The temporal resolution of binaural integration in the lateral superior olive and its implications for the electrical restoration of spatial hearing
The temporal resolution of binaural integration in the lateral superior olive and its implications for the electrical restoration of spatial hearing
批准号:
279586062
负责人:
Privatdozent Dr. Michael Pecka
金额:
$0.0万
依托单位国家:
德国
项目类别:
Priority Programmes
财政年份:
2015
资助国家:
德国
项目状态:
已结题
起止时间:
2014-12-31 至 2019-12-31
中文摘要
突触输入的精确时间整合代表了神经元回路中感觉处理的基本原则之一。特别是,在听觉系统中,脑干中的神经元仅在微秒的范围内检测兴奋性和抑制性输入之间的到达时间差异,以便准确定位声源。这种能力对于人类交流(例如,在嘈杂的环境中参加对话,如聚会)以及导航(例如,穿过繁忙的道路)都是必不可少的。虽然我们在日常生活中经常执行这些任务,但潜在的神经元机制,特别是这种双耳整合的时间限制和抑制性输入的作用,仍然没有完全了解。然而,无论是为了基本理解快速神经元整合机制,还是从临床角度来看,全面了解听觉加工的这些方面都是非常必要的,因为声音定位的恢复仍然是人工耳蜗术的主要障碍之一。利用我们在哺乳动物听觉脑干生理学及其系统发育方面的丰富专业知识,我们的目标是研究抑制在神经元声音定位处理中的作用,特别是抑制的时间精度界限。利用一种概念新颖的方法,我们将在蒙古沙土鼠体内进行电生理记录,以表征双耳整合神经元及其单耳输入核团中突触输入的功能分辨。与声学(即自然主义)刺激并行不悖的是,我们将利用耳蜗电刺激获得补充数据集。这不仅使我们能够评估涉及突触抑制的双耳整合的时间分辨率,而且还可以确定电刺激过程中快速信息处理的基本原理,这最终将有助于CI使用者声音局部化的生理学恢复。
英文摘要
The precise temporal integration of synaptic inputs represents one of the fundamental principles of sensory processing in neuronal circuits. Particularly, in the auditory system, neurons in the brainstem detect differences in the arrival time between excitatory and inhibitory inputs on the scale of only microseconds to allow for the accurate localization of a sound source. This ability is essential both for human communication (e.g. attending to a conversation in a noisy environment such as a party) as well as navigation (e.g. crossing a busy road). Whereas we routinely perform these tasks in everyday life, the underlying neuronal mechanisms, particularly the temporal limits of this binaural integration and the role of inhibitory inputs, are still not fully understood. Yet a comprehensive knowledge about these aspects of auditory processing is highly desirable , both for the basic understanding of fast neuronal integration mechanisms and from a clinical perspective, as the restoration of sound localization remains one of the central obstacles of cochlear implants (CIs). Taking advantage of our rich expertise on mammalian auditory brainstem physiology and its phylogeny, we aim to investigate the role of inhibition in neuronal sound location processing, particularly the bounds of temporal precision of inhibition. Utilizing a conceptually novel approach, we will perform in vivo electrophysiological recordings in Mongolian Gerbils (Meriones unguiculatus) to characterize the functional resolution of synaptic inputs both in binaural integration neurons as well as their monaural input nuclei. In parallel to acoustic (i.e. naturalistic) stimulation, we will obtain a complementary data set employing electrical stimulation of the cochleae. This will not only allow us to assess the temporal resolution of binaural integration involving synaptic inhibition, but also to identify basic principles of fast information processing during electrical stimulation, which ultimately will contribute towards the physiological restoration of sound localization in CI users.
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Degrees of relevance? The neuronal representation of sound sources in primary auditory cortex during active localization
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批准号:418090239
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项目类别:Research Grants
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资助金额:$0.0万
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财政年份:2019
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负责人:Privatdozent Dr. Michael Pecka
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依托单位:
Constructing auditory space: modulation of the spatial map by auditory cues and landmarks
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批准号:527393560
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项目类别:Research Grants
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资助金额:$0.0万
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财政年份:--
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负责人:Privatdozent Dr. Michael Pecka
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依托单位:
Modulation of spatial representations within the early auditory pathway by active sensing
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批准号:504753924
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项目类别:Research Grants
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资助金额:$0.0万
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财政年份:--
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负责人:Privatdozent Dr. Michael Pecka
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依托单位:
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