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面向定量磁化率图的在线重建:超快偶极子反演。

Toward online reconstruction of quantitative susceptibility maps: superfast dipole inversion.

机构信息

Medical Physics Group, Institute of Diagnostic and Interventional Radiology I, Jena University Hospital-Friedrich Schiller University Jena, Philosophenweg 3, 07743 Jena, Germany.

出版信息

Magn Reson Med. 2013 Jun;69(6):1582-94. doi: 10.1002/mrm.24405. Epub 2012 Jul 12.

Abstract

Magnetic susceptibility is an intrinsic tissue property that recently became measureable in vivo by a magnetic-resonance based technique called quantitative susceptibility mapping (QSM). Although QSM may be performed without additional acquisition time, for example, in the course of the well-established susceptibility weighted imaging, the applicability of QSM is currently hampered by the numerical complexity and computational cost associated with the reconstruction procedure. This work introduces a novel QSM framework called superfast dipole inversion which allows rapid online reconstruction of susceptibility maps from wrapped raw gradient-echo phase data. The algorithm relies on the extension and combination of several recent algorithms involving the precalculation of convolution kernels and the correction of inversion artifacts. Reconstruction of three-dimensional high resolution susceptibility maps of the human brain was achieved with superfast dipole inversion in less than 20 s on a conventional workstation computer. Thus, superfast dipole inversion opens the door to an implementation of QSM on MR scanner hardware as well as to the routine reconstruction of large cohorts of datasets.

摘要

磁化率是一种内在的组织特性,最近可以通过一种被称为定量磁化率映射(QSM)的磁共振技术在体内进行测量。虽然 QSM 可以在不增加采集时间的情况下进行,例如,在成熟的磁化率加权成像过程中,但 QSM 的适用性目前受到与重建过程相关的数值复杂性和计算成本的限制。这项工作介绍了一种称为超快偶极子反演的新型 QSM 框架,它允许从包裹的原始梯度回波相位数据中快速在线重建磁化率图。该算法依赖于几个最近的算法的扩展和组合,包括卷积核的预计算和反演伪影的校正。在传统的工作站计算机上,使用超快偶极子反演不到 20 秒即可实现人体大脑三维高分辨率磁化率图的重建。因此,超快偶极子反演为在磁共振扫描仪硬件上实现 QSM 以及对大量数据集进行常规重建打开了大门。

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