Körtvélyes Judit, Bankó Eva M, Andics A, Rudas G, Németh J, Hermann Petra, Vidnyánszky Z
Faculty of Information Technology, Pázmány Péter Catholic University, Budapest, Hungary.
Acta Biol Hung. 2012;63 Suppl 1:65-79. doi: 10.1556/ABiol.63.2012.Suppl.1.7.
Amblyopia is a visual disorder caused by an anomalous early visual experience. It has been suggested that suppression of the visual input from the weaker eye might be a primary underlying mechanism of the amblyopic syndrome. However, it is still an unresolved question to what extent neural responses to the visual information coming from the amblyopic eye are suppressed during binocular viewing. To address this question we measured event-related potentials (ERP) to foveal face stimuli in amblyopic patients, both in monocular and binocular viewing conditions. The results revealed no difference in the amplitude and latency of early components of the ERP responses between the binocular and fellow eye stimulation. On the other hand, early ERP components were reduced and delayed in the case of monocular stimulation of the amblyopic eye as compared to the fellow eye stimulation or to binocular viewing. The magnitude of the amblyopic effect measured on the ERP amplitudes was comparable to that found on the fMRI responses in the fusiform face area using the same face stimuli and task conditions. Our findings showing that the amblyopic effects present on the early ERP components in the case of monocular stimulation are not manifested in the ERP responses during binocular viewing suggest that input from the amblyopic eye is completely suppressed already at the earliest stages of visual cortical processing when stimuli are viewed by both eyes.
弱视是一种由早期视觉经验异常引起的视觉障碍。有人提出,抑制较弱眼睛的视觉输入可能是弱视综合征的主要潜在机制。然而,在双眼观察期间,来自弱视眼的视觉信息的神经反应被抑制的程度仍然是一个未解决的问题。为了解决这个问题,我们在单眼和双眼观察条件下,测量了弱视患者对中央凹面部刺激的事件相关电位(ERP)。结果显示,双眼刺激和健眼刺激之间,ERP反应早期成分的幅度和潜伏期没有差异。另一方面,与健眼刺激或双眼观察相比,单眼刺激弱视眼时,ERP早期成分减少且延迟。使用相同的面部刺激和任务条件,在ERP幅度上测量的弱视效应大小与在梭状回面部区域的功能磁共振成像反应中发现的大小相当。我们的研究结果表明,单眼刺激时早期ERP成分上存在的弱视效应在双眼观察期间的ERP反应中未表现出来,这表明当双眼观察刺激时,来自弱视眼的输入在视觉皮层处理的最早阶段就已经被完全抑制。