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Simulation of ultrasound backscatter images from fish

机译:鱼的超声反向散射图像的仿真

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The objective of this work is to investigate ultrasound (US) backscatter in the MHz range from fis to develop a realistic and reliable simulation model. The long term objective of the work is to develop the needed signal processing for fis species differentiation using US. In in-vitro experiments, a cod (Gadus morhua) was scanned with both a BK Medical ProFocus 2202 ultrasound scanner and a Toshiba Aquilion ONE computed tomography (CT) scanner. The US images of the fis were compared with US images created using the ultrasound simulation program Field II. The center frequency of the transducer is 10 MHz and the Full Width at Half Maximum (FWHM) at the focus point is 0.54 mm in the lateral direction. The transducer model in Field II was calibrated using a wire phantom to validate the simulated point spread function. The inputs to the simulation were the CT image data of the fis converted to simulated scatter maps. The positions of the point scatterers were assumed to be uniformly distributed. The scatter amplitudes were generated with a new method based on the segmented CT data in Hounsfiel Units and backscatter data for the different types of tissues from the literature. The simulated US images reproduce most of the important characteristics of the measured US image.
机译:这项工作的目的是研究从fis到MHz范围内的超声(US)反向散射,以开发出逼真的,可靠的仿真模型。这项工作的长期目标是开发使用US进行Fis物种分化所需的信号处理。在体外实验中,使用BK Medical ProFocus 2202超声波扫描仪和Toshiba Aquilion ONE计算机断层扫描(CT)扫描仪对鳕鱼(Gadus morhua)进行了扫描。将fis的US图像与使用超声模拟程序Field II创建的US图像进行比较。换能器的中心频率为10 MHz,对焦点的半高全宽(FWHM)在横向上为0.54 mm。使用线体模型对Field II中的换能器模型进行了校准,以验证模拟的点扩散函数。模拟的输入是将fis的CT图像数据转换为模拟的散布图。假定点散射体的位置是均匀分布的。根据Hounsfiel单位中分段的CT数据和文献中不同类型组织的反向散射数据,使用新方法生成散射振幅。模拟的美国图像重现了所测美国图像的大多数重要特征。

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