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纤维特异性改变在 X 连锁遗传性感觉神经性聋患者的白质微观结构。

Fiber-Specific Changes in White Matter Microstructure in Individuals With X-Linked Auditory Neuropathy.

机构信息

The HEARing Cooperative Research Centre (HEARing CRC), Melbourne, Victoria, Australia.

Department of Audiology and Speech Pathology, University of Melbourne, Parkville, Australia.

出版信息

Ear Hear. 2020 Nov/Dec;41(6):1703-1714. doi: 10.1097/AUD.0000000000000890.

Abstract

OBJECTIVES

Auditory neuropathy (AN) is the term used to describe a group of hearing disorders, in which the hearing impairment occurs as a result of abnormal auditory nerve function. While our understanding of this condition has advanced significantly over recent years, the ability to determine the site of lesion and the extent of dysfunction in affected individuals remains a challenge. To this end, we investigated potential axonal degeneration in the white matter tracts of the brainstem in individuals with X-linked AN. We hypothesized that individuals with X-linked AN would show focal degeneration within the VIII nerve and/or auditory brainstem tracts, and the degree of degeneration would correlate with the extent of auditory perceptual impairment.

DESIGN

This was achieved using a higher-order diffusion magnetic resonance imaging (dMRI)-based quantitative measure called apparent fiber density as obtained from a technique called single-shell 3-tissue constrained spherical deconvolution and analyzed with the fixel-based analysis framework. Eleven subjects with genetically confirmed X-linked AN and 11 controls with normal hearing were assessed using behavioral and objective auditory measures. dMRI data were also collected for each participant.

RESULTS

Fixel-based analysis of the brainstem region showed that subjects with X-linked AN had significantly lower apparent fiber density in the VIII nerve compared with controls, consistent with axonal degeneration in this region. Subsequent analysis of the auditory brainstem tracts specifically showed that degeneration was also significant in these structures overall. The apparent fiber density findings were supported by objective measures of auditory function, such as auditory brainstem responses, electrocochleography, and otoacoustic emissions, which showed VIII nerve activity was severely disrupted in X-linked AN subjects while cochlear sensory hair cell function was relatively unaffected. Moreover, apparent fiber density results were significantly correlated with temporal processing ability (gap detection task) in affected subjects, suggesting that the degree of VIII nerve degeneration may impact the ability to resolve temporal aspects of an acoustic signal. Auditory assessments of sound detection, speech perception, and the processing of binaural cues were also significantly poorer in the X-linked AN group compared with the controls with normal hearing.

CONCLUSIONS

The results of this study suggest that the dMRI-based measure of apparent fiber density may provide a useful adjunct to existing auditory assessments in the characterization of the site of lesion and extent of dysfunction in individuals with AN. Additionally, the ability to determine the degree of degeneration has the potential to guide rehabilitation strategies in the future.

摘要

目的

听觉神经病(AN)是一组听力障碍的术语,其听力损伤是由于听觉神经功能异常引起的。尽管近年来我们对这种情况的理解有了显著提高,但确定病变部位和功能障碍程度仍然是一个挑战。为此,我们研究了 X 连锁 AN 个体中脑脑干白质束中的潜在轴突变性。我们假设 X 连锁 AN 个体的 VIII 神经和/或听觉脑干束中会出现局灶性变性,变性程度与听觉感知障碍的程度相关。

设计

使用更高阶的基于扩散磁共振成像(dMRI)的定量测量方法,即通过称为单壳 3 组织约束球分解的技术获得的表观纤维密度,并使用基于固定的分析框架进行分析,来实现这一目标。对 11 名经基因证实的 X 连锁 AN 患者和 11 名听力正常的对照者进行了行为和客观听觉测量。还为每位参与者收集了 dMRI 数据。

结果

脑干区域的基于固定的分析显示,与对照组相比,X 连锁 AN 患者的 VIII 神经的表观纤维密度明显降低,这与该区域的轴突变性一致。对听觉脑干束的进一步分析表明,这些结构的变性也很显著。表观纤维密度的发现得到了客观听觉功能测量的支持,例如听觉脑干反应、电耳蜗描记术和耳声发射,这些测量结果表明,X 连锁 AN 患者的 VIII 神经活动严重受损,而耳蜗感觉毛细胞功能相对不受影响。此外,表观纤维密度结果与受影响患者的时间处理能力(间隙检测任务)显著相关,表明 VIII 神经变性的程度可能影响对声音信号时间方面的解析能力。与听力正常的对照组相比,X 连锁 AN 组在声音检测、语音感知和双耳线索处理方面的听觉评估也明显较差。

结论

本研究结果表明,基于 dMRI 的表观纤维密度测量方法可能为现有的听觉评估提供有用的补充,以确定 AN 患者的病变部位和功能障碍程度。此外,确定变性程度的能力有可能在未来指导康复策略。

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