Department of Neuroradiology, Heidelberg Medical School, University of Heidelberg, Im Neuenheimer Feld 400, 69120 Heidelberg, Germany.
Cerebellum. 2010 Sep;9(3):303-9. doi: 10.1007/s12311-010-0162-0.
Besides supratentorial abnormalities, spina bifida menigomyelocele (SBM) is typically associated with Chiari-II malformation comprising a small cerebellum, which herniates downward due to a shallow posterior fossa. We used diffusion tensor imaging to probe additional microstructural alterations of the major cerebellar white matter tracts, the cerebellar peduncles. A region-of-interest approach was employed in six SBM patients and six matched controls to compare the fractional anisotropy (FA) within the superior, middle, and inferior cerebellar peduncle (SCP, MCP, and ICP, respectively). The FA in the MCP was significantly reduced in the SBM patients (0.44 vs. 0.65, p = 0.002), while there was no significant difference in the other cerebellar peduncles. In the context of numerous supratentorial white matter abnormalities in SBM such as callosal dysplasia, the most likely explanation of reduced FA in the MCP is a reduced fiber density.
除了幕上异常,脊膜膨出伴脊髓脊膜膨出(SBM)通常与 Chiari-II 畸形相关,后者包括小脑较小,由于后颅窝较浅而向下疝出。我们使用弥散张量成像来探查主要小脑白质束——小脑脚的额外微观结构改变。我们采用感兴趣区方法比较了 6 例 SBM 患者和 6 例匹配对照者小脑上脚(SCP)、中间脚(MCP)和小脑下脚(ICP)内的各向异性分数(FA)。MCP 的 FA 在 SBM 患者中明显降低(0.44 比 0.65,p=0.002),而其他小脑脚则没有显著差异。在 SBM 中存在许多幕上白质异常,如胼胝体发育不良,MCP 中 FA 降低的最可能解释是纤维密度降低。