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Learning-related fine-scale specificity imaged in motor cortex circuits of behaving mice

机译:在行为小鼠的运动皮层电路中成像的与学习有关的精细尺度特异性

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摘要

Cortical neurons form specific circuits, but the functional structure of this microarchitecture and its relation to behaviour are poorly understood. Two-photon calcium imaging can monitor activity of spatially defined neuronal ensembles in the mammalian cortex. Here we applied this technique to the motor cortex of mice performing a choice behaviour. Head-fixed mice were trained to lick in response to one of two odours, and to withhold licking for the other odour. Mice routinely showed significant learning within the first behavioural session and across sessions. Microstimulation and trans-synaptic tracing identified two non-overlapping candidate tongue motor cortical areas. Inactivating either area impaired voluntary licking. Imaging in layer 2/3 showed neurons with diverse response types in both areas. Activity in approximately half of the imaged neurons distinguished trial types associated with different actions. Many neurons showed modulation coinciding with orrnpreceding the action, consistent with their involvement in motor control. Neurons with different response types were spatially intermingled. Nearby neurons (within ~150 μm) showed pronounced coincident activity. These temporal correlations increased with learning within and across behavioural sessions, specifically for neuron pairs with similar response types. We propose that correlated activity in specific ensembles of functionally related neurons is a signature of learning-related circuit plasticity. Our findings reveal a fine-scale and dynamic organization of the frontal cortex that probably underlies flexible behaviour.
机译:皮质神经元形成特定的电路,但对该微体系结构的功能结构及其与行为的关系了解甚少。双光子钙成像可以监视哺乳动物皮质中空间定义的神经元集合的活动。在这里,我们将这种技术应用于执行选择行为的小鼠的运动皮层。训练头部固定的小鼠对两种气味之一进行舔,,并抑制另一种气味的舔。小鼠通常在第一次行为环节和跨环节表现出重要的学习能力。微刺激和跨突触追踪确定了两个不重叠的候选舌运动皮层区域。禁用任何一个区域都会损害自愿舔。第2/3层中的成像显示两个区域的神经元具有不同的反应类型。大约一半成像神经元的活动区分了与不同动作相关的试验类型。许多神经元表现出与动作先后一致的调节作用,这与其参与运动控制一致。具有不同反应类型的神经元在空间上混杂在一起。附近的神经元(约150μm以内)显示出明显的同时活动。这些时间相关性随着在行为会话之内和之间的学习而增加,特别是对于具有类似响应类型的神经元对。我们建议功能相关的神经元的特定集合中的相关活动是学习相关电路可塑性的标志。我们的发现揭示了额叶皮层的精细和动态组织,这可能是柔韧性行为的基础。

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  • 来源
    《Nature》 |2010年第7292期|p.1182-1186|共5页
  • 作者单位

    Janelia Frm Research Campus, HHMI, Ashburn, Virginia 20147, USArn;

    Janelia Frm Research Campus, HHMI, Ashburn, Virginia 20147, USArn;

    Janelia Frm Research Campus, HHMI, Ashburn, Virginia 20147, USArn;

    Janelia Frm Research Campus, HHMI, Ashburn, Virginia 20147, USArn;

    Janelia Frm Research Campus, HHMI, Ashburn, Virginia 20147, USArn;

    Janelia Frm Research Campus, HHMI, Ashburn, Virginia 20147, USArnHHMI and Departments of Neurobiology and Neurosciences, University of California at San Diego, La Jolla, California 92093, USA;

    rn;

    Janelia Frm Research Campus, HHMI, Ashburn, Virginia 20147, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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