Almeida Jorge, He Dongjun, Chen Quanjing, Mahon Bradford Z, Zhang Fan, Gonçalves Óscar F, Fang Fang, Bi Yanchao
Faculty of Psychology and Educational Sciences, University of Coimbra Proaction Laboratory, Faculty of Psychology and Educational Sciences, University of Coimbra
Department of Psychology, Peking University Key Laboratory of Machine Perception (Ministry of Education), Peking University.
Psychol Sci. 2015 Nov;26(11):1771-82. doi: 10.1177/0956797615598970. Epub 2015 Sep 30.
Sensory cortices of individuals who are congenitally deprived of a sense can exhibit considerable plasticity and be recruited to process information from the senses that remain intact. Here, we explored whether the auditory cortex of congenitally deaf individuals represents visual field location of a stimulus-a dimension that is represented in early visual areas. We used functional MRI to measure neural activity in auditory and visual cortices of congenitally deaf and hearing humans while they observed stimuli typically used for mapping visual field preferences in visual cortex. We found that the location of a visual stimulus can be successfully decoded from the patterns of neural activity in auditory cortex of congenitally deaf but not hearing individuals. This is particularly true for locations within the horizontal plane and within peripheral vision. These data show that the representations stored within neuroplastically changed auditory cortex can align with dimensions that are typically represented in visual cortex.
先天丧失一种感觉的个体的感觉皮层可表现出相当大的可塑性,并可被征募来处理来自仍完好无损的其他感觉的信息。在此,我们探究了先天性耳聋个体的听觉皮层是否代表刺激的视野位置——这是早期视觉区域所代表的一个维度。我们使用功能磁共振成像来测量先天性耳聋和听力正常的人类在观察通常用于绘制视觉皮层视野偏好的刺激时,其听觉和视觉皮层中的神经活动。我们发现,视觉刺激的位置可以从先天性耳聋个体而非听力正常个体的听觉皮层神经活动模式中成功解码。对于水平面内和周边视觉范围内的位置尤其如此。这些数据表明,在神经可塑性改变的听觉皮层中存储的表征可以与通常在视觉皮层中表征的维度对齐。