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人体组织中的空间相干性:对成像和测量的影响。

Spatial coherence in human tissue: implications for imaging and measurement.

作者信息

Pinton Gianmarco, Trahey Gregg, Dahl Jeremy

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2014 Dec;61(12):1976-87. doi: 10.1109/TUFFC.2014.006362.

Abstract

The spatial coherence properties of the signal backscattered by human tissue and measured by an ultrasound transducer array are investigated. Fourier acoustics are used to describe the propagation of ultrasound through a model of tissue that includes reverberation and random scattering in the imaging plane. The theoretical development describes how the near-field tissue layer, transducer aperture properties, and reflectivity function at the focus reduce the spatial coherence of the imaging wave measured at the transducer surface. Simulations are used to propagate the acoustic field through a histologically characterized sample of the human abdomen and to validate the theoretical predictions. In vivo measurements performed with a diagnostic ultrasound scanner demonstrate that simulations and theory closely match the measured spatial coherence characteristics in the human body across the transducer array's entire spatial extent. The theoretical framework and simulations are then used to describe the physics of spatial coherence imaging, a type of ultrasound imaging that measures coherence properties instead of echo brightness. The same echo data from an F/2 transducer was used to generate B-mode and short lag spatial coherence images. For an anechoic lesion at the focus, the contrast-to-noise ratio is 1.21 for conventional B-mode imaging and 1.95 for spatial coherence imaging. It is shown that the contrast in spatial coherence imaging depends on the properties of the near-field tissue layer and the backscattering function in the focal plane.

摘要

研究了由人体组织反向散射并由超声换能器阵列测量的信号的空间相干特性。傅里叶声学用于描述超声通过包含成像平面中的混响和随机散射的组织模型的传播。理论推导描述了近场组织层、换能器孔径特性以及焦点处的反射率函数如何降低在换能器表面测量的成像波的空间相干性。使用模拟来传播声场通过人体腹部的组织学特征样本,并验证理论预测。使用诊断超声扫描仪进行的体内测量表明,模拟和理论在换能器阵列的整个空间范围内与人体中测量的空间相干特性紧密匹配。然后,理论框架和模拟用于描述空间相干成像的物理原理,这是一种测量相干特性而非回波亮度的超声成像类型。来自F/2换能器的相同回波数据用于生成B模式和短延迟空间相干图像。对于焦点处的无回声病变,传统B模式成像的对比度噪声比为1.21,空间相干成像的对比度噪声比为1.95。结果表明,空间相干成像中的对比度取决于近场组织层的特性和焦平面中的反向散射函数。

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