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Enhancement of venous vasculature in susceptibility weighted images of the brain using multi-scale vessel enhancement filtering

机译:利用多尺度血管增强滤波,增强静脉脉管系统在脑敏感度加权图像中

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To enhance the visibility of veins of the brain in susceptibility weighted imaging (SWI)-based MR venography using a 3D multi-scale vessel enhancement filter. The magnitude data of SWI were convolved with the second-order derivatives of the Gaussian function. Eigenvalue analysis of the Hessian matrix of the convolved magnitude images was used to enhance the veins. Multi-scale integration was formulated by the combination of maximum value among the normalized filter responses at multiple scales. The resultant 3D multi-scale MR venography demonstrated substantially enhanced visibility of the veins in SWI of the brain. Unlike the conventional SWI, the proposed technique does not suffer from the off-resonance artifact in the brain regions with severe field inhomogeneity and the signal loss in peripheral region of the brain in minimum-intensity projection. Both the background tissue in the brain and the noise in air were well suppressed in the filtered MR venography. Three-dimensional multi-scale vessel enhancement filtering based on the eigenvalue analysis of the Hessian matrix can effectively enhance the visibility of veins in susceptibility weighted images of the brain.
机译:通过3D多尺度容器增强滤波器增强易感性加权成像(SWI)的脑脉冲静脉的可见性。 SWI的大小数据与高斯函数的二阶衍生物卷积。卷积幅度图像的Hessian矩阵的特征值分析用于增强静脉。通过在多个尺度处的归一化滤波器响应中的最大值的组合来制定多尺度集成。得到的3D多标Mr静脉造影证明了大脑SWI中的静脉的显着增强了。与传统的SWI不同,所提出的技术不会遭受脑区域中的偏离谐振伪像,其在最小强度投影中大脑的外围区域中的外围区域中的信号损失。在过滤的MR静脉注册中,大脑中的背景组织和空气中的噪音都很好地抑制。基于Hessian基质的特征值分析的三维多尺度血管增强滤波可以有效地提高脑易感性加权图像中静脉的可见性。

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