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早期皮质视觉处理的变化预示着聋人反应能力的增强。

Changes in early cortical visual processing predict enhanced reactivity in deaf individuals.

机构信息

Department of Cognitive Sciences and Education, University of Trento, Trento, Italy.

出版信息

PLoS One. 2011;6(9):e25607. doi: 10.1371/journal.pone.0025607. Epub 2011 Sep 29.

Abstract

Individuals with profound deafness rely critically on vision to interact with their environment. Improvement of visual performance as a consequence of auditory deprivation is assumed to result from cross-modal changes occurring in late stages of visual processing. Here we measured reaction times and event-related potentials (ERPs) in profoundly deaf adults and hearing controls during a speeded visual detection task, to assess to what extent the enhanced reactivity of deaf individuals could reflect plastic changes in the early cortical processing of the stimulus. We found that deaf subjects were faster than hearing controls at detecting the visual targets, regardless of their location in the visual field (peripheral or peri-foveal). This behavioural facilitation was associated with ERP changes starting from the first detectable response in the striate cortex (C1 component) at about 80 ms after stimulus onset, and in the P1 complex (100-150 ms). In addition, we found that P1 peak amplitudes predicted the response times in deaf subjects, whereas in hearing individuals visual reactivity and ERP amplitudes correlated only at later stages of processing. These findings show that long-term auditory deprivation can profoundly alter visual processing from the earliest cortical stages. Furthermore, our results provide the first evidence of a co-variation between modified brain activity (cortical plasticity) and behavioural enhancement in this sensory-deprived population.

摘要

重度失聪个体严重依赖视觉与环境互动。听觉剥夺导致的视觉表现改善被认为是由于视觉处理后期的跨模态变化引起的。在这里,我们在一项快速视觉检测任务中测量了深度失聪成年人和听力对照组的反应时间和事件相关电位 (ERP),以评估失聪个体增强的反应能力在多大程度上反映了刺激早期皮质处理的可塑性变化。我们发现,无论视觉目标在视野中的位置(周边或周边凹)如何,失聪受试者的检测速度都快于听力对照组。这种行为促进与 ERP 变化相关,这些变化始于刺激开始后约 80 毫秒时纹状皮层(C1 成分)中的第一个可检测反应,以及 P1 复合物(100-150 毫秒)。此外,我们发现 P1 峰值幅度可以预测失聪受试者的反应时间,而在听力个体中,视觉反应性和 ERP 幅度仅在处理的后期阶段相关。这些发现表明,长期听觉剥夺会从最早的皮质阶段深刻改变视觉处理。此外,我们的结果提供了第一个证据,证明在这个感觉剥夺的人群中,大脑活动(皮质可塑性)的改变与行为增强之间存在共变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2720/3183070/f428791ce258/pone.0025607.g001.jpg

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