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大鼠脑功能嗅觉连接的体内统计图谱。

Statistical mapping of functional olfactory connections of the rat brain in vivo.

作者信息

Cross Donna J, Minoshima Satoshi, Anzai Yoshimi, Flexman Jennifer A, Keogh Bartholomew P, Kim Yongmin, Maravilla Kenneth R

机构信息

Washington National Regional Primate Center, University of Washington, Seattle, WA, 98195-7330, USA.

出版信息

Neuroimage. 2004 Dec;23(4):1326-35. doi: 10.1016/j.neuroimage.2004.07.038.

Abstract

The olfactory pathway is a unique route into the brain. To better characterize this system in vivo, rat olfactory functional connections were mapped using magnetic resonance (MR) imaging and manganese ion (Mn2+) as a transport-mediated tracer combined with newly developed statistical brain image analysis. Six rats underwent imaging on a 1.5-T MR scanner at pre-administration, and 6, 12, 24, 36, 48, and 72 h and 5.5, 7.5, 10.5, and 13.5 days post-administration of manganese chloride (MnCl2) into the right nasal cavity. Images were coregistered, pixel-intensity normalized, and stereotactically transformed to the Paxinos and Watson rat brain atlas, then averaged across subjects using automated image analysis software (NEUROSTAT). Images at each time point were compared to pre-administration using a one-sample t statistic on a pixel-by-pixel basis in 3-D and converted to Z statistic maps. Statistical mapping and group averaging improved signal to noise ratios and signal detection sensitivity. Significant transport of Mn2+ was observed in olfactory structures ipsilateral to site of Mn2+ administration including the bulb, lateral olfactory tract (lo) by 12 h and in the tubercle, piriform cortex, ventral pallidum, amygdala, and in smaller structures such as the anterior commissure after 24 h post-administration. MR imaging with group-wise statistical analysis clearly demonstrated bilateral transsynaptic Mn2+ transport to secondary and tertiary neurons of the olfactory system. The method permits in vivo investigations of functional neuronal connections within the brain.

摘要

嗅觉通路是一条进入大脑的独特路径。为了在体内更好地表征这个系统,利用磁共振(MR)成像和锰离子(Mn2+)作为转运介导的示踪剂,并结合新开发的统计脑图像分析,绘制了大鼠嗅觉功能连接图。六只大鼠在右侧鼻腔注射氯化锰(MnCl2)前、注射后6、12、24、36、48和72小时以及5.5、7.5、10.5和13.5天在1.5-T MR扫描仪上进行成像。图像进行了配准、像素强度归一化,并立体定向转换到帕西诺斯和沃森大鼠脑图谱,然后使用自动图像分析软件(NEUROSTAT)在各受试者间进行平均。在三维空间中,将每个时间点的图像与注射前的图像逐像素地进行单样本t统计比较,并转换为Z统计图谱。统计映射和组平均提高了信噪比和信号检测灵敏度。在注射Mn2+部位同侧的嗅觉结构中观察到Mn2+的显著转运,包括在12小时时的嗅球、外侧嗅束(lo),以及在注射后24小时时的结节、梨状皮质、腹侧苍白球、杏仁核,以及在前连合等较小结构中。采用分组统计分析的MR成像清楚地显示了Mn2+向嗅觉系统二级和三级神经元的双侧跨突触转运。该方法允许对脑内功能性神经元连接进行体内研究。

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