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定量磁化率成像:对比机制与临床应用

Quantitative Susceptibility Mapping: Contrast Mechanisms and Clinical Applications.

作者信息

Liu Chunlei, Wei Hongjiang, Gong Nan-Jie, Cronin Matthew, Dibb Russel, Decker Kyle

机构信息

Brain Imaging and Analysis Center, Duke University School of Medicine, Durham, NC 27710; Department of Radiology, Duke University School of Medicine, Durham, NC 27710; Center for In Vivo Microscopy, Duke University School of Medicine, Durham, NC 27710.

Brain Imaging and Analysis Center, Duke University School of Medicine, Durham, NC 27710.

出版信息

Tomography. 2015 Sep;1(1):3-17. doi: 10.18383/j.tom.2015.00136.

Abstract

Quantitative susceptibility mapping (QSM) is a recently developed MRI technique for quantifying the spatial distribution of magnetic susceptibility within biological tissues. It first uses the frequency shift in the MRI signal to map the magnetic field profile within the tissue. The resulting field map is then used to determine the spatial distribution of the underlying magnetic susceptibility by solving an inverse problem. The solution is achieved by deconvolving the field map with a dipole field, under the assumption that the magnetic field is a result of the superposition of the dipole fields generated by all voxels and that each voxel has its unique magnetic susceptibility. QSM provides improved contrast to noise ratio for certain tissues and structures compared to its magnitude counterpart. More importantly, magnetic susceptibility is a direct reflection of the molecular composition and cellular architecture of the tissue. Consequently, by quantifying magnetic susceptibility, QSM is becoming a quantitative imaging approach for characterizing normal and pathological tissue properties. This article reviews the mechanism generating susceptibility contrast within tissues and some associated applications.

摘要

定量磁化率成像(QSM)是一种最近开发的磁共振成像(MRI)技术,用于量化生物组织内磁化率的空间分布。它首先利用MRI信号中的频率偏移来绘制组织内的磁场分布图。然后,通过解决一个反问题,利用得到的场图来确定潜在磁化率的空间分布。在磁场是由所有体素产生的偶极场叠加而成且每个体素具有其独特磁化率的假设下,通过用场图与偶极场进行去卷积来实现求解。与幅度成像相比,QSM为某些组织和结构提供了更高的对比度噪声比。更重要的是,磁化率是组织分子组成和细胞结构的直接反映。因此,通过量化磁化率,QSM正成为一种用于表征正常和病理组织特性的定量成像方法。本文综述了组织内产生磁化率对比度的机制以及一些相关应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/37f8/6024410/532b2f8cb40e/tom0011500070001.jpg

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