成像体模
医学
梯度计
核医学
核磁共振
磁共振成像
体内
内科学
脂肪组织
生物医学工程
化学
放射科
生物
物理
磁场
生物技术
磁强计
量子力学
作者
Zimeng Cai,Tao Quan,Alessandro Scotti,Peiwei Yi,Yanqiu Feng,Kejia Cai
摘要
BACKGROUND: * decay and field inhomogeneity. PURPOSE: To demonstrate ZS-MRI for marrow adipose tissue (MAT) quantification in rat's lumbar spine and the early detection of MAT changes with age. METHODS: The accuracy of ZS-MRI for fat quantification at ultra-high-field MRI (7 T) was verified with MRS and conventional Dixon MRI in water-oil mixed phantoms with varying fat fraction (FF). Dixon MRI data were processed with iterative decomposition of water and fat with echo asymmetry and least-squares estimation. ZS-MRI was then used to longitudinally monitor the adiposity in the lumbar spine of young healthy rats at 13, 17, and 21 weeks to detect the early changes of FF with age in MAT. Hematoxylin-eosin staining of lumbar spines from separated rat groups was performed for verification. RESULTS: H-MRS for the early detection of increased MAT due to age at 7 T (ZS-MRI R = 0.78 versus Dixon MRI R = 0.34). The increased MAT FF due to age was confirmed by histology. CONCLUSION: ZS-MRI proves itself as an alternative fat quantification method for bone marrow in rats at 7 T.
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