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INSPIRE: Neural and Genetic Factors Underlying Individual and Phylogenetic Variation in Communication

INSPIRE: Neural and Genetic Factors Underlying Individual and Phylogenetic Variation in Communication
INSPIRE:沟通中个体和系统发育变异背后的神经和遗传因素
批准号:
1542848
负责人:
Chet Sherwood
金额:
$99.87万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2016
资助国家:
美国
项目状态:
已结题
起止时间:
2016-01-01 至 2020-12-31

项目摘要

项目成果

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中文摘要
翻译
这个INSPIRE奖的部分资金来自社会、行为和经济科学局行为和认知科学部的感知、行动和认知计划以及生物人类学计划。人类自然地学会说和使用语言。这是我们人类的特征之一。了解这种非凡能力的生物学与神经科学、语言学、遗传学、心理学和人类学领域相关。人类的言语和语言涉及相互交织的过程,包括对信号的感知(即,声音、单词、手势、手语中的手势),学习嘴巴、舌头和喉咙的阶段性运动以产生声音元素的组合,以及对词义、语言结构的更高层次的认知方面,以及对发生交流的话语的理解。由于这些成分中的每一个都可能有不同的神经和遗传基础,关注语言的各个方面有助于剖析这种复杂的社会认知行为。对患有语言障碍的人类的研究提供了对候选基因(FOXP2和KIAA0319)和大脑结构的洞察,这些基因与语言功能的不同元素有关。然而,目前还不清楚这些语言的遗传和神经构建块在非人类动物中的存在和变化程度。这项研究项目包含了一种创新的跨学科方法,在人类现存的近亲--黑猩猩--中调查这个问题。更好地了解这些复杂的相互作用将进一步加深我们对影响人类语言障碍的神经发育基础的了解,如自闭症谱系障碍、阅读障碍和语言障碍。该项目包括多方面地研究发声学习、运动控制和声音符号学习的个体差异与大脑中的遗传变异、神经解剖结构和分子表达的关系。黑猩猩在口面部运动控制方面表现出显著的差异,这使得一些人,而不是其他人,能够灵活地学习新的发音。为了了解与发声学习能力相关的黑猩猩之间的神经生物学差异,该项目将使用几种尖端分析方法,结合详细的MRI脑图像、(来自现有组织学集合的)显微解剖结构和细胞成分的复杂测量,以及基于计算机科学的创新方法。此外,基因组分析将包括FOXP2,这是一种在建立人类语言发展所需的大脑电路方面发挥关键作用的基因。然而,在灵长类动物中,FOXP2在交流和口部运动控制中的功能基本上是未知的:这个项目将首次表征FOXP2在黑猩猩中的变异,并检查与大脑结构、基因表达和发声学习的个体差异的关联(行为测试,涉及到对黑猩猩的最小鼓励和食物奖励的强化,而不涉及任何麻醉、疼痛或痛苦)。人类语言的另一个重要方面是理解单词及其含义的能力,无论是在听觉领域还是视觉领域。在人类中,KIAA0319基因与大脑发育和阅读障碍有关,被认为在这种音符学习中发挥了关键作用。这个项目将研究KIAA0319的变异如何导致黑猩猩(安置在耶克斯国家灵长类中心和MD安德森癌症中心)在大脑组织和声音符号学习方面的差异。这项研究中使用的所有DNA样本、核磁共振扫描和脑组织都是以前获得的。这些多项技术的结合将产生独特的数据集,这将改变我们比较黑猩猩和人类与语言和脑功能相关的大脑结构和行为能力的能力。
英文摘要
This INSPIRE award is partially funded by the Perception, Action, and Cognition Program and the Biological Anthropology Program in the Division of Behavioral and Cognitive Sciences in the Directorate for Social, Behavioral, and Economic Sciences, and the Office of Integrative Activities.Humans naturally learn to speak and use language. It is one of the defining features of our species. Understanding the biology of this extraordinary capacity is relevant to the fields of neuroscience, linguistics, genetics, psychology, and anthropology. Human speech and language involve intertwined processes, including the perception of signals (i.e., sounds, words, manual gestures, signs in sign language), the learning of phased movements of the mouth, tongue, and larynx to produce combinations of sound elements, as well as the higher-level cognitive aspects of word meaning, language structure, and the understanding of the discourse in which communication occurs. As each of these components may have separate neural and genetic bases, a focus on individual aspects of language helps dissect this complex socio-cognitive behavior. Studies of humans with speech and language disorders have provided insight into candidate genes (FOXP2 and KIAA0319) and brain structures implicated in different elements of language function. However, it is not yet understood the degree to which these genetic and neural building blocks of language are present and vary in nonhuman animals. This research project encompasses an innovative and interdisciplinary approach to investigate this question among humans' closest living relatives, the chimpanzees. A better understanding of these complex interactions will further our knowledge of the