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应用定量磁化率图评估人脑海绵状血管畸形的铁含量。

Evaluation of iron content in human cerebral cavernous malformation using quantitative susceptibility mapping.

机构信息

From the *Department of Surgery (Neurosurgery), University of Chicago Medicine and Biological Sciences, Chicago, IL; †MedImageMetric LLC, New York, NY; ‡Department of Radiology, NorthShore University HealthSystem, Evanston; §Department of Radiology, Pritzker School of Medicine, University of Chicago, Chicago; ∥Department of Biomedical Engineering, Northwestern University; ¶Department of Chemistry, Northwestern University, Evanston, IL; #Department of Radiology, Weill Cornell Medical College, New York; **Department of Biomedical Engineering, Cornell University, Ithaca, NY; and ††Department of Radiology, Feinberg School of Medicine, Northwestern University, Chicago, IL.

出版信息

Invest Radiol. 2014 Jul;49(7):498-504. doi: 10.1097/RLI.0000000000000043.

Abstract

OBJECTIVES

The aims of this study were to investigate and validate quantitative susceptibility mapping (QSM) for lesional iron quantification in cerebral cavernous malformations (CCMs).

MATERIALS AND METHODS

Magnetic resonance imaging studies were performed in phantoms and 16 patients on a 3-T scanner. Susceptibility weighted imaging, QSM, and R2* maps were reconstructed from in vivo data acquired with a 3-dimensional, multi-echo, and T2*-weighted gradient echo sequence. Magnetic susceptibility measurements were correlated to susceptibility weighted imaging and R2* results. In addition, iron concentrations from surgically excised CCM lesion specimens were determined using inductively coupled plasma mass spectrometry and correlated with QSM measurements.

RESULTS

The QSM images demonstrated excellent image quality for depicting CCM lesions in both sporadic and familial cases. Susceptibility measurements revealed a positive linear correlation with R2* values (R(2) = 0.99 for total, R(2) = 0.69 for mean; P < 0.01). Quantitative susceptibility mapping values of known iron-rich brain regions matched closely with those of previous studies and in interobserver consistency. A strong correlation was found between QSM and the concentration of iron phantoms (0.925; P < 0.01), as well as between QSM and mass spectroscopy estimation of iron deposition (0.999 for total iron, 0.86 for iron concentration; P < 0.01) in 18 fragments of 4 excised human CCM lesion specimens.

CONCLUSIONS

The ability of QSM to evaluate iron deposition in CCM lesions was illustrated via phantom, in vivo, and ex vivo validation studies. Quantitative susceptibility mapping may be a potential biomarker for monitoring CCM disease activity and response to treatments.

摘要

目的

本研究旨在探索并验证定量磁化率映射(QSM)在脑动静脉畸形(AVM)病灶中铁定量中的应用。

材料与方法

在 3T 扫描仪上对模型和 16 例患者进行磁共振成像研究。从三维、多回波、T2*-加权梯度回波序列采集的体内数据重建了磁敏感加权成像、QSM 和 R2图。对磁化率测量值与磁敏感加权成像和 R2结果进行了相关性分析。此外,使用电感耦合等离子体质谱法测定了从手术切除的 CCM 病变标本中提取的铁浓度,并与 QSM 测量值进行了相关性分析。

结果

QSM 图像在显示散发性和家族性 CCM 病变方面具有良好的图像质量。磁化率测量值与 R2*值呈正线性相关(总磁化率的 R2 值为 0.99,平均磁化率的 R2 值为 0.69;P<0.01)。已知富含铁的脑区的 QSM 值与之前的研究结果以及观察者间的一致性非常吻合。QSM 值与铁模型的浓度(0.925;P<0.01)以及 QSM 值与 4 例手术切除的 CCM 病变标本中 18 个碎片的质谱法铁沉积估计值(总铁的 R2 值为 0.999,铁浓度的 R2 值为 0.86;P<0.01)之间存在较强的相关性。

结论

通过模型、体内和离体验证研究,证明了 QSM 评估 CCM 病灶中铁沉积的能力。定量磁化率映射可能是监测 CCM 疾病活动和治疗反应的潜在生物标志物。

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