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中文摘要
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描述(由申请人提供):拟建项目的长期目标是发展对抗性呼叫作为灵长类动物皮层的模型,用于听觉系统和人类语言的研究。对偶鸣叫是一种自然的(即未经训练的)发声行为,涉及动物发出其物种特有的远距离鸣叫,以回应由被遮挡的同种动物发出的相同鸣叫。由于这种行为涉及到感知来自同种动物的声音通信信号并产生有计划的声音反应,它代表了对人类语言的模拟,可以用来研究这种听觉-声音相互作用的机制。在普通的狨猴中,对偶鸣叫包括一系列相互的对偶鸣叫,这些对偶鸣叫遵循物种特定的时间动态。早期的研究表明,这种行为可以在圈养环境中通过实验诱导和操纵,并且很容易被神经生物学研究所接受。Specific Aim 1将采用一种称为行为驱动的即时早期基因(IEG)表达的功能神经解剖学技术。这项技术已经成功地用于确定大脑的特定区域是否在行为或任务中发挥重要作用。在这里,IEG技术将被用来测试在对听呼叫过程中,感觉和运动是否由额叶皮层的不同区域介导。具体目的2是记录对偶呼叫时额叶皮层单个神经元的电生理活动。这些录音的位置将根据具体目标1的结果确定。目的是记录在这种行为中额叶皮层的感觉和运动区域,以研究额叶皮层的神经元如何参与感觉处理和通信信号的产生。摘要:尽管有许多人患有因皮质网络消融而导致的失语症,但目前还没有动物模型可以用来解剖这个问题。众所周知,额叶皮层在人类语言的感觉和运动成分中都起着重要的功能作用,因此,任何针对灵长类大脑这一区域的模型系统都将取得重大进展。在这里,我们建议使用一种自然的(即未经训练的)灵长类动物的发声行为,即对偶鸣叫,来研究额叶皮层中调节声音通信信号的感觉处理和发声产生的神经机制。该项目将使用功能性神经解剖学技术和电生理记录来检查这种自然发声行为的感觉和运动成分。
英文摘要
DESCRIPTION (provided by applicant): The long term goal of the proposed project is to develop antiphonal calling as a model of the primate cortex for studies of the auditory system and human speech. Antiphonal calling is a natural (i.e., untrained) vocal behavior that involves an animal producing their species-specific long distance call in response to hearing the same call produced by an occluded conspecific. As this behavior involves perceiving an acoustic communication signal from a conspecific and generating a planned vocal response, it represents an analog to human speech and can be used to study mechanisms underlying this auditory-vocal interaction. In common marmosets, antiphonal calling involves bouts of reciprocal antiphonal calls that adhere to a species-specific temporal dynamic. Earlier work demonstrates that this behavior can be experimentally induced and manipulated in a captive setting and is readily amenable for neurobiological inquiry. Specific Aim 1 will employ a functional neuroanatomical technique known as behavior-driven immediate early gene (IEG) expression. This technique has been used successfully to determine whether particular areas of the brain play a significant role in a behavior or task. Here the IEG technique will be used to test whether the sensory and motor are mediated by different regions of the frontal cortex during antiphonal calling. Specific Aim 2 is to record electrophysiological activity of individual neurons in the frontal cortex during antiphonal calling. The locations of these recordings will be determined based on the results of Specific Aim 1. The goal is to record from both sensory and motor areas of frontal cortex during this behavior to examine how neurons in the frontal cortex contribute to sensory processing and production of communication signals. GENERAL SUMMARY - Despite the fact that numerous individuals are afflicted with aphasic deficits that result from ablations to cortical networks, there presently is no animal model that can be used to dissect the problem. Frontal cortex is known to play a significant functional role in both the sensory and motor components of human speech and, as such, any model system that targeted this area of the primate brain stands to make significant advances. Here we propose use a natural (i.e., untrained) primate vocal behavior known as antiphonal calling to examine the neural mechanisms in the frontal cortex that mediate both the sensory processing and vocal production of an acoustic communication signal. The proposed project will use a functional neuroanatomical technique and electrophysiological recordings to examine the sensory and motor components of this natural vocal behavior.
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The Simian Collective Conference
The Simian Collective
Spatial exploration and navigation in the primate hippocampus
Spatial exploration and navigation in the primate hippocampus
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