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首页> 外文期刊>Medical Imaging, IEEE Transactions on >Accuracy of the Morphology Enabled Dipole Inversion (MEDI) Algorithm for Quantitative Susceptibility Mapping in MRI
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Accuracy of the Morphology Enabled Dipole Inversion (MEDI) Algorithm for Quantitative Susceptibility Mapping in MRI

机译:MRI中定量磁化率映射的形态学偶极子反演(MEDI)算法的准确性

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摘要

Determining the susceptibility distribution from the magnetic field measured in a magnetic resonance (MR) scanner is an ill-posed inverse problem, because of the presence of zeroes in the convolution kernel in the forward problem. An algorithm called morphology enabled dipole inversion (MEDI), which incorporates spatial prior information, has been proposed to generate a quantitative susceptibility map (QSM). The accuracy of QSM can be validated experimentally. However, there is not yet a rigorous mathematical demonstration of accuracy for a general regularized approach or for MEDI specifically. The error in the susceptibility map reconstructed by MEDI is expressed in terms of the acquisition noise and the error in the spatial prior information. A detailed analysis demonstrates that the error in the susceptibility map reconstructed by MEDI is bounded by a linear function of these two error sources. Numerical analysis confirms that the error of the susceptibility map reconstructed by MEDI is on the same order of the noise in the original MRI data, and comprehensive edge detection will lead to reduced model error in MEDI. Additional phantom validation and human brain imaging demonstrated the practicality of the MEDI method.
机译:由于在正向问题中卷积核中存在零,因此根据在磁共振(MR)扫描仪中测量的磁场确定磁化率分布是一个不适定的逆问题。提出了一种称为形态学的偶极子反演(MEDI)算法,该算法结合了空间先验信息,可以生成定量磁化率图(QSM)。 QSM的准确性可以通过实验验证。但是,对于一般的正则化方法或专门针对MEDI的精确度,尚无严格的数学证明。通过MEDI重建的磁化率图中的误差用采集噪声和空间先验信息中的误差表示。详细分析表明,MEDI重建的磁化率图中的误差受这两个误差源的线性函数的限制。数值分析证实,MEDI重建的磁化率图的误差与原始MRI数据中噪声的数量级相同,全面的边缘检测将减少MEDI中的模型误差。额外的幻像验证和人脑成像证明了MEDI方法的实用性。

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