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骨髓的高级磁共振成像:在 T1 加权 Dixon 和 T2 加权 Dixon 序列上对红骨髓、黄骨髓和病理性骨髓病变的信号改变进行定量分析。

Advanced MR imaging of bone marrow: quantification of signal alterations on T1-weighted Dixon and T2-weighted Dixon sequences in red marrow, yellow marrow, and pathologic marrow lesions.

机构信息

Radiology Department, UT Southwestern Medical Center, 5323 Harry Hines Blvd, Dallas, TX, 75390, USA.

Orthopedics Department, UT Southwestern Medical Center, Dallas, TX, USA.

出版信息

Skeletal Radiol. 2020 Apr;49(4):541-548. doi: 10.1007/s00256-019-03303-z. Epub 2019 Oct 12.

Abstract

OBJECTIVES

To quantify and compare signal intensity (SI) changes on T1-weighted (W) and T2W Dixon imaging in yellow marrow, red marrow, and bone marrow lesions.

MATERIALS AND METHODS

A total of 141 patients (77 controls, 64 lesions-33 benign, 31 malignant) between January 2016 and December 2017 were retrospectively identified. For the control group, fixed 2-cm region of interests (ROI) were drawn at L5, bilateral ilium and femurs on in-phase and opposed-phase T1W and T2W Dixon images. For the lesion group, ROIs of best fit were drawn around each lesion on in-phase and opposed-phase T2W Dixon images. SI changes between in-phase and opposed phase maps for each group were compared. Inter-reader analysis was performed.

RESULTS

Yellow marrow exhibited smaller SI changes as compared to red marrow on both T1W and T2W Dixon imaging at all locations (p < 0.0001) except at L5 on T2W Dixon imaging (p = 0.206). Both benign and malignant lesions showed significantly smaller SI changes as compared to both yellow (p = 0.0087, p < 0.0001) and red marrow (p = 0.0004, p < 0.0001) on T2W Dixon imaging. Malignant lesions exhibited smaller SI change as compared to benign lesions on T2W Dixon imaging (p = 0.0005). Signal intensity loss on both red and yellow marrow were smaller on T1W Dixon as compared to T2W Dixon (0.49-0.64, 0.27-0.31 vs. 0.70-0.74, 0.48-0.71). Inter-reader agreements were excellent (0.91-0.97).

CONCLUSIONS

SI change calculated from T2-weighted Dixon imaging can adequately differentiate between yellow marrow, red marrow, and osseous lesions, both benign and malignant.

摘要

目的

定量和比较 T1 加权(W)和 T2W Dixon 成像中黄骨髓、红骨髓和骨髓病变的信号强度(SI)变化。

材料与方法

回顾性分析了 2016 年 1 月至 2017 年 12 月期间的 141 名患者(77 名对照,64 名病变-33 名良性,31 名恶性)。对于对照组,在 L5、双侧髂骨和股骨的同相位和反相位 T1W 和 T2W Dixon 图像上绘制固定的 2cm 感兴趣区(ROI)。对于病变组,在同相位和反相位 T2W Dixon 图像上围绕每个病变绘制最佳拟合 ROI。比较各组同相位和反相位图谱之间的 SI 变化。进行了读者间分析。

结果

黄骨髓在所有部位的 T1W 和 T2W Dixon 成像上的 SI 变化均小于红骨髓(p<0.0001),除 L5 在 T2W Dixon 成像上(p=0.206)外。良性和恶性病变的 SI 变化均明显小于黄骨髓(p=0.0087,p<0.0001)和红骨髓(p=0.0004,p<0.0001),T2W Dixon 成像。恶性病变的 SI 变化小于 T2W Dixon 成像上的良性病变(p=0.0005)。与 T2W Dixon 相比,T1W Dixon 上红骨髓和黄骨髓的信号强度损失较小(0.49-0.64,0.27-0.31 vs. 0.70-0.74,0.48-0.71)。读者间的一致性很好(0.91-0.97)。

结论

T2W Dixon 成像计算的 SI 变化可充分区分黄骨髓、红骨髓和良恶性骨病变。

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