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Phase-insensitive and phase-sensitive quantitative imaging of scattered ultrasound using a two-dimensional pseudo-array

机译:使用二维伪阵列的散射超声的相敏和相敏定量成像

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A two-dimensional receiving array was used to measure both phase-insensitively and phase-sensitively the average power and power spectrum of a backscattered (160 degrees ) ultrasonic field. The effects of introducing phase-distorting media in front of the receiving array on the phase-insensitively and phase-sensitively derived quantitative energy measurements were investigated under conditions of planar, spherical, and correlation focusing. A transmitting transducer was found at the surface of a glass-bead phantom and a two-dimensional pseudoarray receiver was achieved by translating an apodized planar transducer in a 13*13 grid pattern. Phase-insensitive determination of average power exhibited a maximum 0.9-dB variation for measurements made with all combinations of phase-distorting media and focusing schemes, whereas the corresponding phase-sensitively derived values varied by as much as 9.4 dB.
机译:二维接收阵列用于不敏感地和不敏感地测量反向散射(160度)超声场的平均功率和功率谱。在平面,球形和相关聚焦条件下,研究了在接收阵列前面引入相失真介质对相位不敏感和相位敏感得出的定量能量测量的影响。在玻璃珠体模的表面发现了一个发射换能器,并通过将切趾平面换能器转换为13 * 13网格图案来实现二维伪阵列接收器。对于使用相位失真媒体和聚焦方案的所有组合进行的测量,平均功率的相位不敏感确定显示出最大0.9 dB的变化,而相应的相位敏感派生值则变化了9.4 dB。

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