File:S1microcircuits Fig1.png

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    ‘Canonical neuronal microcircuit’ as proposed by Douglas and Martin (1991). Three groups of neurons interact with each other: ‘smooth’ inhibitory cells, superficial excitatory neurons (P2+3) together with L4 excitatory neurons, and deep layer 5 and 6 neurons. Neurons from each group receive thalamic input, most prominently the superficial neurons. Note the strong recurrent connectivity in this microcircuit model. Dashed and thicker lines indicate weaker or stronger synaptic drive, respectively. Red, ‘smooth’ inhibitory cells; blue, excitatory connections and cells. Modified from Douglas and Martin (1991) with permission of John Wiley and Sons, Inc.

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    Date/TimeThumbnailDimensionsUserComment
    current18:06, 9 May 2015Thumbnail for version as of 18:06, 9 May 20152,000 × 2,030 (211 KB)Michelle L. Jones (Talk | contribs)When I uploaded a new Figure 1 file recently, I received an error message saying that the thumbnail parameters were invalid. This current upload is a test to see whether decreasing the resolution a bit allows the file to fit within the thumbnail parame...
    17:45, 9 May 2015
    Error creating thumbnail: Invalid thumbnail parameters
    4,000 × 4,059 (542 KB)Michelle L. Jones (Talk | contribs)When I uploaded a new Figure 1 file recently, I received an error message saying that the thumbnail parameters were invalid. This current upload is a test to see whether decreasing the resolution a bit allows the file to fit within the thumbnail parame...
    17:28, 9 May 2015
    Error creating thumbnail: Invalid thumbnail parameters
    5,520 × 5,602 (185 KB)Michelle L. Jones (Talk | contribs)Author increased resolution.
    23:05, 17 April 2015Thumbnail for version as of 23:05, 17 April 2015378 × 384 (20 KB)Shruti Muralidhar (Talk | contribs)‘Canonical neuronal microcircuit’ as proposed by Douglas and Martin (1991). Three groups of neurons interact with each other: ‘smooth’ inhibitory cells, superficial excitatory neurons (P2+3) together with L4 excitatory neurons, and deep layer 5...

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