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Original Article PET and MRI image fusion based on combination of 2-D Hilbert transform and IHS method

机译:基于二维希尔伯特变换和IHS方法相结合的PET与MRI图像融合

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Background The process of medical image fusion is combining two or more medical images such as Magnetic Resonance Image (MRI) and Positron Emission Tomography (PET) and mapping them to a single image as fused image. So purpose of our study is assisting physicians to diagnose and treat the diseases in the least of the time. Methods We used Magnetic Resonance Image (MRI) and Positron Emission Tomography (PET) as input images, so fused them based on combination of two dimensional Hilbert transform (2-D HT) and Intensity Hue Saturation (IHS) method. Evaluation metrics that we apply are Discrepancy (Dk) as an assessing spectral features and Average Gradient (AGk) as an evaluating spatial features and also Overall Performance (O.P) to verify properly of the proposed method. Results In this paper we used three common evaluation metrics like Average Gradient (AGk) and the lowest Discrepancy (Dk) and Overall Performance (O.P) to evaluate the performance of our method. Simulated and numerical results represent the desired performance of proposed method. Conclusions Since that the main purpose of medical image fusion is preserving both spatial and spectral features of input images, so based on numerical results of evaluation metrics such as Average Gradient (AGk), Discrepancy (Dk) and Overall Performance (O.P) and also desired simulated results, it can be concluded that our proposed method can preserve both spatial and spectral features of input images.
机译:背景技术医学图像融合的过程是将两个或多个医学图像(例如磁共振图像(MRI)和正电子发射断层扫描(PET))组合在一起,并将它们映射为一个融合图像。因此,我们的研究目的是在最短的时间内帮助医生诊断和治疗疾病。方法我们使用磁共振图像(MRI)和正电子发射断层扫描(PET)作为输入图像,因此基于二维Hilbert变换(2-D HT)和强度色相饱和度(IHS)方法对它们进行融合。我们采用的评估指标是差异(D k )作为评估频谱特征,平均梯度(AG k )作为评估空间特征以及总体性能(OP)正确验证提出的方法。结果在本文中,我们使用了三种常见的评估指标,例如平均梯度(AG k )和最低差异(D k )和总体绩效(OP)来评估绩效我们的方法。仿真和数值结果代表了所提出方法的期望性能。结论由于医学图像融合的主要目的是保留输入图像的空间和光谱特征,因此基于评估指标的数值结果,例如平均梯度(AG k ),差异(D k )和总体性能(OP)以及所需的模拟结果,可以得出结论,我们提出的方法既可以保留输入图像的空间特征,也可以保留光谱特征。

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