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双侧同时植入人工耳蜗:发育进展尚未实现正常的皮质处理。

Simultaneous bilateral cochlear implants: Developmental advances do not yet achieve normal cortical processing.

作者信息

Easwar Vijayalakshmi, Yamazaki Hiroshi, Deighton Michael, Papsin Blake, Gordon Karen

机构信息

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

Collaborative Program in Neuroscience The University of Toronto Toronto ON Canada.

出版信息

Brain Behav. 2017 Feb 28;7(4):e00638. doi: 10.1002/brb3.638. eCollection 2017 Apr.

Abstract

BACKGROUND

Simultaneous bilateral cochlear implantation promotes symmetric development of bilateral auditory pathways but binaural hearing remains abnormal. To evaluate whether bilateral cortical processing remains impaired in such children, cortical activity to unilateral and bilateral stimuli was assessed in a unique cohort of 16 children who received bilateral cochlear implants (CIs) simultaneously at 1.97 ± 0.86 years of age and had ~4 years of CI experience, providing the first opportunity to assess electrically driven cortical development in the absence of reorganized asymmetries from sequential implantation.

METHODS

Cortical activity to unilateral and bilateral stimuli was measured using multichannel electro-encephalography. Cortical processing in children with bilateral CIs was compared with click-elicited activity in 13 normal hearing children matched for time-in-sound. Source activity was localized using the Time Restricted, Artefact and Coherence source Suppression (TRACS) beamformer method.

RESULTS

Consistent with dominant crossed auditory pathways, normal P1 activity (~100 ms) was weaker to ipsilateral stimuli relative to contralateral and bilateral stimuli and both auditory cortices preferentially responded to the contralateral ear. Right hemisphere dominance was evident overall. Children with bilateral CIs maintained the expected right dominance but differences from normal included: (i) minimal changes between ipsilateral, contralateral and bilateral stimuli, (ii) weaker than normal contralateral stimulus preference, (iii) symmetric activity to bilateral stimuli, and (iv) increased occipital lobe recruitment during bilateral relative to unilateral stimulation. Between-group contrasts demonstrated lower than normal activity in the inferior parieto-occipital lobe (suggesting deficits in sensory integration) and greater than normal left frontal lobe activity (suggesting increased attention), even during passive listening.

CONCLUSIONS

Together, findings suggest that early simultaneous bilateral cochlear implantation promotes normal-like auditory symmetry but that abnormalities in cortical processing consequent to deafness and/or electrical stimulation through two independent speech processors persist.

摘要

背景

双侧同时植入人工耳蜗可促进双侧听觉通路的对称发育,但双耳听力仍不正常。为了评估此类儿童的双侧皮质处理是否仍受损,我们对一组独特的16名儿童进行了评估,这些儿童在1.97±0.86岁时同时接受了双侧人工耳蜗植入(CI),并有约4年的CI使用经验,这为评估在没有因序贯植入而重组的不对称性情况下电驱动的皮质发育提供了首个机会。

方法

使用多通道脑电图测量对单侧和双侧刺激的皮质活动。将双侧CI儿童的皮质处理与13名听力正常且在声音环境中时间匹配的儿童的点击诱发活动进行比较。使用时间限制、伪迹和相干源抑制(TRACS)波束形成器方法对源活动进行定位。

结果

与占主导地位的交叉听觉通路一致,正常的P1活动(约100毫秒)对同侧刺激的反应比对侧和双侧刺激弱,且两个听觉皮层优先对侧耳做出反应。总体上右半球优势明显。双侧CI儿童保持了预期的右半球优势,但与正常情况的差异包括:(i)同侧、对侧和双侧刺激之间变化极小;(ii)对侧刺激偏好比正常弱;(iii)对双侧刺激的对称活动;(iv)双侧刺激时枕叶募集相对于单侧刺激增加。组间对比显示,即使在被动聆听期间,下顶枕叶的活动也低于正常水平(提示感觉整合缺陷),而左额叶活动高于正常水平(提示注意力增加)。

结论

总之,研究结果表明,早期双侧同时植入人工耳蜗可促进类似正常的听觉对称性,但耳聋和/或通过两个独立言语处理器进行电刺激导致的皮质处理异常仍然存在。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/52b6/5390830/2a34bf915af9/BRB3-7-e00638-g001.jpg

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