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首页> 外文期刊>NeuroImage >Quantitative imaging of intrinsic magnetic tissue properties using MRI signal phase: an approach to in vivo brain iron metabolism?
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Quantitative imaging of intrinsic magnetic tissue properties using MRI signal phase: an approach to in vivo brain iron metabolism?

机译:使用MRI信号相对固有磁性组织特性进行定量成像:体内脑铁代谢的一种方法?

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摘要

Quantitative susceptibility mapping (QSM) based on gradient echo (GRE) magnetic resonance phase data is a novel technique for non-invasive assessment of magnetic tissue susceptibility differences. The method is expected to be an important means to determine iron distributions in vivo and may, thus, be instrumental for elucidating the physiological role of iron and disease-related iron concentration changes associated with various neurological and psychiatric disorders. This study introduces a framework for QSM and demonstrates calculation of reproducible and orientation-independent susceptibility maps from GRE data acquired at 3T. The potential of these susceptibility maps to perform anatomical imaging is investigated, as well as the ability to measure the venous blood oxygen saturation level in large vessels, and to assess the local tissue iron concentration. In order to take into account diamagnetic susceptibility contributions induced by myelin, a correction scheme for susceptibility based iron estimation is demonstrated. The findings suggest that susceptibility contrast, and therewith also phase contrast, are not only linked to the storage iron concentration but are also significantly influenced by other sources such as myelin. After myelin correction the linear dependence between magnetic susceptibilities and previously published iron concentrations from post mortem studies was significantly improved. Finally, a comparison between susceptibility maps and processed phase images indicated that caution should be exercised when drawing conclusions about iron concentrations when directly assessing processed phase information.
机译:基于梯度回波(GRE)磁共振相位数据的定量磁化率映射(QSM)是一种用于磁组织磁化率差异的非侵入性评估的新技术。该方法有望成为确定体内铁分布的重要手段,因此可能有助于阐明铁的生理作用以及与各种神经病和精神病相关的疾病相关的铁浓度变化。这项研究介绍了QSM的框架,并演示了根据3T采集的GRE数据计算可再现和与方向无关的磁化率图的方法。研究了这些敏感性图执行解剖成像的潜力,以及测量大型血管中静脉血氧饱和度水平和评估局部组织铁浓度的能力。为了考虑髓磷脂引起的抗磁化率贡献,提出了基于磁化率的铁估计的校正方案。这些发现表明,磁化率对比以及相衬不仅与存储铁的浓度有关,而且还受到诸如髓磷脂等其他来源的显着影响。髓磷脂校正后,磁化率与验尸研究中先前公布的铁浓度之间的线性相关性得到显着改善。最后,磁化率图和加工相图像之间的比较表明,在直接评估加工相信息时得出有关铁浓度的结论时应谨慎行事。

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