Atwood Todd, Robbins Mike E, Zhu Jian-Ming
MR Molecular Imaging Lab, Wake Forest University School of Medicine, Winston-Salem, North Carolina 27157-1059, USA.
J Magn Reson Imaging. 2007 Dec;26(6):1590-5. doi: 10.1002/jmri.21095.
To investigate if in vivo localized proton magnetic resonance spectroscopy (MRS) can detect putative metabolic changes in the irradiated rat brain and quantitatively measure brain metabolite changes in this model.
A total of 20 adult male Fischer 344 rats were exposed to a fractionated regimen of whole brain irradiation (WBI) (total 45 Gy, given as five Gy fractions, twice per week for 4.5 weeks); 10 control rats received sham irradiation. A total of 52 weeks after WBI, all animals were subjected to high-resolution MRI and in vivo proton MRS to determine structural and brain metabolite changes. Brain metabolites were measured by using single-voxel MRS. Quantitative analysis of detectable metabolites was performed by using the spectral analysis method, LCModel.
Significant differences in brain metabolite concentrations were detected in rat brains irradiated with a clinically relevant fractionated radiotherapy regimen in 52 weeks, in comparison to age-matched sham-irradiated rats.
These findings indicate that quantitative in vivo MRS may serve as a sensitive imaging tool to noninvasively detect neurochemical changes in the irradiated brain.
研究活体局部质子磁共振波谱(MRS)是否能够检测受照射大鼠脑内假定的代谢变化,并在此模型中定量测量脑代谢物变化。
总共20只成年雄性Fischer 344大鼠接受了全脑照射(WBI)的分次照射方案(总量45 Gy,每次5 Gy,每周两次,共4.5周);10只对照大鼠接受假照射。在WBI后总共52周,对所有动物进行高分辨率MRI和活体质子MRS检查,以确定结构和脑代谢物变化。使用单体素质子MRS测量脑代谢物。通过光谱分析方法LCModel对可检测代谢物进行定量分析。
与年龄匹配的假照射大鼠相比,在52周时用临床相关的分次放疗方案照射的大鼠脑中检测到脑代谢物浓度存在显著差异。
这些发现表明,定量活体MRS可作为一种敏感的成像工具,用于无创检测受照射脑内的神经化学变化。