首页> 美国卫生研究院文献>other >Morphological Correlates of Hearing Loss after Cochlear Implantation and Electro-Acoustic Stimulation in a Hearing-Impaired Guinea Pig Model
【2h】

Morphological Correlates of Hearing Loss after Cochlear Implantation and Electro-Acoustic Stimulation in a Hearing-Impaired Guinea Pig Model

机译:听力受损的豚鼠模型中耳蜗植入和电声刺激后听力丧失的形态学相关性

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

Hybrid or electro-acoustic stimulation (EAS) cochlear implants (CIs) are designed to provide high-frequency electric hearing together with residual low-frequency acoustic hearing. However, 30-50% of EAS CI recipients lose residual hearing after implantation. The objective of this study was to determine the mechanisms of EAS-induced hearing loss in an animal model with high-frequency hearing loss.Guinea pigs were exposed to 24 hours of noise (12-24 kHz at 116 dB) to induce a high-frequency hearing loss. After recovery, two groups of animals were implanted (n=6 per group), with one group receiving chronic acoustic and electric stimulation for 10 weeks, and the other group receiving no stimulation during this time frame. A third group (n=6) was not implanted, but received chronic acoustic stimulation. Auditory brainstem responses were recorded biweekly to monitor changes in hearing. The organ of Corti was immunolabeled with phalloidin, anti-CtBP2, and anti-GluR2 to quantify hair cells, ribbons and post-synaptic receptors. The lateral wall was immunolabeled with phalloidin and lectin to quantify stria vascularis capillary diameters. Bimodal or trimodal diameter distributions were observed; the number and location of peaks were objectively determined using the Aikake Information Criterion and Expectation Maximization algorithm.Noise exposure led to immediate hearing loss at 16-32 kHz for all groups. Cochlear implantation led to additional hearing loss at 4-8 kHz; this hearing loss was negatively and positively correlated with minimum and maximum peaks of the bimodal or trimodal distributions of stria vascularis capillary diameters, respectively. After chronic stimulation, no significant group changes in thresholds were seen; however, elevated thresholds at 1 kHz in implanted, stimulated animals were significantly correlated with decreased presynaptic ribbon and postsynaptic receptor counts. Inner and outer hair cell counts did not differ between groups and were not correlated with threshold shifts at any frequency.As in the previous study in a normal-hearing model, stria vascularis capillary changes were associated with immediate hearing loss after implantation, while little to no hair cell loss was observed even in cochlear regions with threshold shifts as large as 40-50 dB. These findings again support a role of lateral wall blood flow changes, rather than hair cell loss, in hearing loss after surgical trauma, and implicate the endocochlear potential as a factor in implantation-induced hearing loss. Further, the analysis of the hair cell ribbons and post-synaptic receptors suggest that delayed hearing loss may be linked to synapse or peripheral nerve loss due to stimulation excitotoxicity or inflammation. Further research is needed to separate these potential mechanisms of delayed hearing loss.
机译:混合或电声刺激(EAS)人工耳蜗(CIs)设计用于提供高频电听和残余低频听觉。但是,有30-50%的EAS CI接受者在植入后会失去残余的听力。这项研究的目的是确定具有高频率听力损失的动物模型中EAS引起的听力损失的机制。几内亚猪暴露于24小时的噪音(116dB时为12-24 kHz),导致高频率听力损失。恢复后,植入两组动物(每组n = 6),一组接受慢性声和电刺激10周,另一组在此时间段内不接受刺激。第三组(n = 6)未植入,但接受了慢性声刺激。每两周记录一次听觉脑干反应,以监测听力变化。用鬼笔环肽,抗CtBP2和抗GluR2免疫标记Corti器官,以定量毛细胞,色带和突触后受体。用鬼笔环肽和凝集素对侧壁进行免疫标记,以量化血管纹的毛细血管直径。观察到双峰或三峰直径分布。使用Aikake信息准则和期望最大化算法客观地确定峰值的数量和位置。所有组的噪声暴露导致16-32 kHz的立即听力损失。人工耳蜗会导致4-8 kHz的额外听力损失。这种听力损失分别与脉状血管毛细血管直径的双峰或三峰分布的最小和最大峰值呈负相关和正相关。慢性刺激后,未发现阈值发生显着的群体变化。然而,植入的,受刺激的动物在1 kHz时阈值升高与突触前色带和突触后受体数量减少显着相关。两组之间的内,外毛细胞计数无差异,且与任何频率下的阈值变化均不相关。与先前在正常听觉模型中的研究一样,血管纹状体毛细血管的变化与植入后即刻听力下降有关,而几乎没有。即使在阈值变化高达40-50 dB的耳蜗区域也未观察到毛细胞丢失。这些发现再次支持了在外科手术创伤后,侧壁血流的改变而不是毛细胞的丧失在听力损失中的作用,并且暗示着耳蜗内电位是植入引起的听力损失的一个因素。此外,对毛细胞带和突触后受体的分析表明,由于刺激兴奋性中毒或炎症,延迟的听力丧失可能与突触或周围神经丧失有关。需要进一步的研究以分离这些延迟性听力损失的潜在机制。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号