Deafness, Cognition and Language Research Centre and Department of Experimental Psychology, UCL, London WC1H 0PD, UK.
School of Psychology, University of East Anglia, Norwich NR4 7TJ, UK.
Brain. 2022 Oct 21;145(10):3698-3710. doi: 10.1093/brain/awac205.
Crossmodal plasticity refers to the reorganization of sensory cortices in the absence of their typical main sensory input. Understanding this phenomenon provides insights into brain function and its potential for change and enhancement. Using functional MRI, we investigated how early deafness influences crossmodal plasticity and the organization of executive functions in the adult human brain. Deaf (n = 25; age: mean = 41.68, range = 19-66, SD = 14.38; 16 female, 9 male) and hearing (n = 20; age: mean = 37.50, range = 18-66, SD = 16.85; 15 female, 5 male) participants performed four visual tasks tapping into different components of executive processing: task switching, working memory, planning and inhibition. Our results show that deaf individuals specifically recruit 'auditory' regions during task switching. Neural activity in superior temporal regions, most significantly in the right hemisphere, are good predictors of behavioural performance during task switching in the group of deaf individuals, highlighting the functional relevance of the observed cortical reorganization. Our results show executive processing in typically sensory regions, suggesting that the development and ultimate role of brain regions are influenced by perceptual environmental experience.
跨模态可塑性是指在缺乏典型主要感觉输入的情况下,感觉皮层的重组。理解这一现象为大脑功能及其变化和增强的潜力提供了深入的了解。我们使用功能磁共振成像(fMRI)研究了早期失聪如何影响成年人大脑的跨模态可塑性和执行功能的组织。失聪组(n = 25;年龄:均值= 41.68,范围= 19-66,标准差= 14.38;16 名女性,9 名男性)和听力组(n = 20;年龄:均值= 37.50,范围= 18-66,标准差= 16.85;15 名女性,5 名男性)参与者完成了四个视觉任务,分别涉及执行处理的不同成分:任务转换、工作记忆、计划和抑制。我们的结果表明,失聪个体在任务转换过程中专门招募“听觉”区域。在右半球的颞上区域(尤其是)的神经活动是失聪个体在任务转换过程中行为表现的良好预测指标,突出了所观察到的皮层重组的功能相关性。我们的结果表明,执行处理发生在典型的感觉区域,这表明大脑区域的发展和最终作用受到感知环境经验的影响。