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Pulse Sequence based Multi-acquisition MR Intensity Normalization

机译:基于脉冲序列的多采集MR强度归一化

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Intensity normalization is an important preprocessing step in magnetic resonance (MR) image analysis. In MR images (MRI), the observed intensities are primarily dependent on (1) intrinsic magnetic resonance properties of the tissues such as proton density (Pd), longitudinal and transverse relaxation times (T_1 and T_2 respectively), and (2) the scanner imaging parameters like echo time (TE), repeat time (TR), and flip angle (α). We propose a method which utilizes three co-registered images with different contrast mechanisms (PD-weighted, T2-weighted and T1-weighted) to first estimate the imaging parameters and then estimate P_D, T_1 and T_2 values. We then normalize the subject intensities to a reference by simply applying the pulse sequence equation of the reference image to the subject tissue parameters. Previous approaches to solve this problem have primarily focused on matching the intensity histograms of the subject image to a reference histogram by different methods. The fundamental drawback of these methods is their failure to respect the underlying imaging physics and tissue biology. Our method is validated on phantoms and we show improvement of normalization on real images of human brains.
机译:强度归一化是磁共振(MR)图像分析中的重要预处理步骤。在MR图像(MRI)中,观察到的强度主要取决于(1)组织的固有磁共振特性,例如质子密度(Pd),纵向和横向弛豫时间(分别为T_1和T_2),以及(2)扫描仪成像参数,例如回波时间(TE),重复时间(TR)和翻转角(α)。我们提出了一种方法,该方法利用具有不同对比度机制(PD加权,T2加权和T1加权)的三个共同配准的图像来首先估计成像参数,然后估计P_D,T_1和T_2值。然后,我们可以通过简单地将参考图像的脉冲序列方程应用于对象组织参数,将对象强度标准化为参考。解决该问题的先前方法主要集中于通过不同方法将对象图像的强度直方图与参考直方图进行匹配。这些方法的根本缺点是它们未能遵守基础的成像物理学和组织生物学。我们的方法在幻影上得到了验证,并且在人脑的真实图像上显示了标准化的改进。

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