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Optical Studies of Single Hippocampal Synapses

Optical Studies of Single Hippocampal Synapses
单个海马突触的光学研究
批准号:
6685198
负责人:
Karel Svoboda
金额:
$28.08万
依托单位国家:
美国
项目类别:
财政年份:
2002
资助国家:
美国
项目状态:
已结题
起止时间:
2002-12-01 至 2007-11-30

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中文摘要
翻译
描述(由申请人提供):人脑包含>10^10个神经元,由>10^ 13个突触连接成一个强大的网络,构成神经计算和认知功能的基础。人们普遍认为突触是认知及其功能障碍的重要基础。例如,经验依赖的可塑性,如记忆,可能表现在单个突触的特性上。为了支持这些认知功能,单个突触被认为是自主运作的,具有异质性。因此,揭示突触功能的基本方面需要对单个突触进行研究。然而,突触是大脑中最小的功能单位(大小约为1微米),只包含少量特定类型的信号转导分子,单个突触的功能分析仍然具有挑战性。因此,突触功能和可塑性的基本方面仍然存在争议。本应用程序的目的是利用最近开发的基于脊柱中2光子[Ca2+]成像的光学技术来探索突触功能和可塑性的基本方面。这些技术对检测啮齿动物大脑切片海马皮质突触中单个Ca2+可渗透通道和受体的开放具有敏感性。可以测量由突触激活的NMDA-Rs介导的[Ca2+]积累,从而确定突触传递过程中打开的NMDA-Rs的数量和突触中受体的数量。这一问题对突触传递中的噪声源和突触传递的动态范围具有重要意义。NMDA-R激活也可用于检测谷氨酸在细胞外空间的扩散。因此,有可能确定单个突触是独立的,还是一个突触释放的谷氨酸溢出来激活相邻突触的受体。这一问题对神经网络的记忆能力和突触可塑性的机制具有重要的意义。最后,NMDA-R激活的成像可用于开发单个突触的光学量子分析方法,从而可以直接测试单泡假说并解剖短期突触可塑性的机制。我们希望最后对单个突触的功能和可塑性有一个核心的描述。
英文摘要
DESCRIPTION (provided by applicant): The human brain contains >10^10 neurons connected by > 10^13 synapses into an awesome network that underlies neural computation and cognitive function. It is widely believed that synapses form the substrate of important aspects of cognition and its dysfunctions. For example, experience-dependent plasticity, such as memory, may express itself in the properties of individual synapses. To support these cognitive functions individual synapses are thought to function autonomously and have heterogeneous properties. Unraveling basic aspects of synaptic function therefore demands the study of individual synapses. However, synapses are the smallest functional units of the brain (size about 1 micrometer), containing only a handful of signal transduction molecules of a given type, and functional assays for single synapses have remained challenging. As a consequence, fundamental aspects of synaptic function and plasticity have remained controversial. The goal of this application is to explore fundamental aspects of synaptic function and plasticity using recently developed optical techniques based on 2-photon [Ca2+] imaging in spines. These techniques have the sensitivity to detect the opening of single Ca2+ permeable channels and receptors at hippocampal cortical synapses in rodent brain slices. The fact that [Ca2+] accumulations mediated by synaptically activated NMDA-Rs can be measured allows the determination of the number of NMDA-Rs opened during synaptic transmission and the number of receptors at synapses. This issue has important consequences for the sources of noise in synaptic transmission and the dynamic range of synaptic transmission. NMDA-R activation can also be used to detect the spread of glutamate in the extracellular space. Hence it is possible to determine if individual synapses are independent or if glutamate released at one synapse spills over to activate receptors at neighboring synapses. This issue has important consequences for the memory capacity of neural networks and the mechanisms of synaptic plasticity. Finally, imaging of NMDA-R activation can be used to develop a method of optical quantal analysis at single synapses, allowing a direct test of the univesicular hypothesis and a dissection of the mechanisms of short-term synaptic plasticity. We hope to end up with a core description of the function and plasticity of single synapses.
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Data Science Core
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  • 财政年份:
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  • 批准号:
    10546515
  • 项目类别:
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  • 财政年份:
    2022
  • 负责人:
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海外基金