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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Three-dimensional synthetic aperture focusing using a rocking convex array transducer
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Three-dimensional synthetic aperture focusing using a rocking convex array transducer

机译:使用摇摆凸阵列换能器的三维合成孔径聚焦

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摘要

Volumetric imaging can be performed using 1-D arrays in combination with mechanical motion. Outside the elevation focus of the array, the resolution and contrast quickly degrade compared with the lateral plane, because of the fixed transducer focus. This paper shows the feasibility of using synthetic aperture focusing for enhancing the elevation focus for a convex rocking array. The method uses a virtual source (VS) for defocused multi-element transmit, and another VS in the elevation focus point. This allows a direct time-of-flight to be calculated for a given 3-D point. To avoid artifacts and increase SNR at the elevation VS, a plane-wave VS approach has been implemented. Simulations and measurements using an experimental scanner with a convex rocking array show an average improvement in resolution of 26% and 33%, respectively. This improvement is also seen in in vivo measurements. An evaluation of how a change in transducer design will affect the resolution improvement shows a potential for using a modified transducer for 3-D imaging with improved elevation focusing and contrast.
机译:可以使用一维阵列结合机械运动来执行体积成像。在阵列的仰角焦点之外,由于换能器焦点固定,因此与横向平面相比,分辨率和对比度会迅速下降。本文展示了使用合成孔径聚焦来增强凸摇摆阵列的仰角聚焦的可行性。该方法使用虚拟源(VS)进行散焦多元素传输,并在仰角焦点中使用另一个VS。这样可以为给定的3-D点计算直接飞行时间。为了避免在高程VS处出现伪影并增加SNR,已实施了平面波VS方法。使用带有凸摇摆阵列的实验扫描仪进行的模拟和测量分别显示分辨率分别提高了26%和33%。在体内测量中也可以看到这种改善。对换能器设计的变化将如何影响分辨率提高的评估表明,使用改进的换能器进行3D成像并改善仰角聚焦和对比度的潜力很大。

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