Department of Neurology, Hospital of the University of Munich, Ludwig-Maximilians University Munich, Germany.
Front Neurol. 2011 Sep 29;2:60. doi: 10.3389/fneur.2011.00060. eCollection 2011.
Structural brain abnormalities associated with congenital nystagmus (CN) are still unknown. In some patients with CN additional sensory, metabolic, or gross structural alterations can be detected. In the present study voxel-based morphometry was used to compare the gray matter (GM) brain volumes of 14 individuals with CN without associated sensory, metabolic, or obvious structural alterations (i.e., idiopathic CN) to those of a group of controls. Further, GM brain volumes were correlated with nystagmus severity as measured by sway path. Intergroup comparison exhibited significant volume increases in the human motion sensitive complex V5/MT+, the fusiform gyrus, and the middle occipital gyrus bilaterally in CN. These volume increases may be associated with excess visual motion stimulation due to involuntary retinal slip of the visual scene. A positive correlation (linear model) of nystagmus sway path with cerebellar GM volume was seen in the following areas: vermal parts VIII-X as well as hemisphere lobule II, hemisphere VI, crus I, crus II, and lobule VII-IX bilaterally. There is evidence that the reported GM volume changes in the vestibulo-cerebellum, which correlated with nystagmus sway path, might be related to the subjects' attempt to maintain fixation, rather than be due to the generation of nystagmus.
与先天性眼球震颤(CN)相关的结构性脑异常尚不清楚。在一些 CN 患者中,可以检测到额外的感觉、代谢或明显的结构性改变。在本研究中,我们使用基于体素的形态测量学比较了 14 名无相关感觉、代谢或明显结构改变(即特发性 CN)的 CN 患者和一组对照组的灰质(GM)脑容量。进一步,GM 脑容量与眼球震颤严重程度(通过摆动路径测量)相关。与对照组相比,CN 患者双侧的运动敏感复合体 V5/MT+、梭状回和中枕叶的 GM 体积显著增加。这些体积增加可能与视觉场景的视网膜不由自主滑动引起的过度视觉运动刺激有关。在以下区域观察到眼球震颤摆动路径与小脑 GM 体积之间的正相关(线性模型):蚓部 VIII-X 以及半球小叶 II、半球 VI、小脑脚 I、小脑脚 II 和小叶 VII-IX。有证据表明,与眼球震颤摆动路径相关的前庭小脑报告的 GM 体积变化可能与受试者试图保持注视有关,而不是眼球震颤的产生所致。