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Scatterer number density estimation using frequency modulated ultrasound pulse (medical images)

机译:使用调频超声脉冲估算散射体数量密度(医学图像)

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Ultrasound echoes backscattered from an inhomogeneous medium have the character of a random signal. If the medium is represented as a uniform matrix material with scattering bodies distributed randomly, then the scatterer number density can be estimated from the second and higher statistical moments of the signal. However, the estimate is biased because the statistical nature of the signal also depends on the resolution cell volume of the imaging system, which in turn depends on the center frequency f/sub o/, and the bandwidth Delta f of the interrogating short pulse and the beam profile of the transducer. The authors have performed A-line simulation of the backscattered signal from a specially designed mathematical phantom. Such a phantom makes it possible to study the signal variations as a function of changing resolution cell volume.
机译:从不均匀介质反向散射的超声回波具有随机信号的特征。如果将介质表示为具有随机分布的散射体的均匀基质材料,则可以根据信号的第二次和更高的统计矩来估计散射体的密度。但是,由于信号的统计性质还取决于成像系统的分辨率像元体积,因此估计值存在偏差,而成像系统的分辨率像元体积又取决于中心频率f / sub o /,询问短脉冲的带宽Delta f和换能器的光束轮廓。作者已经对来自特殊设计的数学模型的反向散射信号进行了A线模拟。这种幻影使得研究信号分辨率随分辨率细胞体积变化的变化成为可能。

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