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Fast multi-scale vessel enhancement filtering

机译:快速多尺度血管增强滤波

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This paper describes a fast multi-scale vessel enhancement filter in 3D medical images. For efficient review of the vascular information, clinicians need rendering the 3D vascular information as a 2D image. Generally, the maximum intensity projection (MIP) is a useful and widely used technique for producing a 2D image from the 3D vascular data. However, the MIP algorithm reduces the conspicuousness for small and faint vessels owing to the overlap of non-vascular structures. To overcome this invisibility, researchers have examined the multi-scale vessel enhancement filter based on a combination of the eigenvalues of the 3D Hessian matrix. This multi-scale vessel enhancement filter produces higher contrast. However, it is time-consuming and requires high cost computation due to large volume of data and complex 3D convolution. For fast vessel enhancement, we propose a novel multi-scale vessel enhancement filter using 3D integral images and 3D approximated Gaussian kernel. This approximated kernel looks like cube but it is not exact cube. Each layer of kernel is approximated 2D Gaussian second order derivative by dividing it into three rectangular regions whose sum is integer. 3D approximated kernel is a pile of these 2D box kernels which are normalized by Frobenius norm. Its size fits to vessel width in order to achieve better visualization of the small vessel. Proposed method is approximately five times faster and produces comparable results with previous multi-scale vessel enhancement filter.
机译:本文介绍了3D医学图像中的快速多尺度血管增强滤波器。有效审查血管信息,临床医生需要将3D血管信息作为2D图像。通常,最大强度投影(MIP)是一种用于从3D血管数据产生2D图像的有用和广泛使用的技术。然而,由于非血管结构的重叠,MIP算法降低了小而微弱的血管的显着性。为了克服这种隐形,研究人员基于3D Hessian矩阵的特征值的组合检查了多尺度血管增强滤波器。该多尺度血管增强滤波器产生更高的对比度。然而,由于大量的数据和复杂的3D卷积,它是耗时的并且需要高成本计算。对于快速血管增强,我们提出了一种使用3D积分图像和3D近似高斯内核的新型多尺度血管增强滤波器。这个近似的内核看起来像立方体,但它不是很精确的立方体。通过将其划分为三个矩形区域,每隔一层内核是近似的2D高斯二阶导数,其总和是整数。 3D近似内核是由Frobenius Norm标准化的这些2D盒内核的一堆。它的尺寸适合船舶宽度,以实现小容器的更好可视化。提出的方法速度大约五倍,并通过先前的多尺度血管增强滤波器产生可比较的结果。

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