Ruhr-University Bochum, Department of Biopsychology, Universitätsstraße 150, 44780 Bochum, Germany.
Neuropsychologia. 2011 Dec;49(14):3908-16. doi: 10.1016/j.neuropsychologia.2011.10.008. Epub 2011 Oct 14.
Studies in patients with an isolated, congenital agenesis of the corpus callosum have documented potentials and limits of brain plasticity. Literature suggests that early reorganization mechanisms can compensate for the absence of the corpus callosum in unisensory tasks that involve interhemispheric transfer. It is unknown, however, how the congenitally acallosal brain processes multisensory information, which presumably requires interhemispheric transfer of modality-specific input. Therefore, we tested five patients with total and one patient with partial agenesis of the corpus callosum in a visuotactile interference task (the "crossmodal congruency task") with uncrossed and crossed hands and compared their performance to that of 31 healthy controls. We found that congruency effects followed the hands in space not only in healthy, but also in congenitally acallosal individuals. Remarkably, this was also true when patients' hands crossed the vertical visual meridian and stimuli were presented at the same hand. These results suggest that callosal connectivity is not required for remapping of visuotactile space. We conclude that early brain plasticity allows for compensation of the developmental absence of the corpus callosum in a visuotactile interference task.
对孤立性先天性胼胝体发育不全患者的研究记录了大脑可塑性的潜力和限制。文献表明,早期的重组机制可以补偿在涉及半球间转移的单感觉任务中胼胝体的缺失。然而,先天性无脑胼胝体的大脑如何处理多感觉信息尚不清楚,而多感觉信息可能需要特定模式输入的半球间转移。因此,我们在视触干扰任务(“跨模态一致性任务”)中测试了五名胼胝体完全发育不全和一名部分发育不全的患者,分别使用未交叉和交叉的手,并将他们的表现与 31 名健康对照进行比较。我们发现,在健康人和先天性无脑胼胝体患者中,手在空间中的一致性效应不仅遵循手的位置,而且当患者的手越过垂直的视觉子午线并且刺激出现在同一手上时也是如此。这些结果表明,大脑胼胝体的连接对于视觉触觉空间的重新映射不是必需的。我们的结论是,早期的大脑可塑性允许在视触干扰任务中补偿胼胝体发育不全的发育缺失。