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跨模态功能连接支持人工耳蜗植入者的言语理解。

Cross-modal functional connectivity supports speech understanding in cochlear implant users.

机构信息

Department of Linguistics and Macquarie University Hearing, Australian Hearing Hub, Macquarie University, Sydney 2109, Australia.

Cambridge Hearing Group, Sound Lab, Department of Clinical Neurosciences, University of Cambridge, Cambridge CB2 OSZ, United Kingdom.

出版信息

Cereb Cortex. 2023 Mar 21;33(7):3350-3371. doi: 10.1093/cercor/bhac277.

Abstract

Sensory deprivation can lead to cross-modal cortical changes, whereby sensory brain regions deprived of input may be recruited to perform atypical function. Enhanced cross-modal responses to visual stimuli observed in auditory cortex of postlingually deaf cochlear implant (CI) users are hypothesized to reflect increased activation of cortical language regions, but it is unclear if this cross-modal activity is "adaptive" or "mal-adaptive" for speech understanding. To determine if increased activation of language regions is correlated with better speech understanding in CI users, we assessed task-related activation and functional connectivity of auditory and visual cortices to auditory and visual speech and non-speech stimuli in CI users (n = 14) and normal-hearing listeners (n = 17) and used functional near-infrared spectroscopy to measure hemodynamic responses. We used visually presented speech and non-speech to investigate neural processes related to linguistic content and observed that CI users show beneficial cross-modal effects. Specifically, an increase in connectivity between the left auditory and visual cortices-presumed primary sites of cortical language processing-was positively correlated with CI users' abilities to understand speech in background noise. Cross-modal activity in auditory cortex of postlingually deaf CI users may reflect adaptive activity of a distributed, multimodal speech network, recruited to enhance speech understanding.

摘要

感觉剥夺会导致跨模态皮质变化,从而使输入被剥夺的感觉大脑区域可能被招募来执行非典型功能。人们假设,在后天失聪的人工耳蜗(CI)使用者的听觉皮层中观察到的对视觉刺激的增强的跨模态反应反映了皮质语言区域的激活增加,但尚不清楚这种跨模态活动对于言语理解是“适应性的”还是“适应性不良的”。为了确定语言区域的激活增加是否与 CI 用户的言语理解能力相关,我们评估了 CI 用户(n=14)和正常听力听众(n=17)的听觉和视觉皮层对听觉和视觉言语和非言语刺激的任务相关激活和功能连接,并使用功能近红外光谱法测量了血液动力学反应。我们使用视觉呈现的言语和非言语来研究与语言内容相关的神经过程,并观察到 CI 用户表现出有益的跨模态效应。具体来说,左听觉和视觉皮层之间的连接增加——假定为皮质语言处理的主要部位——与 CI 用户在背景噪声中理解言语的能力呈正相关。后天失聪的 CI 用户听觉皮层中的跨模态活动可能反映了分布式、多模态言语网络的适应性活动,该网络被招募来增强言语理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e97/10068270/5cb99376424a/bhac277f1.jpg

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