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首页> 外文期刊>Journal of magnetic resonance imaging: JMRI >Quantitative susceptibility mapping (QSM) minimizes interference from cellular pathology in R2* estimation of liver iron concentration
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Quantitative susceptibility mapping (QSM) minimizes interference from cellular pathology in R2* estimation of liver iron concentration

机译:定量敏感性映射(QSM)最小化R2中肝脏铁浓度估计中蜂窝病理学的干扰

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摘要

Background A challenge for R2 and R2* methods in measuring liver iron concentration (LIC) is that fibrosis, fat, and other hepatic cellular pathology contribute to R2 and R2* and interfere with LIC estimation. Purpose To examine the interfering effects of fibrosis, fat, and other lesions on R2* LIC estimation and to use quantitative susceptibility mapping (QSM) to reduce these distortions. Study Type Prospective. Phantoms, Subjects Water phantoms with various concentrations of gadolinium (Gd), collagen (Cl, modeling fibrosis), and fat; nine healthy controls with no known hepatic disease, nine patients with known or suspected hepatic iron overload, and nine patients with focal liver lesions. Field Strength/Sequence The phantoms and human subjects were imaged using a 3D multiecho gradient‐echo on clinical 1.5T and 3T MRI systems. Assessment QSM and R2* images were postprocessed from the same gradient‐echo data. Fat contributions to susceptibility and R2* were corrected in signal models for LIC estimation. Statistical Tests Polynomial regression analyses were performed to examine relations among susceptibility, R2* and true [Gd] and [Cl] in phantoms, and among susceptibility and R2* in patient livers. Results In phantoms, R2* had a strong nonlinear dependency on [Cl], [fat], and [Gd], while susceptibility was linearly dependent (R 2 ??0.98). In patients, R2* was highly sensitive to liver pathological changes, including fat, fibrosis, and tumors, while QSM was relatively insensitive to these abnormalities ( P ?=?0.015). With moderate iron overload, liver susceptibility and R2* were not linearly correlated over a common R2* range [0, 100] sec ?1 ( P ?=?0.35). Data Conclusion R2* estimation of LIC is prone to substantial nonlinear interference from fat, fibrosis, and other lesions. QSM processing of the same gradient echo MRI data can effectively minimize the effects of cellular pathology. Level of Evidence : 1 Technical Efficacy : Stage 1 J. Magn. Reson. Imaging 2018;48:1069–1079.
机译:背景技术测量肝脏铁浓度(LIC)的R2和R2 *方法的挑战是纤维化,脂肪和其他肝细胞病理学促进R2和R2 *并干扰LIC估计。目的检查纤维化,脂肪和其他病变对R2 * LIC估计的干扰效果,并使用定量敏感性映射(QSM)来减少这些扭曲。研究类型预期。幽灵,对各种浓度的钆(Gd),胶原(Cl,造型纤维化)和脂肪进行水体映像。没有已知的肝病,九个患者患有九种健康对照,患有九名患者的肝脏铁过载,以及九个局灶性肝脏病变患者。场强/序列使用临床1.5T和3T MRI系统上的3D MultiCho梯度回声对偶像和人受试者进行成像。评估QSM和R2 *图像从相同的梯度回声数据后处理。在LIC估计的信号模型中校正了对易感性和R2 *的脂肪贡献。进行统计测试多项式回归分析,以检查易感性,R2 *和真实[Gd]和[Cl]的关系,以及患者肝脏中的易感性和R2 *。结果在幽灵中,R2 *对[Cl],[FAT]和[GD]具有强烈的非线性依赖性,而易感性是线性依赖的(R 2?&?0.98)。在患者中,R2 *对肝脏病理变化非常敏感,包括脂肪,纤维化和肿瘤,而QSM对这些异常相对不敏感(P?= 0.015)。具有中等的铁过载,肝脏敏感性和R2 *在普通的R2 *范围内没有线性相关[0,100]秒α1(p?= 0.35)。数据结论R2 * LIC的估计容易出于脂肪,纤维化和其他病变的大量非线性干扰。 QSM处理相同梯度回波MRI数据可以有效地减少细胞病理学的影响。证据水平:1技术疗效:第1阶段J. MANG。恢复。 2018年成像; 48:1069-1079。

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  • 作者单位

    Shanghai Key Laboratory of Magnetic Resonance and Department of PhysicsEast China Normal;

    Department of Radiology Ruijin HospitalShanghai Jiao Tong University School of MedicineShanghai;

    Department of RadiologyWeill Medical College of Cornell UniversityNew York New York USA;

    Department of RadiologyShanghai Tenth People's Hospital Affiliated to Tongji University School of;

    Department of RadiologyWeill Medical College of Cornell UniversityNew York New York USA;

    Department of RadiologyWeill Medical College of Cornell UniversityNew York New York USA;

    MR Collaboration NE Asia Siemens HealthcareShanghai China;

    Department of Radiology Ruijin HospitalShanghai Jiao Tong University School of MedicineShanghai;

    Department of RadiologyShanghai Tenth People's Hospital Affiliated to Tongji University School of;

    Shanghai Key Laboratory of Magnetic Resonance and Department of PhysicsEast China Normal;

    Shanghai Key Laboratory of Magnetic Resonance and Department of PhysicsEast China Normal;

    Shanghai Key Laboratory of Magnetic Resonance and Department of PhysicsEast China Normal;

    Shanghai Key Laboratory of Magnetic Resonance and Department of PhysicsEast China Normal;

    Department of RadiologyShanghai Tenth People's Hospital Affiliated to Tongji University School of;

    Shanghai Key Laboratory of Magnetic Resonance and Department of PhysicsEast China Normal;

    Department of PediatricsColumbia UniversityNew York New York USA;

    Shanghai Key Laboratory of Magnetic Resonance and Department of PhysicsEast China Normal;

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  • 正文语种 eng
  • 中图分类 诊断学;
  • 关键词

    quantitative susceptibility mapping; QSM; liver iron concentration; magnetic susceptibility; cellularity;

    机译:定量易感性映射;QSM;肝脏浓度;磁化率;细胞性;

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