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中耳肌反射:在评估噪声性耳蜗损伤中的当前和未来作用。

The middle ear muscle reflex: Current and future role in assessing noise-induced cochlear damage.

机构信息

School of Behavioral and Brain Sciences, Department of Speech, Language and Hearing, The University of Texas at Dallas, Richardson, Texas 75080, USA.

出版信息

J Acoust Soc Am. 2023 Jan;153(1):436. doi: 10.1121/10.0016853.

Abstract

The middle ear muscle reflex (MEMR) in humans is a bilateral contraction of the middle ear stapedial muscle in response to moderate-to-high intensity acoustic stimuli. Clinically, MEMR thresholds have been used for differential diagnosis of otopathologies for decades. More recently, changes in MEMR amplitude or threshold have been proposed as an assessment for noise-induced synaptopathy, a subclinical form of cochlear damage characterized by suprathreshold hearing problems that occur as a function of inner hair cell (IHC) synaptic loss, including hearing-in-noise deficits, tinnitus, and hyperacusis. In animal models, changes in wideband MEMR immittance have been correlated with noise-induced synaptopathy; however, studies in humans have shown more varied results. The discrepancies observed across studies could reflect the heterogeneity of synaptopathy in humans more than the effects of parametric differences or relative sensitivity of the measurement. Whereas the etiology and degree of synaptopathy can be carefully controlled in animal models, synaptopathy in humans likely stems from multiple etiologies and thus can vary greatly across the population. Here, we explore the evolving research evidence of the MEMR response in relation to subclinical noise-induced cochlear damage and the MEMR as an early correlate of suprathreshold deficits.

摘要

人类中耳肌肉反射(MEMR)是指中强声刺激下中耳镫骨肌的双侧收缩。临床上,MEMR 阈已被用于耳病理学的鉴别诊断数十年。最近,MEMR 幅度或阈值的变化被提出作为噪声诱导突触病的评估,这是一种亚临床形式的耳蜗损伤,其特征是阈上听力问题,其发生是内毛细胞(IHC)突触损失的功能,包括噪声环境下的听力损失、耳鸣和听觉过敏。在动物模型中,宽带 MEMR 导纳的变化与噪声诱导的突触病有关;然而,人类的研究结果则更为多样。观察到的研究差异可能反映了人类突触病的异质性,而不是参数差异或测量的相对敏感性的影响。虽然在动物模型中可以仔细控制突触病的病因和程度,但人类的突触病可能源于多种病因,因此在人群中可能有很大差异。在这里,我们探讨了 MEMR 反应与阈上噪声诱导耳蜗损伤的关系以及 MEMR 作为阈上缺陷的早期相关物的不断发展的研究证据。

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