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Development of Adaptive Noise Reduction Filter Algorithm for Pediatric Body Images in a Multi Detector CT

机译:多探测器CT中儿科身体图像自适应降噪滤波器算法的开发

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Recently, several kinds of post-processing image filters which reduce the noise of computed tomography (CT) images have been proposed. However, these image filters are mostly for adults. Because these are not very effective in small (< 20 cm) display fields of view (FOV), we cannot use them for pediatric body images (e.g., premature babies and infant children). We have developed a new noise reduction filter algorithm for pediatric body CT images. This algorithm is based on a 3D post-processing in which the output pixel values are calculated by nonlinear interpolation in z-directions on original volumetric-data-sets. This algorithm does not need the in-plane (axial plane) processing, so the spatial resolution does not change. From the phantom studies, our algorithm could reduce SD up to 40% without affecting the spatial resolution of x-y plane and z-axis, and improved the CNR up to 30%. This newly developed filter algorithm will be useful for the diagnosis and radiation dose reduction of the pediatric body CT images.
机译:最近,已经提出了几种后处理图像滤波器,其降低了计算断层扫描(CT)图像的噪声。但是,这些图像过滤器主要用于成人。因为这些不是非常有效的小(<20 cm)显示视野(FOV),我们不能将它们用于儿科身体图像(例如,早产儿和婴儿儿童)。我们开发了一种用于儿科体CT图像的新消息滤波器算法。该算法基于3D后处理,其中输出像素值是通过原始体积数据集的Z方向上的非线性插值计算的。该算法不需要面内(轴向平面)处理,因此空间分辨率不会改变。从幻影研究,我们的算法可以将高达40%的算法减少40%,而不会影响X-Y平面和Z轴的空间分辨率,并将CNR改善高达30%。该新开发的滤波算法对于儿科体CT图像的诊断和辐射剂量减少是有用的。

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