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Multi-focus tissue harmonic images obtained with parallel transmit beamforming by means of orthogonal frequency division multiplexing

机译:正交频分复用并行发射波束形成获得的多焦点组织谐波图像

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Parallel beamforming in transmit (PBT) by means of orthogonal frequency division multiplexing (OFDM) was recently applied to increase the frame rate of ultrasound tissue harmonic imaging. OFDM-PBT improves the data acquisition rate by generating, for each transmission event, multiple beams that are allocated to a specific portion of the available transducer bandwidth. Improving the frame rate is however not the only possible application of an increased data acquisition rate. In this paper, OFDM-PBT is exploited to perform multi-focus tissue harmonic imaging for improving the penetration depth and signal to noise ratio (SNR) without affecting the frame rate. Tissue harmonic images of a tissue mimicking phantom were obtained with OFDM-PBT and standard B-mode imaging. Results present improved penetration depth and SNR for OFDM-PBT as compared to standard B-mode. We estimated an improvement of 6 dB of the average SNR, at the expenses of a reduction of the axial resolution (0.7 vs 1.1 mm).
机译:最近,通过正交频分复用(OFDM)进行并行波束赋形(PBT)的应用,以提高超声组织谐波成像的帧速率。 OFDM-PBT通过为每个传输事件生成分配给可用换能器带宽的特定部分的多个波束来提高数据采集速率。然而,提高帧速率并不是增加数据采集速率的唯一可能应用。在本文中,OFDM-PBT被用于执行多焦点组织谐波成像,以改善穿透深度和信噪比(SNR),而不会影响帧速率。通过OFDM-PBT和标准B模式成像获得了模仿人体模型的组织谐波图像。与标准B模式相比,结果显示OFDM-PBT的穿透深度和SNR有所改善。我们以降低轴向分辨率(0.7对1.1 mm)为代价,估计平均SNR改善了6 dB。

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