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Inferring connection proximity in networks of electrically coupled cells by subthreshold frequency response analysis.

作者信息

Calì Corrado, Berger Thomas K, Pignatelli Michele, Carleton Alan, Markram Henry, Giugliano Michele

机构信息

Laboratory of Neural Microcircuitry, Brain Mind Institute, Ecole Polytechnique Fédérale de Lausanne (EPFL), 1015 Lausanne, Switzerland.

出版信息

J Comput Neurosci. 2008 Jun;24(3):330-45. doi: 10.1007/s10827-007-0058-2. Epub 2007 Nov 28.

DOI:10.1007/s10827-007-0058-2
PMID:18044016
Abstract

Electrical synapses continuously transfer signals bi-directionally from one cell to another, directly or indirectly via intermediate cells. Electrical synapses are common in many brain structures such as the inferior olive, the subcoeruleus nucleus and the neocortex, between neurons and between glial cells. In the cortex, interneurons have been shown to be electrically coupled and proposed to participate in large, continuous cortical syncytia, as opposed to smaller spatial domains of electrically coupled cells. However, to explore the significance of these findings it is imperative to map the electrical synaptic microcircuits, in analogy with in vitro studies on monosynaptic and disynaptic chemical coupling. Since "walking" from cell to cell over large distances with a glass pipette is challenging, microinjection of (fluorescent) dyes diffusing through gap-junctions remains so far the only method available to decipher such microcircuits even though technical limitations exist. Based on circuit theory, we derive analytical descriptions of the AC electrical coupling in networks of isopotential cells. We then suggest an operative electrophysiological protocol to distinguish between direct electrical connections and connections involving one or more intermediate cells. This method allows inferring the number of intermediate cells, generalizing the conventional coupling coefficient, which provides limited information. We validate our method through computer simulations, theoretical and numerical methods and electrophysiological paired recordings.

摘要

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Multimodal fast optical interrogation of neural circuitry.神经回路的多模态快速光学检测
Nature. 2007 Apr 5;446(7136):633-9. doi: 10.1038/nature05744.
2
Dendritic patch-clamp recording.树突膜片钳记录
Nat Protoc. 2006;1(3):1235-47. doi: 10.1038/nprot.2006.164.
3
Disynaptic inhibition between neocortical pyramidal cells mediated by Martinotti cells.由马丁诺蒂细胞介导的新皮层锥体细胞之间的双突触抑制。
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Imaging membrane potential in dendrites and axons of single neurons.对单个神经元的树突和轴突中的膜电位进行成像。
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On the dynamics of electrically-coupled neurons with inhibitory synapses.具有抑制性突触的电耦合神经元的动力学
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Spontaneous and evoked synaptic rewiring in the neonatal neocortex.新生期新皮层中自发和诱发的突触重塑
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A novel fluorescent tracer for visualizing coupled cells in neural circuits of living tissue.一种用于可视化活组织神经回路中耦合细胞的新型荧光示踪剂。
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The impact of astrocytic gap junctional coupling on potassium buffering in the hippocampus.星形胶质细胞间隙连接耦合对海马体中钾缓冲的影响。
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Correlation between axonal morphologies and synaptic input kinetics of interneurons from mouse visual cortex.小鼠视觉皮层中间神经元的轴突形态与突触输入动力学之间的相关性。
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