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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Synthetic elevation beamforming and image acquisition capabilities using an 8 × 128 1.75D array
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Synthetic elevation beamforming and image acquisition capabilities using an 8 × 128 1.75D array

机译:使用8×128 1.75D阵列的合成高程波束形成和图像采集功能

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Ultrasound imaging can be improved with higher order arrays through elevation dynamic focusing in future, higher channel count systems. However, modifications to current system hardware could yield increased imaging depth-of-field with 1.75D arrays (arrays with individually addressable elements, several rows in elevation) through the use of synthetic elevation imaging. We describe synthetic elevation beamforming methods and its implementation with our 8 × 128, 1.75D array (Tetrad Co., Englewood, CO). This array has been successfully interfaced with a Siemens Elegra scanner for summed RF and single channel RF data acquisition. Individual rows of the 8 × 128 array can be controlled, allowing for different aperture configurations on transmit and receive beamforming. Advantages of using this array include finer elevation sampling, a larger array footprint for aberration measurements, and elevation focusing. We discuss system tradeoffs that occur in implementing synthetic receive and synthetic transmit/receive elevation focusing and show significant image quality improvements in simulation and phantom data results.
机译:在未来的更高通道数的系统中,通过高程动态聚焦可以通过更高阶的阵列改善超声成像。但是,通过使用合成高程成像技术,对当前系统硬件进行的修改可以通过1.75D阵列(具有可单独寻址的元件,高程数行的阵列)产生更高的成像景深。我们描述了合成高程波束成形方法及其在我们的8×128、1.75D阵列(Tetrad Co.,Englewood,CO)中的实现。该阵列已成功与Siemens Elegra扫描仪对接,用于求和RF和单通道RF数据。可以控制8×128阵列的各行,从而在发送和接收波束成形时采用不同的孔径配置。使用此阵列的优势包括更精细的高程采样,更大的像差测量阵列足迹以及高程聚焦。我们讨论了在实现综合接收和综合发射/接收仰角聚焦时发生的系统权衡,并在仿真和幻像数据结果中显示了显着的图像质量改进。

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