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Calculation of transfer functions for Volume Rendering of Breast Tomosynthesis imaging

机译:乳房断层合成成像体绘制的传递函数的计算

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Slice by slice visualization of Digital Breast Tomosynthesis (DBT) data is time consuming and can hamper the interpretation of lesions such as clusters of microcalcifications. With a visualization of the object through multiple angles, 3D volume rendering (VR) provides an intuitive understanding of the underlying data at once. 3D VR may play an important complementary role in breast cancer diagnosis. Transfer functions (TFs) are a critical parameter in VR and finding good TFs is a major challenge. The purpose of this work is to study a methodology to automatically generate TFs that result in appropriate and useful VR visualizations of DBT data.For intensity-based TFs, intensity histograms were used to study possible relationships between statistics and critical intensity values in DBT data. The mean of each histogram has proved to be a valid option to automatically calculate those critical values that define these functions. At this stage, eight visualizations were obtained by combining several opacity/color intensity-based functions. Considering the gradient, ten visualizations were obtained. Nine of the ten TFs were constructed considering the peaks of gradient magnitude histograms. The tenth function was a simple linear ramp. Finally, three intensity-based and three gradient-based functions were selected and simultaneously used. This resulted in nine final VR visualizations taking both information into account.The studied approach allowed an automatic generation of opacity/color TFs based on scalar intensity and gradient magnitude histograms. In this way, the preliminary results obtained with this methodology are very encouraging about creating an adequate visualization of DBT data by VR.
机译:逐层可视化数字化乳房X线断层合成(DBT)数据非常耗时,并且可能会妨碍对诸如微钙化簇之类的病变的解释。通过从多个角度可视化对象,3D体积渲染(VR)可以一次直观地了解基础数据。 3D VR可能在乳腺癌诊断中起重要的补充作用。传递函数(TF)是VR中的关键参数,而找到好的TF是主要的挑战。这项工作的目的是研究一种自动生成TF的方法,该TF可以对DBT数据进行适当且有用的VR可视化。对于基于强度的TF,使用强度直方图来研究DBT数据中统计数据与临界强度值之间的可能关系。每个直方图的平均值已被证明是自动计算定义这些功能的那些临界值的有效选择。在此阶段,通过组合几个基于不透明度/颜色强度的功能获得了八种可视化效果。考虑到梯度,获得了十个可视化效果。考虑到梯度幅度直方图的峰值,构造了十个TF中的九个。第十功能是简单的线性斜坡。最后,选择并同时使用了三个基于强度的函数和三个基于梯度的函数。这样就产生了将这两种信息都考虑在内的九个最终VR可视化效果。研究方法允许基于标量强度和梯度幅度直方图自动生成不透明度/颜色TF。这样,通过这种方法获得的初步结果对于通过VR创建足够的DBT数据可视化非常令人鼓舞。

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