File:Spiral-Wave-Dynamics-in-a-Mathematical-Model-of-Human-Ventricular-Tissue-with-Myocytes-and-pone.0072950.s013.ogv

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Original file(Ogg Theora video file, length 10 s, 1,200 × 902 pixels, 1.92 Mbps, file size: 2.29 MB)

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English: Spiral-wave dynamics, without (top panel) and with (bottom panel) control pulses, in the 2D Fibroblast model in the presence of a square MF composite inhomogeneity of side mm whose bottom-left corner is placed at ( mm, mm); we apply a control pulse of amplitude pA/pF for ms over a square mesh with each block of side mm, i.e., the simulation domain is divided into square blocks. (a) zero-sided coupling with pF, nS, mV and nS, (b) double-sided coupling, with the same fibroblasts parameters as in (a) with and , and (c) double-sided coupling with the same fibroblasts parameters as in (a) with and . The animations in (d), (e), and (f) are the analogs of (a), (b), and (c), respectively, with control pulses. Here the spatiotemporal evolution of the myocyte transmembrane potential is shown for ; we use 10 frames per second (fps); in real time each frame is separated from the succeeding frame by 8 ms.
Date
Source Video S12 from Nayak A, Shajahan T, Panfilov A, Pandit R (2013). "Spiral-Wave Dynamics in a Mathematical Model of Human Ventricular Tissue with Myocytes and Fibroblasts". PLOS ONE. DOI:10.1371/journal.pone.0072950. PMID 24023798. PMC: 3762734.
Author Nayak A, Shajahan T, Panfilov A, Pandit R
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Date/TimeThumbnailDimensionsUserComment
current02:24, 14 September 201310 s, 1,200 × 902 (2.29 MB)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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VP9 720P 976 kbps Completed 07:55, 20 October 2018 13 s
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VP9 480P 495 kbps Completed 07:55, 20 October 2018 8.0 s
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VP9 360P 294 kbps Completed 07:55, 20 October 2018 6.0 s
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VP9 240P 181 kbps Completed 07:55, 20 October 2018 6.0 s
Streaming 240p (VP9) 181 kbps Completed 16:09, 16 December 2023 0.0 s
WebM 360P 511 kbps Completed 02:24, 14 September 2013 7.0 s
Streaming 144p (MJPEG) 801 kbps Completed 22:12, 18 November 2023 2.0 s

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