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Developmental effects of early hearing loss on auditory information processing

Developmental effects of early hearing loss on auditory information processing
早期听力损失对听觉信息处理的发育影响
批准号:
8399007
负责人:
Daniel J Tollin
金额:
$34.64万
依托单位国家:
美国
项目类别:
财政年份:
2011
资助国家:
美国
项目状态:
已结题
起止时间:
2011-12-09 至 2016-11-30

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项目成果

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中文摘要
翻译
描述(申请人提供):双耳听力是指协调使用来自两只耳朵的信息来进行听觉感知,如声音位置。本研究的目的是确定早期发育暴露于传导性听力损失(CHL)所产生的双耳听力行为缺陷的神经基础。在生命早期经历过CHL的儿童,特别是单侧儿童,往往表现出双耳听力障碍,即使在CHL得到解决且双耳听力敏感度正常后,这种损害仍持续存在。双耳听力增强了在存在竞争声音的情况下分离和选择性地注意特定来源(如语音)的感知能力。虽然双耳听力通常会恢复,但恢复正常听力可能需要几个月甚至几年的时间。因为语言是在嘈杂的混响环境中学习的,比如教室,持续性的双耳障碍可能会导致语言和言语的缺陷。几十年来,在动物模型中对CHL的神经后果的研究已经确定了在听觉系统的几个水平上,只有最基本的单耳和双耳神经元反应特性是如何改变的。然而,人类持续的双耳行为缺陷已经不能基于这些基本的反应特性来解释。提出的实验使用了信息论的新框架来检验这一假设,即早期CHL持续改变下丘神经元携带关于声音位置的声学线索的信息的能力,并且在CHL消失后,这种能力在暴露于正常听力的情况下恢复。下丘是已知对双耳听力具有重要作用的中脑核团,临床研究表明,在经历了早期CHL的儿童中,下丘是与双耳听力持续性损害相关的神经缺陷的部位。这些实验旨在确定实验诱导的CHL影响下丘神经元反应的哪些方面,以产生信息承载能力的降低,这反映在总体反应性、可靠性和对定位线索的一般敏感性的变化上。作为将这些结果与临床数据联系起来的一种方式,我们将把下丘神经元信息承载能力的变化与非侵入性测量的听性脑干反应(ABR)的双耳相互作用成分的变化联系起来。在临床研究中,ABR的这些成分已被证明可以预测CHL引起的持续性双耳听力损害。行为测试将用于量化双耳听力障碍及其恢复情况。总体而言,本工作具有生物学意义和临床意义。从生物学的角度,我们将确定实验诱导的单侧CHL影响下丘神经元反应的哪些特定方面,从而产生信息承载能力的降低。具有临床意义的是,我们将确定下丘改变的神经信息处理是否以及如何与双耳诱发电位和声音定位行为的属性相关。
英文摘要
DESCRIPTION (provided by applicant): Binaural hearing refers to the coordinated use of information from the two ears for auditory perceptions such as sound location. The goals of this study are to determine the neural bases for the behavioral deficits in binaural hearing produced by early developmental exposure to conductive hearing loss (CHL). Children that have experienced CHL early in life, particularly unilateral, often show impairments in binaural hearing abilities that persist even after the CHL has been resolved and hearing sensitivity in both ears is normal. Binaural hearing enhances the perceptual ability to separate and selectively attend to particular sources, such as speech, in the presence of competing sounds. While binaural hearing abilities often recover, a return to normal hearing can take months or even years. Because language is learned in noisy reverberant environments, like classrooms, persistent binaural impairments may contribute to deficits in language and speech. Decades of studies of the neural consequences of CHL in animal models have determined how only the most basic of monaural and binaural neuronal response properties are altered at several levels of the auditory system. Nevertheless, the persistent binaural behavioral deficits in humans have defied explanation based on these basic response properties. The proposed experiments use the novel framework of information theory to test the hypothesis that early CHL persistently alters the capacity of neurons in the inferior colliculus to carry information about the acoustical cues to sound location and that this capacity recovers with exposure to normal hearing after resolution of the CHL. The inferior colliculus, a midbrain nucleus known to be important for binaural hearing, has been implicated by clinical studies in children that have experienced early CHL as a site for the neural deficits associated with the persistent impairments in binaural hearing. The proposed experiments are designed to determine which aspects of responses of inferior colliculus neurons are affected by experimentally- induced CHL to produce the reduced information carrying capacities, reflected by changes in overall responsiveness, reliability, and general sensitivity to the localization cues. As one way to link these results to clinical data, we will correlate changes in the information carrying capabilities of inferior colliculus neurons with changes in the binaural interaction components of the non-invasively measured auditory brainstem response (ABR). These components of the ABR have proven to be predictive of the persistent binaural hearing impairments due to CHL in clinical studies. A behavioral assay will be used to quantify deficits in binaural hearing and its recovery. Overall this work has both biological and clinical significance. From a biological perspective, we will determine which particular aspects of responses of inferior colliculus neurons are affected by experimentally-induced unilateral CHL to produce the reduced information carrying capacities. Of clinical significance, we will determine whether and how the altered neural information processing in the inferior colliculus is correlated with attributes of the binaural evoked potentials and sound localization behavior.
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Developmental effects of early hearing loss on auditory information processing
  • 批准号:
    8236290
  • 项目类别:
  • 资助金额:
    $31.11万
  • 财政年份:
    2011
  • 负责人:
    Daniel J Tollin
  • 依托单位:
Developmental effects of early hearing loss on auditory information processing
  • 批准号:
    8524923
  • 项目类别:
  • 资助金额:
    $1.29万
  • 财政年份:
    2011
  • 负责人:
    Daniel J Tollin
  • 依托单位:
Developmental effects of early hearing loss on auditory information processing
  • 批准号:
    8579803
  • 项目类别:
  • 资助金额:
    $35.38万
  • 财政年份:
    2011
  • 负责人:
    Daniel J Tollin
  • 依托单位:
Developmental Studies of Sound Localization Mechanisms
  • 批准号:
    6922096
  • 项目类别:
  • 资助金额:
    $22.09万
  • 财政年份:
    2004
  • 负责人:
    Daniel J Tollin
  • 依托单位:
海外基金