Bilgen Mehmet, Dancause Numa, Al-Hafez Baraa, He Yong-Yue, Malone Thomas M
Hoglund Brain Imaging Center, The University of Kansas Medical Center, Kansas City, KS 66160, USA.
Magn Reson Imaging. 2005 Sep;23(7):829-32. doi: 10.1016/j.mri.2005.06.004. Epub 2005 Aug 29.
The potential of the manganese-enhanced MRI (MEI) technique in labeling the intact neuronal circuitry of rat spinal cord was examined. Experiments were conducted on normal and injured cords at 9.4-T magnetic field strength using an implantable rf coil. The contrast agent manganese (Mn) was locally delivered within the parenchyma at a dose of 25 mmol/L in 10 nL. The transport, uptake and accumulation of Mn in tissue were then followed remotely on T1-weighted images that were acquired serially from the cord. In MEIs of normal cord, Mn was observed to be transported in directions both rostral and caudal to the site of injection. In the cord that was subjected to hemisection, signal enhancement was on the contralesional side of the cord, but not at the ipsilesional side. The sensitivity and specificity of the MEI technique in labeling the neurons that are functional were also validated with a traditional track-tracing method using biotinylated dextran amine.
研究了锰增强磁共振成像(MEI)技术标记大鼠脊髓完整神经回路的潜力。使用植入式射频线圈,在9.4-T磁场强度下对正常和损伤的脊髓进行实验。造影剂锰(Mn)以25 mmol/L的剂量在10 nL体积内局部注入实质组织。然后通过从脊髓连续采集的T1加权图像远程跟踪Mn在组织中的运输、摄取和积累情况。在正常脊髓的MEI图像中,观察到Mn向注射部位的头侧和尾侧方向运输。在进行了半横切的脊髓中,信号增强出现在脊髓的对侧,而非同侧。MEI技术标记功能性神经元的敏感性和特异性也通过使用生物素化葡聚糖胺的传统示踪方法得到了验证。