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The van Cittert-Zernike theorem in pulsed ultrasound-implications for ultrasonic imaging

机译:脉冲超声中的van Cittert-Zernike定理-超声成像的意义

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A classical theorem of statistical optics, the van Cittert-Zernike theorem, is generalized to pulse-echo ultrasound. This theorem fully describes the second-order statistics of the spatial fluctuations (the spatial covariance) of the field produced by an incoherent source. As a random scattering medium is insonified, it behaves as an incoherent source. The van Cittert-Zernike theorem can thus predict the spatial covariance of the pressure field backscattered by a random medium. Experimental results obtained with a linear array are in good agreement with theoretical expectations. The implications of this theorem in speckle reduction and in focusing in nonhomogeneous media are discussed.
机译:统计光学的经典定理,van Cittert-Zernike定理,被推广到脉冲回波超声。该定理充分描述了由非相干源产生的场的空间波动(空间协方差)的二阶统计量。当声散射介质声化时,其表现为非相干源。 van Cittert-Zernike定理因此可以预测由随机介质反向散射的压力场的空间协方差。用线性阵列获得的实验结果与理论预期吻合良好。讨论了该定理在减少斑点和聚焦于非均匀介质中的意义。

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