首页> 美国卫生研究院文献>JARO: Journal of the Association for Research in Otolaryngology >Altered Cortical Activity in Prelingually Deafened Cochlear Implant Users Following Long Periods of Auditory Deprivation
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Altered Cortical Activity in Prelingually Deafened Cochlear Implant Users Following Long Periods of Auditory Deprivation

机译:长时间听觉剥夺后耳聋的人工耳蜗植入者的皮质活动发生改变

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摘要

Auditory stimulation during childhood is critical for the development of the auditory cortex in humans and with that for hearing in adulthood. Age-related changes in morphology and peak latencies of the cortical auditory evoked potential (CAEP) have led to the use of this cortical response as a biomarker of auditory cortical maturation including studies of cortical development after deafness and subsequent cochlear implantation. To date, it is unknown whether prelingually deaf adults, with early onset deafness (before the age of 2 years) and who received a cochlear implant (CI) only during adulthood, would display absent or aberrant CAEP waveforms as predicted from CAEP studies in late implanted prelingually deaf children. In the current study, CAEP waveforms were recorded in response to electric stimuli in prelingually deaf adults, who received their CI after the age of 21 years. Waveform morphology and peak latencies were compared to the CAEP responses obtained in postlingually deaf adults, who became deaf after the age of 16. Unexpectedly, typical CAEP waveforms with adult-like P1-N1-P2 morphology could be recorded in the prelingually deaf adult CI users. On visual inspection, waveform morphology was comparable to the CAEP waveforms recorded in the postlingually deaf CI users. Interestingly, however, latencies of the N1 peak were significantly shorter and amplitudes were significantly larger in the prelingual group than in the postlingual group. The presence of the CAEP together with an early and large N1 peak might represent activation of the more innate and less complex components of the auditory cortex of the prelingually deaf CI user, whereas the CAEP in postlingually deaf CI users might reflect activation of the mature neural network still present in these patients. The CAEPs may therefore be helpful in the assessment of developmental state of the auditory cortex.
机译:儿童时期的听觉刺激对于人类听觉皮层的发育以及成年后的听力至关重要。年龄相关的皮质听觉诱发电位(CAEP)形态和峰值潜伏期变化已导致使用这种皮质反应作为听觉皮质成熟的生物标志物,包括研究耳聋和随后的人工耳蜗植入后皮质的发育。迄今为止,尚不清楚舌前聋的成年人,早发性耳聋(在2岁之前)并且仅在成年期间接受耳蜗植入(CI)的患者是否会显示出CAEP研究在后期发现的异常或异常CAEP波形。植入耳聋儿童。在当前的研究中,CAEP波形被记录为对21岁后接受CI的舌前聋成年人的电刺激反应。将波形形态和峰值潜伏期与在16岁后聋的舌后聋成年人中获得的CAEP响应进行了比较。出乎意料的是,在舌前聋的成年人CI中可以记录具有成人样P1-N1-P2形态的典型CAEP波形用户。在目视检查中,波形形态与舌后聋CI用户记录的CAEP波形相当。但是,有趣的是,与舌后组相比,舌前组的N1峰潜伏期明显短,幅度大得多。 CAEP的出现以及早期和较大的N1峰可能表示舌前聋CI用户的听觉皮层的先天性和复杂性较低,而舌后CI用户的CAEP可能反映了成熟神经元的激活。这些患者中仍然存在网络。因此,CAEP可能有助于评估听觉皮层的发育状态。

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