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首页> 外文期刊>Frontiers in Human Neuroscience >Visually Evoked Visual-Auditory Changes Associated with Auditory Performance in Children with Cochlear Implants
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Visually Evoked Visual-Auditory Changes Associated with Auditory Performance in Children with Cochlear Implants

机译:人工耳蜗植入儿童的视觉诱发听觉改变与听觉表现

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Activation of the auditory cortex by visual stimuli has been reported in deaf children. In cochlear implant (CI) patients, a residual, more intense cortical activation in the frontotemporal areas in response to photo stimuli was found to be positively associated with poor auditory performance. Our study aimed to investigate the mechanism by which visual processing in CI users activates the auditory-associated cortex during the period after cochlear implantation as well as its relation to CI outcomes. Twenty prelingually deaf children with CI were recruited. Ten children were good CI performers (GCP) and ten were poor (PCP). Ten age- and sex- matched normal-hearing children were recruited as controls, and visual evoked potentials (VEPs) were recorded. The characteristics of the right frontotemporal N1 component were analyzed. In the prelingually deaf children, higher N1 amplitude was observed compared to normal controls. While the GCP group showed significant decreases in N1 amplitude, and source analysis showed the most significant decrease in brain activity was observed in the primary visual cortex (PVC), with a downward trend in the primary auditory cortex (PAC) activity, but these did not occur in the PCP group. Meanwhile, higher PVC activation (comparing to controls) before CI use (0M) and a significant decrease in source energy after CI use were found to be related to good CI outcomes. In the GCP group, source energy decreased in the visual-auditory cortex with CI use. However, no significant cerebral hemispheric dominance was found. We supposed that intra- or cross-modal reorganization and higher PVC activation in prelingually deaf children may reflect a stronger potential ability of cortical plasticity. Brain activity evolution appears to be related to CI auditory outcomes.
机译:据报道,聋哑儿童通过视觉刺激激活听觉皮层。在人工耳蜗(CI)患者中,发现额叶颞叶区域响应光刺激而残留的,更强烈的皮质激活与听觉不良表现成正相关。我们的研究旨在调查CI用户视觉处理在人工耳蜗植入后激活听觉相关皮层的机制及其与CI结果的关系。招募了二十名患有CI的聋哑儿童。十个孩子的CI表现良好(GCP),十个孩子的贫穷(PCP)。招募了十名年龄和性别相匹配的正常听力儿童作为对照,并记录了视觉诱发电位(VEP)。分析了右额颞N1成分的特征。与正常对照组相比,在聋前儿童中观察到更高的N1振幅。尽管GCP组的N1振幅显着下降,并且来源分析显示,在初级视觉皮层(PVC)中观察到的大脑活动最明显,而初级听觉皮层(PAC)活动呈下降趋势,但是在PCP组中不会发生。同时,发现CI使用前(0M)较高的PVC活化度(与对照相比)和CI使用后PVC源能量的显着降低与CI的良好结局有关。在GCP组中,使用CI后,视觉听觉皮层中的源能量减少。但是,没有发现明显的大脑半球优势。我们认为舌前失聪儿童的模内或跨模态重组和较高的PVC活化可能反映了更强的潜在皮质可塑性。脑活动的发展似乎与CI听觉结果有关。

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