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Simulation of the echocardiographic image acquisition process based on a 3D cardiac tissue reconstruction

机译:基于3D心脏组织重建的超声心动图图像采集过程的仿真

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The formation of the echocardiographic signal, that goes from the transducer to the 2D echo image, was simulated upon a 3D cardiac tissue image. Images of tissue are obtained by mathematical simulation, and a series of histological slices of cardiac tissue. These slices were observed using an optical microscope at calibration of 10 microns per pixel. Slices are corrected for translation and rotation errors in order to obtain the 3D reconstruction. Cardiac contraction dynamics are simulated with a simple three-transformation model. Transducers are simulated with a cosine-moduled Gaussian three-dimensional spread function. The system outputs two signals: a radio-frequency image and an echocardiographic image. Texture features are analyzed as a function of cardiac dynamics. The results of the analysis shows the influence of the cellular and connective components of cardiac tissue in the echocardiographic response.
机译:在3D心脏组织图像上模拟了从换能器到2D回波图像的超声心动图信号的形成。通过数学模拟以及一系列心脏组织的组织学切片获得组织图像。使用光学显微镜以每像素10微米的校准观察这些切片。校正切片的平移和旋转误差,以获得3D重建。用简单的三转换模型模拟心脏收缩动力学。用余弦调制的高斯三维扩展函数模拟换能器。该系统输出两个信号:射频图像和超声心动图图像。根据心脏动力学分析纹理特征。分析结果显示了心脏组织的细胞和结缔组织成分在超声心动图反应中的影响。

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