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EEG rhythms lateralization patterns in children with unilateral hearing loss are different from the patterns of normal hearing controls during speech-in-noise listening

机译:单方面听力损失的儿童的EEG节奏横向化模式与语音噪声监听期间的正常听力控制模式不同

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Unilateral hearing loss constitutes a field of growing interest in the scientific community. In fact, this kind of patients represent a unique and physiological way to investigate how neuroplasticity overcame unilateral deafferentation by implementing particular strategies that produce apparently next- to-normal hearing behavioural performances. This explains why such patients have been underinvestigated for a long time. Thanks to the availability of techniques able to study the cerebral activity underlying the mentioned behavioural outcomes, the aim of the present research was to elucidate whether different electroencephalographic (EEG) patterns occurred in unilateral hearing loss (UHL) children in comparison to normal hearing (NH) controls during speech-in-noise listening. Given the intrinsic lateralized nature of such patients, due to the unilateral side of hearing impairment, the experimental question was to assess whether this would reflect a different EEG pattern while performing a word in noise recognition task varying the direction of the noise source. Results showed a correlation between the period of deafness and the cortical activity asymmetry toward the hearing ear side in the frontal, parietal and occipital areas in all the experimental conditions. Concerning alpha and beta activity in the frontal and central areas highlighted that in the NH group, the lateralization was always left-sided during the Quiet condition, while it was right-sided in noise conditions: this evidence was not, however, detected also in the UHL group. In addition, focusing on the theta and alpha activity in the frontal areas (Broca area) during noise conditions, while the activity was always left-lateralized in the NH group, it was ipsilateral to the direction of the background noise in the UHL group, and of a weaker extent than in NH controls. Furthermore, in noise conditions, only the UHL group showed a higher theta activity in the temporal areas ipsilateral to the side where the background noise was directed to. Finally, in the case of bilateral noise (background noise and word signal both coming from the same two sources), the theta and alpha activity in the frontal areas (Broca area) was left-lateralized in the case of the NH group and lateralized towards the side of the better hearing ear in the case of the UHL group.
机译:单方面听证会损失构成了对科学界感兴趣的领域。事实上,这种患者代表了一种独特而生理的方式来调查神经塑料如何通过实施明显的策略来克服单方面的脱缔约地,这些策略显然是普通的听力行为表演的特定策略。这解释了为什么这类患者长期以来受到了投入。由于能够研究所提及所提及所提述行为结果的脑活动的技术,目前研究的目的是阐明与正常听证(NH )在语音噪声侦听期间控制。鉴于此类患者的内在横向化性质,由于听力损害的单侧方面,实验问题是评估这是否会在噪声识别任务中执行一个单词时反映不同的EEG模式,改变噪声源的方向。结果表明,在所有实验条件下,耳聋时期与皮质活动不对称之间的相关性与耳廓和枕骨区域之间的相关性。关于常见的α和β活性的突出显示,在NH组中,横向化在安静条件下始终左侧,而在噪声条件下是右侧的:然而,此证据也没有检测到UHL组。此外,在噪声条件下专注于前部区域(Broca地区)中的θ和α活动,而活性总是在NH组中留下,它是UHL组背景噪音的方向的同侧,并且在较弱程度上比在NH对照中。此外,在噪声条件下,仅UHL组在颞弧中显示出较高的θIP,在临时的侧面上的侧面噪声被引导至。最后,在双边噪声的情况下(来自相同的两个源的背景噪声和单词信号),在NH组的情况下,前部区域(Broca区域)中的θ和α活度被留下,并朝向在UHL组的情况下更好听力耳的侧面。

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