Bellebaum Christian, Hoffmann Klaus-Peter, Koch Benno, Schwarz Michael, Daum Irene
Institute of Cognitive Neuroscience, Department of Neuropsychology, Faculty of Psychology, Ruhr-University of Bochum, D-44780 Bochum, Germany.
Eur J Neurosci. 2006 Oct;24(8):2375-88. doi: 10.1111/j.1460-9568.2006.05114.x.
Accumulating evidence suggests that thalamic nuclei relay corollary discharge information of saccadic eye movements, enabling the visual system to update the representation of visual space. The present study aimed to explore the effect of thalamic lesions in humans on updating-related cortical processing. Event-related potentials were recorded while four patients with impairments in using corollary discharge information and 12 healthy control subjects performed a saccadic double-step task. In the experimental condition, which required the use of corollary discharge information, control subjects showed a pronounced positivity over the parietal cortex starting about 150 ms after first saccade onset, reflecting the updating process. In the patients, parietal processing related to updating was altered. Three patients showed evidence of reduced updating event-related potential effects, consistent with a unilateral deficit in using corollary discharge information. In two patients, the event-related potential topography differed significantly from the topography pattern observed in controls. Thalamic damage affects updating-related processing, presumably due to insufficient transfer of saccade-related information to parietal areas. This study thus provides further evidence for thalamic involvement in relaying corollary discharge information related to saccadic eye movements. Our data suggest that integration of corollary discharge and motor information occurs directly before the second saccade in a double-step task.
越来越多的证据表明,丘脑核团传递眼球扫视运动的伴随放电信息,使视觉系统能够更新视觉空间的表征。本研究旨在探讨人类丘脑损伤对与更新相关的皮层加工的影响。在4名使用伴随放电信息存在障碍的患者和12名健康对照者执行眼球扫视双步任务时,记录了事件相关电位。在需要使用伴随放电信息的实验条件下,对照者在首次扫视开始后约150毫秒开始,顶叶皮层出现明显的正电位,反映了更新过程。在患者中,与更新相关的顶叶加工发生了改变。3名患者显示出更新事件相关电位效应减弱的证据,这与使用伴随放电信息的单侧缺陷一致。在2名患者中,事件相关电位地形图与对照者观察到的地形图模式有显著差异。丘脑损伤会影响与更新相关的加工,可能是由于与扫视相关的信息向顶叶区域的传递不足。因此,本研究为丘脑参与传递与眼球扫视运动相关的伴随放电信息提供了进一步的证据。我们的数据表明,在双步任务中,伴随放电和运动信息的整合直接发生在第二次扫视之前。