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中文摘要
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描述(申请人提供):我们的研究兴趣集中在感觉皮层感觉上皮细胞的地形图及其可塑性。我们特别感兴趣的是描绘皮层激活的空间范围(例如,所有反应神经元的空间扩展)到小的(点)刺激,因为这是我们理解皮质地图的基础。功能成像方法在表征空间范围方面具有优势,因为它们能够提供快速、高空间分辨率的大皮质区域活动评估。然而,大多数功能成像方法的一个局限性是,它们依赖于脑激活后的血液动力学事件,因此仅提供了一种间接手段来评估潜在神经元诱发激活的空间范围,因此成像者缺乏使用成像来评估神经元激活扩散的手段。由于没有直接的方法来验证人类潜在神经元激活区的空间范围,成像者通常采用保守的阈值进行分析,通常强调峰值或接近峰值的激活区。然而,这种做法可能会导致对皮质功能的偏见和可能扭曲的观点,因为它可能低估了皮质激活的真实大小。为了解决这些问题,有人建议将神经元激活的扩散与相同刺激下同一皮质区域的功能成像的扩散直接联系起来。穴位刺激要么是胡须,要么是纯音,皮层激活的扩散分别通过成年大鼠的躯体感觉和听觉皮质的本征信号光学成像来成像。成像结果将直接与使用成像皮质内电极阵列的成像后神经元记录进行比较。反过来,成像和神经元结果也将叠加在相同区域的解剖图上,以突出与活动扩散相关的皮质结构-功能关系。由于功能成像方法可以同时检测阈值上(动作电位)和阈值下(局部场电位),因此将记录这两种类型神经元激活的扩散并与成像结果进行比较。一旦映射神经元扩散到成像扩散的规则被量化,它将使用这些规则实现对整个体感和听觉皮质的无偏见、直接、基于成像的描述。
英文摘要
DESCRIPTION (provided by applicant): Our research interests focus on the topographical mapping of sensory epithelia in sensory cortex and their plasticity. We are particularly interested in delineating the spatial extent of cortical activation (e.g., the spatial spread of all the responding neurons) to small (point) stimulation because it is fundamental to our understanding of cortical maps. Functional imaging methods are advantageous for characterizing the spatial extent because of their ability to provide quick, high spatial resolution assessment of activity from large cortical regions. However, one limitation of most of the functional imaging methods is that they rely on hemodynamic events that follow brain activation and therefore provide only an indirect means for assessing the spatial extent of the underlying neuronal evoked activation and thus imagers lack the means to assess the spread of neuronal activation using imaging. Because there is no direct way to verify the spatial extent of the underlying neuronal activation area in humans, imagers typically apply conservative thresholds for analysis that typically emphasize peak, or near peak activation areas. Such practice, however, may lead to a biased and possibly distorted view of cortical function because it may underestimate the real size of cortical activation. To address these issues, it is proposed to directly relate the spread of neuronal activation to the spread imaged by functional imaging of the same cortical area with the same stimulation. The point stimulation is either a whisker or a pure tone, and the spread of cortical activation is imaged by intrinsic signal optical imaging in the adult rat somatosensory and auditory cortex, respectively. Imaging results will be directly compared to post-imaging neuronal recording using electrode arrays within the imaged cortex. Imaging and neuronal results, in turn, will also be superimposed on the anatomical maps of the same areas to highlight cortical structure-function relationship related to the spread of activity. Because functional imaging methods can detect both suprathreshold (action potentials) and subthreshold (local field potentials), the spread of both types of neuronal activations will be recorded and compared with imaging results. Once the rules of mapping neuronal spread to imaging spread are quantified, it will enable unbiased, direct, imaging-based description of the entire somatosensory and auditory cortices using such rules.
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The relationship between neuronal activity and stroke
  • 批准号:
    10585313
  • 项目类别:
  • 资助金额:
    $48.64万
  • 财政年份:
    2022
  • 负责人:
    RON D FROSTIG
  • 依托单位:
Neurovascular Plasticity
  • 批准号:
    8704255
  • 项目类别:
  • 资助金额:
    $39.34万
  • 财政年份:
    2010
  • 负责人:
    RON D FROSTIG
  • 依托单位:
Neurovascular Plasticity
  • 批准号:
    8301687
  • 项目类别:
  • 资助金额:
    $40.12万
  • 财政年份:
    2010
  • 负责人:
    RON D FROSTIG
  • 依托单位:
Neurovascular Plasticity
  • 批准号:
    8499440
  • 项目类别:
  • 资助金额:
    $38.54万
  • 财政年份:
    2010
  • 负责人:
    RON D FROSTIG
  • 依托单位:
海外基金