Université de Lyon, Lyon 1, Lyon, France.
Mol Imaging Biol. 2011 Aug;13(4):672-8. doi: 10.1007/s11307-010-0402-1. Epub 2010 Aug 24.
To quantify small amounts of iron-labeled cells in mouse brains with magnetic resonance imaging (MRI).
Iron-labeled cells (from 500 to 7,500) were stereotaxically transplanted into the brain of living mice that were subsequently imaged with MRI at 4.7 T. We compared four quantitative methods: (1) T2 relaxometry, (2) T2* relaxometry, (3) the volume of the cloverleaf hypointense artifact generated on T2*-weighted images, and (4) the volume of the cloverleaf hyperintense artifact generated on positive contrast images.
The methods based on relaxometry, whether T2 or T2*, did not correlate with the number of injected cells. By contrast, those based on measurement of cloverleaf artifact volume, whether using negative or positive enhancement, showed a significant linear relationship for the given range of cells (R [0.92-0.95], p < 0.05).
T2* artifact volume imaging (negative or positive) appears promising for the quantification of magnetically labeled cells following focal injection in the brain.
利用磁共振成像(MRI)定量检测小鼠脑中少量铁标记细胞。
将铁标记细胞(500 至 7500 个)立体定向移植到活体小鼠脑内,随后在 4.7T 下进行 MRI 成像。我们比较了四种定量方法:(1)T2 弛豫度测量,(2)T2弛豫度测量,(3)T2-加权图像上产生的五叶草低信号伪影体积,以及(4)正对比图像上产生的五叶草高信号伪影体积。
基于弛豫度的方法,无论是 T2 还是 T2*,均与注入细胞的数量无相关性。相比之下,基于五叶草伪影体积测量的方法,无论是使用负性还是正性增强,在给定的细胞范围内均显示出显著的线性关系(R [0.92-0.95],p < 0.05)。
T2* 伪影体积成像(负性或正性)似乎是一种有前途的方法,可用于定量检测脑内局灶注射后磁性标记细胞。