Single-unit response to AM sound in the auditory cortex.
Single-unit response to AM sound in the auditory cortex.
批准号:
7495027
负责人:
MAMIKO NIWA
金额:
$2.99万
依托单位国家:
美国
项目类别:
财政年份:
2007
资助国家:
美国
项目状态:
已结题
起止时间:
2007-09-01 至 2009-09-30
关键词:
AccountingAcousticsAddressAnimalsAuditoryAuditory areaAuditory systemBehaviorBehavioralBrainCochlear ImplantsCodeComparative StudyConditionCountCuesDiscriminationEnvironmentFire - disastersFrequenciesGoalsHearingImpairmentLateralLearningLinkMacacaMeasuresNeuronsPatternPerceptionPhasePopulationProcessPropertyProsthesis DesignRateResearchResearch DesignSignal Detection AnalysisSpeechStimulusStructureTechniquesTestingVariantbasedesignhuman subjectimprovedinterestneural modelrelating to nervous systemresponsesoundvector
中文摘要
描述(由申请人提供):单个神经元活动如何与感知相关?单个神经元如何处理随时间变化的信息,以及这些信息是如何通过其时间放电模式编码的?拟议的研究旨在解决这些基本问题。听觉系统由于其独特的设计,分析声环境中的时间结构,是研究这些问题的一个例外。调幅(AM)声音提供了听觉神经元锁相的声音强度的时间变化。时间刺激结构和时间响应特性之间的这种直接关系为研究大脑中的时间代码提供了一个很好的框架。我们将记录非人类受试者主动辨别AM时初级听觉皮层(A1)和听觉皮层(ML)中外侧区的单单位反应。我们将用向量强度(VS)来表征单个神经元对AM反应的时间锁相.我们还将测量响应AM的尖峰计数。利用信号检测理论的分析技术,我们将根据VS和尖峰计数确定行为AM敏感性和神经AM敏感性。通过同时记录行为和神经活动,并将其与类似的统计指标进行比较,这项研究的设计使我们能够将神经活动与行为直接联系起来。在这里,我们的目标是解决三个具体的问题:1)是否,时间或速率代码,可以更好地解释AM的歧视能力; 2)是否积极参与AM的歧视提高了神经放电的时间精度以及AM在A1和ML的速率编码; 3)是否在A1和ML的一些神经元的活动与动物的决策密切相关。A1和ML的比较研究将有助于理解听觉皮层中时间声音特性的并行和分层处理以及这种处理如何受到行为状态的调制。此外,该研究将迈出第一步,以了解附近神经元之间活动的同步程度,这对于推导出神经敏感性如何被神经元群体解释的模型至关重要。这项研究将有助于理解语音是如何处理的,因为语音富含AM。这也将增加对时间处理的理解,时间处理与几种学习障碍有关。此外,人工耳蜗将声音的振幅和时间信息作为主要线索进行传输,了解听觉系统中时间信息的上游处理方式有助于设计这些假体,以改善受损者的听力。
英文摘要
DESCRIPTION (provided by applicant): How does single neuron activity relate to perception? How do single neurons process temporally varying information, and how is this information encoded by their temporal firing pattern? The proposed study aims to address these fundamental questions. The auditory system is exceptional to study the union of these questions because of its unique design to analyze temporal structure in the acoustic environment. Amplitude-modulated (AM) sound provides temporal variation in sound intensity to which auditory neurons phase-lock. This straightforward relationship between temporal stimulus structure and temporal response properties provides an excellent framework to investigate temporal codes in the brain. We will record single-units responses in the primary auditory cortex (A1) and the middle-lateral field of the auditory cortex (ML) of non-human subjects while they actively discriminate AM. We will characterize temporal phase- locking of single neuron responses to AM with vector strength (VS). We will also measure spike-counts in response to AM. With analytical techniques derived from signal detection theory, we will determine behavioral AM sensitivity and neural AM sensitivity based on both VS and spike-count. By simultaneously recording behavior and neural activity and comparing them with analogous statistical measures, the design of this study allows us to directly link neural activity to behavior. Here, we aim to address three specific questions; 1) whether, temporal or rate codes, can better account for AM discrimination ability; 2) whether active engagement in AM discrimination improves the temporal precision of neural firing as well as rate coding of AM in A1 and ML; 3) whether some neurons' activities in A1 and ML are closely associated with the animal's decisions. Comparative study of A1 and ML will add to the understanding of parallel and hierarchical processing of temporal sound properties in the auditory cortex and how this processing is modulated by behavioral state. In addition, the study will take the first step to understand the degree of synchrony of activity across nearby neurons, which is critical to derive models of how neural sensitivity can be accounted for by a population of neurons. This study will add to the understanding of how speech is processed, as speech is rich with AM. This will also add to the understanding of temporal processing which has been linked to several learning impairments. Additionally, cochlear implants transmit amplitude and temporal information of sound as principal cues, and the understanding of how temporal information is processed upstream in auditory system should help in the design of these prostheses to improve the hearing of the impaired.
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会议论文
Identification of factors underlying spiral ganglion neurons??? dynamic range
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批准号:8649806
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项目类别:
-
资助金额:$5.22万
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财政年份:2014
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负责人:MAMIKO NIWA
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依托单位:
Single-unit response to AM sound in the auditory cortex.
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批准号:7409405
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项目类别:
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资助金额:$2.99万
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财政年份:2007
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负责人:MAMIKO NIWA
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依托单位:
Single-unit response to AM sound in the auditory cortex.
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批准号:7676759
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项目类别:
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资助金额:$0.25万
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财政年份:2007
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负责人:MAMIKO NIWA
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依托单位:
海外基金