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Adaptive compounding of synthetic aperture and compounded plane-wave imaging for fast ultrasonography

机译:用于快速超声检查的合成孔径和复合平面波成像的自适应复合

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This paper describes the investigation and implementation of a combined synthetic aperture (SA) and compounded plane wave (CPW) ultrasound imaging technique. Individually, these methods offer unique benefits over the conventional transmit beamforming used in ultrasonography (higher resolution and increased signal-to-noise ratio, respectively), and both have the potential for a higher physical frame rate limit. The technique described combines the individual benefits while maintaining a higher frame rate, by adaptively compounding the resulting images from SA and CPW sequences at half the standard number of transmits. Tests on a phantom with both point scatterers and occlusions showed overall improvements of 14.5% in lateral resolution and 7.5% in axial resolution over CPW, and a 14.5 dB improvement in signal-to-noise ratio (SNR) for occlusions over SA. Both resolution and SNR were an improvement over that for conventional transmit beamforming with two focus depths, and offer double the physical frame rate limit.
机译:本文介绍了组合合成孔径(SA)和复合平面波(CPW)超声成像技术的调查和实施。单独地,这些方法通过超声检查(分别更高的分辨率和增加的信噪比)提供了与传统发射波束成形的独特优势,并且都具有更高的物理帧速率限制的可能性。通过将来自SA和CPW序列的结果自适应地复合在标准次数的一半中,通过在标准次数的一半的一半将所得到的图像自适应地复合所得的图像来保持个体益处,同时保持各个益处。用点散射体和闭塞的幻影测试横向分辨率的总体改善14.5%,在CPW上轴分辨率为7.5%,对SA闭合的信噪比(SNR)的14.5dB改善。分辨率和SNR都是改进,对于传统的传输波束成形,具有两个聚焦深度,并提供双重物理帧速率限制。

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