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本文引用的文献

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Dense inhibitory connectivity in neocortex.新皮层中的密集抑制性连接。
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In vivo two-photon imaging of sensory-evoked dendritic calcium signals in cortical neurons.在体双光子成像皮层神经元感觉诱发放大树突钙信号
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Science. 2009 Aug 7;325(5941):756-60. doi: 10.1126/science.1171958.
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The excitatory neuronal network of the C2 barrel column in mouse primary somatosensory cortex.小鼠初级体感皮层中C2桶状柱的兴奋性神经元网络。
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在体单个皮层神经元对多种感觉输入的树突编码。

Dendritic coding of multiple sensory inputs in single cortical neurons in vivo.

机构信息

Institute of Neuroscience and Institute for Advanced Study, Technical University Munich, 80802 Munich, Germany.

出版信息

Proc Natl Acad Sci U S A. 2011 Sep 13;108(37):15420-5. doi: 10.1073/pnas.1112355108. Epub 2011 Aug 29.

DOI:10.1073/pnas.1112355108
PMID:21876170
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3174623/
Abstract

Single cortical neurons in the mammalian brain receive signals arising from multiple sensory input channels. Dendritic integration of these afferent signals is critical in determining the amplitude and time course of the neurons' output signals. As of yet, little is known about the spatial and temporal organization of converging sensory inputs. Here, we combined in vivo two-photon imaging with whole-cell recordings in layer 2 neurons of the mouse vibrissal cortex as a means to analyze the spatial pattern of subthreshold dendritic calcium signals evoked by the stimulation of different whiskers. We show that the principle whisker and the surrounding whiskers can evoke dendritic calcium transients in the same neuron. Distance-dependent attenuation of dendritic calcium transients and the corresponding subthreshold depolarization suggest feed-forward activation. We found that stimulation of different whiskers produced multiple calcium hotspots on the same dendrite. Individual hotspots were activated with low probability in a stochastic manner. We show that these hotspots are generated by calcium signals arising in dendritic spines. Some spines were activated uniquely by single whiskers, but many spines were activated by multiple whiskers. These shared spines indicate the existence of presynaptic feeder neurons that integrate and transmit activity arising from multiple whiskers. Despite the dendritic overlap of whisker-specific and shared inputs, different whiskers are represented by a unique set of activation patterns within the dendritic field of each neuron.

摘要

哺乳动物大脑中的单个皮质神经元接收来自多个感觉输入通道的信号。这些传入信号在树突上的整合对于确定神经元输出信号的幅度和时间进程至关重要。迄今为止,关于汇聚感觉输入的空间和时间组织的了解甚少。在这里,我们结合了体内双光子成像和小鼠触须皮层第 2 层神经元的全细胞记录,以分析不同触须刺激引起的亚阈值树突钙信号的空间模式。我们表明,主要触须和周围的触须可以在同一神经元中引起树突钙瞬变。树突钙瞬变和相应的亚阈值去极化的距离依赖性衰减表明前馈激活。我们发现,刺激不同的触须会在同一树突上产生多个钙热点。个别热点以随机方式以低概率被激活。我们表明这些热点是由树突棘中的钙信号产生的。一些棘突仅由单个触须激活,但许多棘突由多个触须激活。这些共享的棘突表明存在前馈馈神经元,它们整合并传递来自多个触须的活动。尽管存在触须特异性和共享输入的树突重叠,但不同的触须在每个神经元的树突场中都由一组独特的激活模式表示。