Neocortical Mechanisms of Categorical Speech Perception
Neocortical Mechanisms of Categorical Speech Perception
批准号:
7787049
负责人:
Edward Chang
金额:
$13.22万
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-09-25 至 2010-08-31
关键词:
AcousticsAdvanced DevelopmentAffectAphasiaAreaAuditoryAuditory areaAutistic DisorderBasic ScienceBehavioralBrainCategoriesCodeComplementComplexComprehensionDevelopmentDiscriminationDyslexiaElectrocorticogramElectrodesElectroencephalographyElementsFunctional Magnetic Resonance ImagingGoalsHandHumanInvestigationJointsLanguageLanguage DelaysLanguage DisordersLightLinguisticsMentorsMethodsMotorMotor CortexNeocortexNeurosurgical ProceduresNoisePatientsPerceptionPhasePhoneticsProceduresProcessProductionRehabilitation therapyResearchResolutionRoleScalp structureScienceSignal TransductionSiteSorting - Cell MovementSourceSpeechSpeech PerceptionSpeech SoundSuperior temporal gyrusSurfaceTechniquesTemporal LobeTrainingbasebrain surgerycomputerized data processingdensitydirect applicationexperienceinterestmillimetermillisecondneocorticalnovel diagnosticspublic health relevancereconstructionrelating to nervous systemskillssoundspeech processing
中文摘要
描述(由申请人提供): 口语理解的基本机制尚不清楚。例如,大脑是如何从一个复杂多变的声音信号中提取出最基本的语言元素辅音和元音,或者是组成它们的独特特征的?对范畴知觉过程中语音的皮层表征的研究可能会揭示这个基本问题。当一个变量的变化,如音位对比沿着一个连续统被感知时,范畴感知就发生了,不是作为一个渐进的功能,而是作为一个离散的范畴变化(例如,从“pa”到“ba”)。先前的研究表明,上级颞叶皮层和运动皮层参与了音素的加工。然而,这些区域实际上是如何表示(即代码)音素是不确定的,主要是由于非侵入性记录技术的限制。皮层电图(ECoG),直接应用电极到大脑表面记录皮层活动,是一种很有前途的方法,因为它可以提供高的空间和时间分辨率。在这项研究中,我建议研究的分类语音处理的机制,利用直接高密度ECoG记录从人类新皮层在神经外科手术。指导K99阶段的主要重点将是阐明音素在上级颞回的涌现表征,这是分类知觉的基础。为了实现这一目标,将获得高密度ECoG、先进的信号处理和源重建方法以及直接皮层电刺激方面的培训。这些方法将在独立R 00阶段应用于研究运动皮层在言语感知中的作用-具体而言,1)确定其在音素感知和产生过程中的功能组织,2)确定其与听觉言语皮层的功能连接,3)确定其在分类言语感知中的基本和因果作用。
公共卫生相关性:本研究的目的是揭示口语理解的基本机制。理解语言在大脑中是如何编码的,对于开发语言障碍(例如失语症、阅读障碍、自闭症等)的新诊断和康复策略具有重要意义。在所有这些情况下,音素的异常感知是语言障碍的核心组成部分。
英文摘要
DESCRIPTION (provided by applicant): The basic mechanisms underlying comprehension of spoken language are unknown. For example, how does the brain extract the most fundamental linguistic elements-consonants and vowels, or the distinctive features which compose them-from a complex and highly variable acoustic signal? An investigation of the cortical representation of speech sounds during categorical perception can likely shed light on this fundamental question. Categorical perception occurs when a change in a variable such as phonemic contrast along a continuum is perceived, not as a gradual function but rather as a discrete category change (for instance, from "pa" to "ba"). Previous research has implicated the superior temporal cortex and also motor cortex in the processing of phonemes. However, how those areas actually represent (i.e. code) phonemes is undetermined, mainly due to limitations of non-invasive recording techniques. Electrocorticography (ECoG), the direct application of electrodes to the brain surface for recording cortical activity, is a promising approach since it can provide high spatial and temporal resolution. In this study, I propose to examine the mechanisms of categorical speech processing by utilizing direct high-density ECoG recordings from the human neocortex during neurosurgical procedures. The principal focus of the mentored K99 phase will be to elucidate the emergent representation of phonemes in the superior temporal gyrus that underlies categorical perception. Training in high-density ECoG, advanced signal processing and source reconstruction methods, and direct electrocortical stimulation will be acquired to achieve this aim. These approaches will then be applied during the independent R00 phase to investigate the role of the motor cortex in speech perception- specifically, 1) to determine its functional organization during phoneme perception and production, 2) to determine its functional connectivity with auditory speech cortices, and 3) to determine its essential and causal role in categorical speech perception.
PUBLIC HEALTH RELEVANCE: The aim of this research is to reveal the fundamental mechanisms that underlie comprehension of spoken language. An understanding of how speech is coded in the brain has significant implications for the development of new diagnostic and rehabilitative strategies for language disorders (e.g. aphasia, dyslexia, autism, et alia). Abnormal perception of phonemes is a central component to language disability in all of these conditions.
期刊论文(1)
专著(0)
科研奖励(0)
会议论文
DOI:
10.3171/2010.6.jns091246
发表时间:
2011-03
期刊:
Journal of neurosurgery
影响因子:
4.1
作者:
[Chang EF, Clark A, Smith JS, Polley MY, Chang SM, Barbaro NM, Parsa AT, McDermott MW, Berger MS]
通讯作者:
Berger MS
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依托单位:
海外基金