neurodevelopmental foundation of disorders affecting language in humans, such as autism spectrum disorder, dyslexia, and verbal dyspraxia.The project includes a multifaceted examination of individual differences in vocal learning, motor control, and sound-symbol learning in relation to genetic variation, neuroanatomical structure, and molecular expression in the brain. Chimpanzees show marked variation in orofacial motor control that allows some individuals, but not others, to flexibly learn novel vocalizations. To understand the neurobiological differences among chimpanzees related to vocal learning ability, this project will use several cutting-edge analytic approaches, combining detailed MRI brain imagery, sophisticated measurements of microanatomical structure and cellular composition (from an existing histological collection), and innovative computer science-based methods. In addition, genomic analyses will include FOXP2, a gene that plays a critical role in establishing the brain circuitry required for the development of language in humans. However, the function of FOXP2 in communication and orofacial motor control is essentially unknown in primates: this project will be the first to characterize variation in FOXP2 across chimpanzees and examine associations with individual differences in brain structure, gene expression, and vocal learning (behavioral tests that involve minimal encouragement of the chimpanzees and reinforcement with food rewards, without involving any anesthesia, pain, or distress). Another important dimension of human language is the ability to understand words and their meaning, in both the auditory and visual domains. In humans, the gene KIAA0319, which is involved in brain development and dyslexia, is thought to play a key role in this sound-symbol learning. This project will examine how variation in KIAA0319 underlies differences in brain organization and sound-symbol learning in chimpanzees (housed at the Yerkes National Primate Center and the MD Anderson Cancer Center). All DNA samples, MRI scans, and brain tissue to be used in the study has previously been acquired. The combination of these multiple techniques will result in unique data sets that will transform our ability to compare brain structures and behavioral abilities relevant to language and brain function in chimpanzees and humans.
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Doctoral Dissertation Research: Social perception and body awareness in large-brained mammals
  • 批准号:
    2316955
  • 项目类别:
    Standard Grant
  • 资助金额:
    $1.94万
  • 财政年份:
    2023
  • 负责人:
    Chet Sherwood
  • 依托单位:
Collaborative Research: NCS: Foundations of learning: individual variation, plasticity, and evolution
  • 批准号:
    2219759
  • 项目类别:
    Standard Grant
  • 资助金额:
    $34.96万
  • 财政年份:
    2022
  • 负责人:
    Chet Sherwood
  • 依托单位:
Doctoral Dissertation Research: Impact of early social adversity on brain structure in primates
  • 批准号:
    2141867
  • 项目类别:
    Standard Grant
  • 资助金额:
    $3.23万
  • 财政年份:
    2022
  • 负责人:
    Chet Sherwood
  • 依托单位:
Collaborative Research: URoL: Epigenetics 2: Epigenetics in development and Evolution of Primate Brains
  • 批准号:
    2021785
  • 项目类别:
    Standard Grant
  • 资助金额:
    $45.88万
  • 财政年份:
    2020
  • 负责人:
    Chet Sherwood
  • 依托单位:
国内基金
海外基金
Neural Process模型的多样化高保真技术研究