Department of Neurophysiology and Pathophysiology University Medical Center Hamburg-Eppendorf, 20246 Hamburg, Germany.
Brain. 2012 Mar;135(Pt 3):922-34. doi: 10.1093/brain/aws014.
Many studies have shown that the visual cortex of blind humans is activated in non-visual tasks. However, the electrophysiological signals underlying this cross-modal plasticity are largely unknown. Here, we characterize the neuronal population activity in the visual and auditory cortex of congenitally blind humans and sighted controls in a complex cognitive task. We recorded magnetoencephalographic responses from participants performing semantic categorization of meaningful sounds that followed the presentation of a semantically related or unrelated haptic object. Source analysis of the spectrally resolved magnetoencephalography data revealed that: (i) neuronal responses to sounds were stronger and longer lasting in the auditory cortex of blind subjects; (ii) auditory stimulation elicited strong oscillatory responses in the visual cortex of blind subjects that closely resembled responses to visual stimulation in sighted humans; (iii) the signal in the gamma frequency range was modulated by semantic congruency between the sounds and the preceding haptic objects; and (iv) signal power in the gamma range was correlated on a trial-by-trial basis between auditory and visual cortex in blind subjects, and the strength of this correlation was modulated by semantic congruency. Our results suggest that specifically oscillatory activity in the gamma range reflects non-visual processing in the visual cortex of blind individuals. Moreover, our results provide evidence that the deprived visual cortex is functionally integrated into a larger network that serves non-visual functions.
许多研究表明,盲人的视觉皮层在非视觉任务中被激活。然而,这种跨模态可塑性的电生理信号在很大程度上是未知的。在这里,我们在一项复杂的认知任务中描述了先天性盲人的视觉和听觉皮层中的神经元群体活动以及视力正常者的情况。我们记录了参与者在触觉物体呈现后进行语义分类的有意义声音的脑磁图反应。对频谱分辨脑磁图数据的源分析显示:(i)在盲人的听觉皮层中,声音的神经元反应更强,持续时间更长;(ii)听觉刺激在盲人的视觉皮层中引起强烈的振荡反应,与视力正常者对视觉刺激的反应非常相似;(iii)在伽马频带范围内的信号被声音和之前的触觉物体之间的语义一致性所调制;(iv)在盲人的听觉和视觉皮层之间,在试验基础上,伽马范围内的信号功率是相关的,这种相关性的强度受到语义一致性的调节。我们的结果表明,特定的伽马范围的振荡活动反映了盲人视觉皮层中的非视觉处理。此外,我们的结果提供了证据,表明剥夺的视觉皮层在功能上整合到一个更大的网络中,用于非视觉功能。