-and-sum, and a 48-element, 9.25-mm transducer using minimum variance. To increase frame rate, fewer and wider transmit beams in combination with several parallel receive beams may be used. We show comparable resolution to delay-and-sum using minimum variance, 1/4th of the number of transmit beams and 4 parallel receive beams, potentially increasing the frame rate by 4. Finally, we show that by lowering the frequency of the transmitted beam and beamforming the received data with the minimum variance beamformer, increased depth of penetration is achieved without sacrificing lateral resolution.
机译:近来,已经通过将自适应波束成形应用于医学超声成像来证明图像分辨率的显着提高。在本文中,我们使用最小方差波束形成器来说明如何使用低旁瓣电平和窄波束宽度的自适应方法,不仅可以提高分辨率,而且可以通过多种方式增强成像效果。通过使用最小方差波束形成器代替接收时的延迟和,可以在不牺牲图像质量的情况下实现减小的孔径,更高的帧速率或增加的穿透深度。我们在使用延迟和求和的96个元素,18.5毫米换能器和使用最小方差的48个元素,9.25毫米换能器获得的线靶和囊状体模图像上显示了可比的分辨率。为了增加帧速率,可以使用更少和更宽的发射波束以及几个并行的接收波束。我们使用最小方差,发射波束数的1/4和4个并行接收波束的延迟和求和结果显示了可比的分辨率,潜在地将帧频提高了4。最后,我们展示了通过降低发射波束的频率并使用最小方差波束形成器对接收到的数据进行波束形成,可以在不牺牲横向分辨率的情况下增加穿透深度。

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