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首页> 外文期刊>Journal of magnetic resonance imaging: JMRI >Diffusion tensor imaging (DTI) of rodent brains in vivo using a 1.5T clinical MR scanner.
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Diffusion tensor imaging (DTI) of rodent brains in vivo using a 1.5T clinical MR scanner.

机译:使用1.5T临床MR扫描仪对啮齿动物的体内扩散张量成像(DTI)。

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PURPOSE: To evaluate the feasibility of using a clinical 1.5T MR scanner to perform magnetic resonance (MR) diffusion tensor imaging (DTI) on in vivo rodent brains and to trace major rodent neuronal bundles with anatomical correlation. MATERIALS AND METHODS: Two normal adult Sprague Dawley (SD) rats were anesthetized and imaged in a 1.5T MR scanner with a microscopic coil. DTI was performed at a resolution of 0.94 mm x 0.94 mm x 0.5 mm (reconstructed to 0.47 mm x 0.47 mm x 0.5 mm, with b-factors of 600 seconds/mm2 and 1000 seconds/mm2) and a higher resolution of 0.63 mm x 0.63 mm x 0.5 mm (reconstructed to 0.235 mm x 0.235 mm x 0.5 mm, with a b-factor of 1500 seconds/mm2). The fiber-tracking results were correlated with corresponding anatomical sections stained to visualize neuronal fibers. The apparent diffusion coefficient (ADC) and fractional anisotropy (FA) of the neuronal fibers were measured and compared with results in published reports. RESULTS: Several major neuronal fiber tracts, including the corticospinal cord, corpus callosum, and anterior commissure, were identified in all DTI data sets. Stained anatomical sections obtained from the rats confirmed the location of these fibers. The ADC values (0.6-0.8 +/- 10(-3) mm2/second) of the fibers were similar to published figures. However, the FA values (0.3-0.35) were lower than those obtained in previous studies of white matter in rodent spinal cord. CONCLUSION: We have demonstrated the feasibility of using a 1.5T clinical MR scanner for neuronal fiber tracking in rodent brains. The technique will be useful in rodent neuroanatomy studies. Further investigation is encouraged to verify the FA values generated by DTI with such techniques.
机译:目的:评估使用临床1.5T MR扫描仪在体内啮齿动物大脑上进行磁共振(MR)扩散张量成像(DTI)并追踪具有解剖相关性的主要啮齿动物神经束的可行性。材料与方法:将两只正常成年的Sprague Dawley(SD)大鼠麻醉,并在带有显微镜线圈的1.5T MR扫描仪中成像。 DTI的分辨率为0.94 mm x 0.94 mm x 0.5 mm(重构为0.47 mm x 0.47 mm x 0.5 mm,b因子为600秒/ mm2和1000秒/ mm2),分辨率为0.63 mm x 0.63毫米x 0.5毫米(重建为0.235毫米x 0.235毫米x 0.5毫米,b因子为1500秒/ mm2)。纤维追踪结果与染色的相应解剖切片相关,以可视化神经元纤维。测量了神经纤维的表观扩散系数(ADC)和分数各向异性(FA),并与已发表报告中的结果进行了比较。结果:在所有DTI数据集中都确定了几个主要的神经元纤维束,包括皮质脊髓、,体和前连合。从大鼠获得的染色的解剖切片证实了这些纤维的位置。纤维的ADC值(0.6-0.8 +/- 10(-3)mm2 /秒)与公开的数据相似。但是,FA值(0.3-0.35)低于先前在啮齿类动物脊髓中研究白质的值。结论:我们已经证明了使用1.5T临床MR扫描仪在啮齿动物大脑中跟踪神经元纤维的可行性。该技术将在啮齿动物的神经解剖学研究中有用。鼓励进行进一步的研究以验证DTI使用此类技术生成的FA值。

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