文颂,高歌军,杨涛,戴峰,谭中宝.7.0T Mn2+增强MRI追踪大鼠神经传导束[J].中国医学影像技术,2010,26(1):29~32
7.0T Mn2+增强MRI追踪大鼠神经传导束
Tracing rat nerve tracts with 7.0T Manganese-enhanced MRI
投稿时间:2009-07-20  修订日期:2009-08-11
DOI:
中文关键词:    磁共振成像  锥体束
英文关键词:Manganese  Magnetic resonance imaging  Pyramidal tracts
基金项目:
作者单位E-mail
文颂 东南大学附属中大医院放射科, 江苏 南京 210009 songwen81@gmail.com 
高歌军 东南大学附属中大医院放射科, 江苏 南京 210009 gaogejun@tom.com 
杨涛 东南大学附属中大医院放射科, 江苏 南京 210009  
戴峰 东南大学附属中大医院放射科, 江苏 南京 210009  
谭中宝 东南大学附属中大医院放射科, 江苏 南京 210009  
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中文摘要:
      目的 探讨7.0T Mn2+增强MRI(MEMRI)追踪活体大鼠神经传导束的作用。方法 SD大鼠9只,立体定位下向右侧运动皮层内注射1 mol/L MnCl2溶液0.4 μl,分别于注药前、注药后24 h、48 h、72 h、7 d行7.0T micro-MR扫描,观察皮质脊髓束及相关神经传导束的走行。结果 MnCl2皮质内注射后分时间段进行MR扫描可以完整地显示活体大鼠皮质脊髓束从运动皮层、丘脑、大脑脚、脑桥的走行区结构,24~48 h显示最佳,部分Mn2+通过胼胝体到达对侧运动皮层功能区。结论 7.0T Mn2+增强MR能够清晰、动态地显示大鼠皮层内神经传导通路,Mn2+增强后的皮质脊髓束的解剖定位与Paxinos等大鼠解剖图谱定位一致;MEMRI能够显示两侧大脑半球间的联系,对活体研究大脑功能及损伤后脑的神经可塑性有重要的作用。
英文摘要:
      Objective To investigate the effect of manganese-enhanced MRI (MEMRI) at 7.0T for tracing nerve tracts in rat brain in vivo. Methods With brain stereotactic apparatus, 0.4 μl MnCl2 with aqueous solution of 1 mol/L was injected into the right somatosensory cortex of 9 SD rats. MR scan was performed for tracing corticospinal tracts and other coherent nerve tracts pre-, and 24, 48, 72 h, 7 days post-injection with 7.0T micro-MRI system, respectively. Results Corticospinal tracts were showed in intact after Mn2+ administration from somatosensory cortex, thalamus, cerebral peduncle to pons at the time point of 24, 48, 72 h and 7 days, while the best tdisplaying was achieved at 24—48 h after Mn2+ administration. Simultaneously a small quantity of Mn2+ reached the opposite somatosensory cortex through the corpus callosum. Conclusion MEMRI for tracing rat nerve tracts can be showed clearly with 7.0T MRI. The location of manganese-enhanced corticospinal tracts in agreement with the rat brain atlas in stereotaxic is in agreement with that Paxinos’ published. MEMRI can display the relationship between the two sides of hemisphere, and may play an important role in investigating the brain function and nerve plasticity after nerve injury in vivo.
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