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A beamforming study for implementation of vibro-acoustography with a 1.75-D array transducer

机译:使用1.75-D阵列换能器实施超声声学成像的波束成形研究

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摘要

Vibro-acoustography (VA) is an ultrasoundbased imaging modality that uses radiation force produced by two cofocused ultrasound beams separated by a small frequency difference, 94;f, to vibrate tissue at 94;f. An acoustic field is created by the object vibration and measured with a nearby hydrophone. This method has recently been implemented on a clinical ultrasound system using 1-D linear-array transducers. In this article, we discuss VA beamforming and image formation using a 1.75-D array transducer. A 1.75-D array transducer has several rows of elements in the elevation direction which can be controlled independently for focusing. The advantage of the 1.75-D array over a 1-D linear-array transducer is that multiple rows of elements can be used for improving elevation focus for imaging formation. Six configurations for subaperture design for the two ultrasound beams necessary for VA imaging were analyzed. The point-spread functions for these different configurations were evaluated using a numerical simulation model. Four of these configurations were then chosen for experimental evaluation with a needle hydrophone as well as for scanning two phantoms. Images were formed by scanning a urethane breast phantom and an ex vivo human prostate. VA imaging using a 1.75-D array transducer offers several advantages over scanning with a linear-array transducer, including improved image resolution and contrast resulting from better elevation focusing of the imaging point-spread function.
机译:振动声学成像(VA)是一种基于超声的成像方法,它使用由两个以小的频率差94; f隔开的共聚焦超声束产生的辐射力来使组织在94; f处振动。物体振动会产生声场,并用附近的水听器进行测量。该方法最近已在使用一维线性阵列换能器的临床超声系统上实施。在本文中,我们将讨论使用1.75-D阵列换能器的VA波束形成和图像形成。一个1.75-D阵列换能器在仰角方向上具有几行元素,可以对其进行独立控制以进行聚焦。 1.75-D阵列相对于1-D线性阵列换能器的优势在于,可以使用多行元素来改善用于成像形成的仰角焦点。分析了VA成像所需的两个超声波束的亚孔径设计的六种配置。使用数值模拟模型评估了这些不同配置的点扩展函数。然后选择其中四个配置用于带针水听器的实验评估以及扫描两个体模。通过扫描氨基甲酸酯乳房幻像和离体人类前列腺形成图像。与使用线性阵列换能器进行扫描相比,使用1.75-D阵列换能器进行VA成像具有多个优势,包括由于成像点扩展功能的更好的仰角聚焦而提高了图像分辨率和对比度。

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