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年龄和噪声暴露史对听神经反应幅度的影响:系统综述、研究和荟萃分析。

Effects of age and noise exposure history on auditory nerve response amplitudes: A systematic review, study, and meta-analysis.

机构信息

Department of Otolaryngology - Head and Neck Surgery, Medical University of South Carolina, 135 Rutledge Avenue, MSC 550, Charleston, SC 29425-5500, United States.

Department of Otolaryngology - Head and Neck Surgery, Medical University of South Carolina, 135 Rutledge Avenue, MSC 550, Charleston, SC 29425-5500, United States.

出版信息

Hear Res. 2024 Jun;447:109010. doi: 10.1016/j.heares.2024.109010. Epub 2024 Apr 26.

Abstract

Auditory nerve (AN) function has been hypothesized to deteriorate with age and noise exposure. Here, we perform a systematic review of published studies and find that the evidence for age-related deficits in AN function is largely consistent across the literature, but there are inconsistent findings among studies of noise exposure history. Further, evidence from animal studies suggests that the greatest deficits in AN response amplitudes are found in noise-exposed aged mice, but a test of the interaction between effects of age and noise exposure on AN function has not been conducted in humans. We report a study of our own examining differences in the response amplitude of the compound action potential N1 (CAP N1) between younger and older adults with and without a self-reported history of noise exposure in a large sample of human participants (63 younger adults 18-30 years of age, 103 older adults 50-86 years of age). CAP N1 response amplitudes were smaller in older than younger adults. Noise exposure history did not appear to predict CAP N1 response amplitudes, nor did the effect of noise exposure history interact with age. We then incorporated our results into two meta-analyses of published studies of age and noise exposure history effects on AN response amplitudes in neurotypical human samples. The meta-analyses found that age effects across studies are robust (r = -0.407), but noise exposure effects are weak (r = -0.152). We conclude that noise exposure effects may be highly variable depending on sample characteristics, study design, and statistical approach, and researchers should be cautious when interpreting results. The underlying pathology of age-related and noise-induced changes in AN function are difficult to determine in living humans, creating a need for longitudinal studies of changes in AN function across the lifespan and histological examination of the AN from temporal bones collected post-mortem.

摘要

听觉神经 (AN) 的功能被认为会随着年龄的增长和噪声暴露而恶化。在这里,我们对已发表的研究进行了系统回顾,发现关于年龄相关的 AN 功能缺陷的证据在文献中基本一致,但关于噪声暴露史的研究结果不一致。此外,动物研究的证据表明,在噪声暴露的老年小鼠中,AN 反应幅度的最大缺陷,但在人类中尚未进行年龄和噪声暴露对 AN 功能影响的交互作用的测试。我们报告了自己的一项研究,该研究在大量人类参与者中(63 名年轻参与者 18-30 岁,103 名年长参与者 50-86 岁),检查了有和没有自我报告的噪声暴露史的年轻和年长成年人之间复合动作电位 N1 (CAP N1) 的反应幅度差异。CAP N1 反应幅度在老年人中小于年轻人。噪声暴露史似乎不能预测 CAP N1 反应幅度,也不能预测噪声暴露史的影响与年龄相互作用。然后,我们将我们的结果纳入两项荟萃分析中,这两项荟萃分析研究了年龄和噪声暴露史对神经典型人类样本中 AN 反应幅度的影响。荟萃分析发现,研究之间的年龄效应是稳健的(r = -0.407),但噪声暴露效应较弱(r = -0.152)。我们得出的结论是,噪声暴露效应可能高度依赖于样本特征、研究设计和统计方法,研究人员在解释结果时应谨慎。在活体人中,很难确定与年龄相关和噪声诱导的 AN 功能变化的潜在病理学,这就需要对整个生命周期的 AN 功能变化进行纵向研究,并对死后颞骨收集的 AN 进行组织学检查。

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