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Excitatory Network Oscillations in Somatosensory and Motor Areas of Neocortex

Excitatory Network Oscillations in Somatosensory and Motor Areas of Neocortex
新皮质体感和运动区域的兴奋性网络振荡
批准号:
7760612
负责人:
Manuel A Castro-Alamancos
金额:
$29.08万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2008
资助国家:
美国
项目状态:
已结题
起止时间:
2008-02-15 至 2013-01-31

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中文摘要
翻译
描述(申请人提供):新皮质被细分为解剖和功能专门化区域。但人们对不同新皮质区域之间神经活动的专门化知之甚少。在特定的正常和异常行为状态下,大脑皮层的神经活动通常会变得同步和振荡。我们最近的工作表明,运动皮质包含一个独特的兴奋网络,在各种条件下,该网络在7-14赫兹的阿尔法频率范围内产生同步振荡活动(~10赫兹振荡)。此外,这一网络在邻近的躯体感觉皮层中进一步受到抑制,除非特定的外向电流被阻断,否则它不会产生这些振荡。本研究项目的目的是揭示负责新大脑皮层α共振的底物,并表征其在行为中的功能作用。有三个具体的目的:1)表征K+通道阻滞剂在体感皮质中未被屏蔽的~10 Hz振荡;2)确定在运动和体感皮质中未被屏蔽的产生~10 Hz振荡的机制;3)表征行为动物的运动和体感皮质中的节律性活动。我们将采用多种方法,使用体外切片和在体内表现动物。拟议中的实验将揭示运动和躯体感觉皮质的突触、细胞和网络组织的许多方面。这些信息将与理解导致震颤、皮质肌阵挛和杰克逊型癫痫的异常神经活动背后的神经基础相关。公共卫生RELEVACE这些研究旨在破译导致震颤、肌阵挛和杰克逊型癫痫的神经底物,这些都是许多神经疾病的常见症状。
英文摘要
DESCRIPTION (provided by applicant): The neocortex is subdivided into areas of anatomical and functional specialization. But little is known about the specialization of neural activities among different neocortical areas. Neural activity in neocortex often becomes synchronous and oscillatory in relation to specific normal and abnormal behavioral states. Our recent work has revealed that the motor cortex contains a unique excitatory network that during a variety of conditions generates synchronous oscillatory activity in the alpha frequency 7-14 Hz range (~10 Hz oscillations). Moreover, this network is further suppressed in the adjacent somatosensory cortex, which does not generate these oscillations unless specific outward currents are blocked. The goal of this research project is to reveal the substrate responsible for the alpha resonance of neocortex, and to characterize its functional role during behavior. There are three specific aims: 1) To characterize ~10 Hz oscillations unmasked in somatosensory cortex by K+ channel blockers; 2) To determine the mechanisms that are unmasked to generate ~10 Hz oscillations in motor and somatosensory cortex; 3) To characterize rhythmic activity in motor and somatosensory cortex in behaving animals. We will employ a variety of methods using slices in vitro and behaving animals in vivo. The proposed experiments will reveal many aspects of the synaptic, cellular and network organization of the motor and somatosensory cortices. This information will be relevant to understanding the neural substrate underlying abnormal neural activities that produce tremor, cortical myoclonus and Jacksonian- type seizures. PUBLIC HEALTH RELEVACE These studies are directed at deciphering the neural substrate responsible for tremor, myoclonus and Jacksonian-type seizures, which are common symptoms of many neurological disorders.
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