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Evaluation of Interpolation Effects on Upsampling and Accuracy of Cost Functions-Based Optimized Automatic Image Registration

机译:基于成本函数的优化自动图像配准对插值效果的影响

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摘要

Interpolation has become a default operation in image processing and medical imaging and is one of the important factors in the success of an intensity-based registration method. Interpolation is needed if the fractional unit of motion is not matched and located on the high resolution (HR) grid. The purpose of this work is to present a systematic evaluation of eight standard interpolation techniques (trilinear, nearest neighbor, cubic Lagrangian, quintic Lagrangian, hepatic Lagrangian, windowed Sinc, B-spline 3rd order, and B-spline 4th order) and to compare the effect of cost functions (least squares (LS), normalized mutual information (NMI), normalized cross correlation (NCC), and correlation ratio (CR)) for optimized automatic image registration (OAIR) on 3D spoiled gradient recalled (SPGR) magnetic resonance images (MRI) of the brain acquired using a 3T GE MR scanner. Subsampling was performed in the axial, sagittal, and coronal directions to emulate three low resolution datasets. Afterwards, the low resolution datasets were upsampled using different interpolation methods, and they were then compared to the high resolution data. The mean squared error, peak signal to noise, joint entropy, and cost functions were computed for quantitative assessment of the method. Magnetic resonance image scans and joint histogram were used for qualitative assessment of the method.
机译:插值已成为图像处理和医学成像中的默认操作,并且是基于强度的配准方法成功的重要因素之一。如果运动的小数单位不匹配并且位于高分辨率(HR)网格上,则需要插值。这项工作的目的是对八种标准插值技术(三线性,最近邻,三次拉格朗日,五次拉格朗日,肝拉格朗日,开窗Sinc,B样条3阶和B样条4阶)进行系统评估。成本函数(最小二乘法(LS),归一化互信息(NMI),归一化互相关(NCC)和相关比(CR))对3D变差梯度召回(SPGR)磁性优化自动图像配准(OAIR)的影响使用3T GE MR扫描仪获取的大脑共振图像(MRI)。在轴向,矢状和冠状方向执行子采样以模拟三个低分辨率数据集。然后,使用不同的插值方法对低分辨率数据集进行上采样,然后将其与高分辨率数据进行比较。计算均方误差,峰值信噪比,联合熵和成本函数,以对该方法进行定量评估。磁共振图像扫描和关节直方图用于该方法的定性评估。

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