File:Dynamic-Excitatory-and-Inhibitory-Gain-Modulation-Can-Produce-Flexible-Robust-and-Optimal-Decision-pcbi.1003099.s007.ogv

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Dynamic-Excitatory-and-Inhibitory-Gain-Modulation-Can-Produce-Flexible-Robust-and-Optimal-Decision-pcbi.1003099.s007.ogv(Ogg Theora video file, length 5.0 s, 560 × 420 pixels, 176 kbps, file size: 108 KB)

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English: Larger dynamic ranges allow robust decision-making for co-modulation of excitatory and inhibitory gains. Stability diagrams are shown as a function of excitatory gain for different inhibitory gains . Black dashed lines show parameters that fit the behavioral and neural experimental data, namely . For each stability diagram as a function of , dark shades show stable branches, while light shades show unstable ones. As the inhibitory gain is reduced, the dynamic range of the network decreases. Furthermore, our fitted parameters are not sensitive to small perturbations. If we increase or decrease or slightly, our model adequately performs its decision-making computations. However, if we had chosen a much smaller value of as our parameter, small perturbations in parameter values would have rendered the network incapable of performing its decision-making computations. On the other hand, we may increase , which would lead to the network performing its decision-making computations with a larger dynamic range. However, the unstable branch would then have a very large firing rate ( Hz) and not fit the neural experimental data.
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Source Movie S2 from Niyogi R, Wong-Lin K (2013). "Dynamic Excitatory and Inhibitory Gain Modulation Can Produce Flexible, Robust and Optimal Decision-making". PLOS Computational Biology. DOI:10.1371/journal.pcbi.1003099. PMC: 3694816.
Author Niyogi R, Wong-Lin K
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Date/TimeThumbnailDimensionsUserComment
current04:45, 5 July 20135.0 s, 560 × 420 (108 KB)Open Access Media Importer Bot (talk | contribs)Automatically uploaded media file from Open Access source. Please report problems or suggestions here.

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Format Bitrate Download Status Encode time
VP9 360P 64 kbps Completed 01:29, 25 August 2018 1.0 s
Streaming 360p (VP9) 65 kbps Completed 06:59, 7 February 2024 1.0 s
VP9 240P 35 kbps Completed 01:29, 25 August 2018 1.0 s
Streaming 240p (VP9) 35 kbps Completed 08:18, 17 December 2023 1.0 s
WebM 360P 158 kbps Completed 04:46, 5 July 2013 2.0 s
Streaming 144p (MJPEG) 56 kbps Completed 06:54, 9 November 2023 1.0 s

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