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双侧听力延迟恢复后青少年的皮质失衡。

Cortical imbalance following delayed restoration of bilateral hearing in deaf adolescents.

机构信息

Archie's Cochlear Implant Laboratory, The Hospital for Sick Children, Toronto, Ontario, Canada.

Neurosciences and Mental Health, SickKids Research Institute, Toronto, Ontario, Canada.

出版信息

Hum Brain Mapp. 2022 Aug 15;43(12):3662-3679. doi: 10.1002/hbm.25875. Epub 2022 Apr 15.

DOI:10.1002/hbm.25875
PMID:35429083
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9294307/
Abstract

Unilateral auditory deprivation in early childhood can lead to cortical strengthening of inputs from the stimulated side, yet the impact of this on bilateral processing when inputs are later restored beyond an early sensitive period is unknown. To address this, we conducted a longitudinal study with 13 bilaterally profoundly deaf adolescents who received unilateral access to sound via a cochlear implant (CI) in their right ear in early childhood before receiving bilateral access to sound a decade later via a second CI in their left ear. Auditory-evoked cortical responses to unilateral and bilateral stimulation were measured repeatedly using electroencephalogram from 1 week to 14 months after activation of their second CI. Early cortical responses from the newly implanted ear and bilateral stimulation were atypically lateralized to the left ipsilateral auditory cortex. Duration of unilateral deafness predicted an unexpectedly stronger representation of inputs from the newly implanted, compared to the first implanted ear, in left auditory cortex. Significant initial reductions in responses were observed, yet a left-hemisphere bias and unequal weighting of inputs favoring the long-term deaf ear did not converge to a balanced state observed in the binaurally developed system. Bilateral response enhancement was significantly reduced in left auditory cortex suggesting deficits in ipsilateral response inhibition of new, dominant, inputs during bilateral processing. These findings paradoxically demonstrate the adaptive capacity of the adolescent auditory system beyond an early sensitive period for bilateral input, as well as restrictions on its potential to fully reverse cortical imbalances driven by long-term unilateral deafness.

摘要

儿童早期单侧听觉剥夺会导致来自受刺激侧的输入在皮质上增强,但当输入在早期敏感时期之后恢复时,这种情况对双侧处理的影响尚不清楚。为了解决这个问题,我们进行了一项纵向研究,该研究纳入了 13 名双侧极重度聋的青少年。这些青少年在幼年时,通过右耳的人工耳蜗(CI)获得单侧听力,十年后通过左耳的第二个 CI 恢复双侧听力。在激活第二个 CI 后的 1 周到 14 个月,我们使用脑电图重复测量了单侧和双侧刺激时的听觉诱发电皮质反应。来自新植入耳朵的早期皮质反应和双侧刺激异常偏向左侧同侧听觉皮层。单侧聋的持续时间预测了左侧听觉皮层中来自新植入耳的输入的异常强的表示,与第一个植入耳相比。尽管观察到初始反应明显降低,但左侧半球的偏向和对长期失聪耳输入的加权不均并没有收敛到双侧发育系统中观察到的平衡状态。左听觉皮层的双侧反应增强显著降低,表明在双侧处理过程中,新的、优势的输入的同侧反应抑制存在缺陷。这些发现出人意料地证明了青少年听觉系统在双侧输入的早期敏感时期之后具有适应性,但其潜力受到长期单侧耳聋驱动的皮质失衡的限制。

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本文引用的文献

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Consistent and chronic cochlear implant use partially reverses cortical effects of single sided deafness in children.持续且慢性的人工耳蜗使用部分逆转了儿童单侧耳聋的皮质效应。
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Pre-operative Brain Imaging Using Functional Near-Infrared Spectroscopy Helps Predict Cochlear Implant Outcome in Deaf Adults.术前功能近红外光谱脑成像有助于预测聋人成年人工耳蜗植入效果。
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The age of adolescence.青春期。
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