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Understanding the Morphological Mismatch Between Magnetic Susceptibility Source and T2* Image

机译:了解磁化率源与T2 *图像之间的形态不匹配

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Background and Purpose: Recent research has shown that a T2* image (either magnitude or phase) is not identical to the internal spatial distribution of a magnetic susceptibility (χ) source. In this paper, we examine the reasons behind these differences by looking into the insights of T2*-weighted magnetic resonance imaging (T2*MRI) and provide numerical characterizations of the source/image mismatches by numerical simulations.Methods: For numerical simulations of T2*MRI, we predefine a 3D χ source and calculate the complex-valued T2* image by intravoxel dephasing in presence and absence of diffusion. We propose an empirical α-power model to describe the overall source/image transformation. For a Gaussian-shaped χ source, we numerically characterize the source/image morphological mismatch in terms of spatial correlation and FWHM (full width at half maximum).Results: In theory, we show that the χ-induced fieldmap is morphologically different from the χ source due to dipole effect, and the T2* magnitude image is related to the fieldmap by a quadratic transformation in the small phase angle regime, which imposes an additional morphological change. The numerical simulations with a Gaussian-shaped χ source show that a T2* magnitude image may suffer an overall source/image morphological shrinkage of 20% to 25% and that the T2* phase image is almost identical to the fieldmap thus maintaining a morphological mismatch from the χ source due to dipole effect.Conclusion: The morphological mismatch between a bulk χ source and its T2* image is caused by the 3D convolution during tissue magnetization (dipole effect), the nonlinearity of the T2* magnitude and phase calculation, and the spin diffusion effect. In the small phase angle regime, the T2* magnitude exhibits an overall morphological shrinkage, and the T2* phase image suffers a dipole effect but maintains the χ-induced fieldmap morphology.
机译:背景与目的:最近的研究表明,T2 *图像(幅度或相位)与磁化率(χ)源的内部空间分布不同。在本文中,我们通过研究T2 *加权磁共振成像(T2 * MRI)的洞察力检查了这些差异背后的原因,并通过数值模拟提供了源/图像不匹配的数值表征。方法:对于T2的数值模拟* MRI,我们预先定义了一个3Dχ信号源,并在存在和不存在扩散的情况下通过体素内移相来计算复数值T2 *图像。我们提出了一个经验α幂模型来描述整个源/图像转换。对于高斯形状的χ源,我们从空间相关性和FWHM(半高全宽)的角度对源/图像形态失配进行了数值表征。结果:从理论上讲,我们表明χ诱导的场图在形态上与由于偶极效应而产生χ源,并且T2 *幅值图像通过小相位角状态下的二次变换与场图相关,这带来了额外的形态变化。高斯形χ射线源的数值模拟表明,T2 *幅值图像可能会遭受20%到25%的总体源/图像形态缩小,并且T2 *相位图像几乎与场图相同,因此保持了形态失配结论:由于组织磁化过程中的3D卷积(偶极效应),T2 *幅度和相位计算的非线性以及自旋扩散效应。在小相角状态下,T2 *量级表现出总体的形貌收缩,并且T2 *相图像遭受偶极效应,但保持χ诱导的场图形态。

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