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Effects from correction of speed of sound in transmit and receive beamforming using focus beam

机译:从发射速度校正发射速度的影响,并使用聚焦光束接收波束成形

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In this study, focusing methods were investigated for generation of an ultrasonic beam with a uniform lateral width across the axial imaging field of view through numerical simulation using Field II. Also, the influence of the mismatch between the speed of sound (SoS) assumed in beamforming process and actual one was evaluated by wire and cyst phantom experiments. In the simulation, conventional, hybrid, and non-cylindrical focusing methods were evaluated based on the evaluation metrics, i.e. depth of field and lateral beam width. For the three focusing methods, the proper imaging parameters were determined based on the simulation results. In the phantom experiments, the lateral resolution was improved by correcting the SoS in receive beamforming. Additionally, the correction of the SoS in transmission focusing improved the uniformity of beam width and image contrast.
机译:在该研究中,研究了聚焦方法,用于通过使用田间II的数值模拟来产生横跨轴向成像视野的均匀横向宽度的超声波梁。 而且,通过电线和囊体的幻影实验评估了在波束形成过程中假设的声音速度(SOS)之间的不匹配的影响。 在模拟,常规,混合和非圆柱形聚焦方法基于评估度量,即场和横向梁宽度的深度。 对于三种聚焦方法,基于模拟结果确定了适当的成像参数。 在幻影实验中,通过校正接收波束形成的SOS来改善横向分辨率。 另外,传输中的SOS的校正聚焦改善了光束宽度和图像对比度的均匀性。

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