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首页> 外文期刊>BMC Neuroscience >The effect of long-term unilateral deafness on the activation pattern in the auditory cortices of French-native speakers: influence of deafness side
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The effect of long-term unilateral deafness on the activation pattern in the auditory cortices of French-native speakers: influence of deafness side

机译:长期单耳性聋对法语母语者听觉皮层激活模式的影响:聋侧的影响

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Background In normal-hearing subjects, monaural stimulation produces a normal pattern of asynchrony and asymmetry over the auditory cortices in favour of the contralateral temporal lobe. While late onset unilateral deafness has been reported to change this pattern, the exact influence of the side of deafness on central auditory plasticity still remains unclear. The present study aimed at assessing whether left-sided and right-sided deafness had differential effects on the characteristics of neurophysiological responses over auditory areas. Eighteen unilaterally deaf and 16 normal hearing right-handed subjects participated. All unilaterally deaf subjects had post-lingual deafness. Long latency auditory evoked potentials (late-AEPs) were elicited by two types of stimuli, non-speech (1 kHz tone-burst) and speech-sounds (voiceless syllable/pa/) delivered to the intact ear at 50 dB SL. The latencies and amplitudes of the early exogenous components (N100 and P150) were measured using temporal scalp electrodes. Results Subjects with left-sided deafness showed major neurophysiological changes, in the form of a more symmetrical activation pattern over auditory areas in response to non-speech sound and even a significant reversal of the activation pattern in favour of the cortex ipsilateral to the stimulation in response to speech sound. This was observed not only for AEP amplitudes but also for AEP time course. In contrast, no significant changes were reported for late-AEP responses in subjects with right-sided deafness. Conclusion The results show that cortical reorganization induced by unilateral deafness mainly occurs in subjects with left-sided deafness. This suggests that anatomical and functional plastic changes are more likely to occur in the right than in the left auditory cortex. The possible perceptual correlates of such neurophysiological changes are discussed.
机译:背景技术在正常听力的受试者中,单声道刺激会在听觉皮层上产生正常的异步和不对称模式,有利于对侧颞叶。虽然据报道晚发性单侧耳聋改变了这种模式,但耳聋侧对中枢听觉可塑性的确切影响仍不清楚。本研究旨在评估左侧和右侧耳聋是否对听觉区域的神经生理反应特征具有不同的影响。参加者有18名单侧聋和16名正常听觉右手受试者。所有单侧聋受试者均患有舌后性聋。长时听觉诱发电位(晚期AEP)是由两种类型的刺激引起的:非语音(1 kHz突发音)和语音声音(无声音节/ pa /)以50 dB SL传递到完整的耳朵。使用颞头皮电极测量早期外源成分(N100和P150)的延迟和幅度。结果左耳聋的受试者表现出主要的神经生理学变化,其形式是响应非语音声音,听觉区域上的激活模式更加对称,甚至激活模式发生了明显的逆转,从而有利于刺激的同侧皮质。对语音的反应。不仅对于AEP振幅,而且对于AEP时间过程,都可以观察到这一点。相比之下,右侧耳聋患者的AEP晚期反应未见明显变化。结论结果表明,单侧耳聋引起的皮质重组主要发生在左侧耳聋患者中。这表明在解剖和功能上的塑性变化更可能发生在右侧而不是左侧听觉皮层。讨论了这种神经生理学改变的可能的感知相关性。

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