File:Critical-Role-of-Gap-Junction-Coupled-KATP-Channel-Activity-for-Regulated-Insulin-Secretion-pbio.0040026.sv002.ogv
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Critical-Role-of-Gap-Junction-Coupled-KATP-Channel-Activity-for-Regulated-Insulin-Secretion-pbio.0040026.sv002.ogv (Ogg Theora video file, length 4.0 s, 360 × 360 pixels, 3.43 Mbps, file size: 1.62 MB)
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[edit]DescriptionCritical-Role-of-Gap-Junction-Coupled-KATP-Channel-Activity-for-Regulated-Insulin-Secretion-pbio.0040026.sv002.ogv |
English: This Video Shows the Same Kir6.2[AAA] Islet Shown in Video S1 , but Treated to 2 mM Glucose with 10 μM αGA (2 mM Glc + 10 uM GA) The elapsed time covers a period of 190s at 1.57 frames/s. Similar to the response found with 2 mM glucose (Video S1), some individual cells are observed to asynchronously increase in intensity. These responses are similar to those observed in WT islets at nonstimulatory glucose concentrations [11], and are consistent with an α-cell response.
(438 KB MOV). |
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Source | Video S2 from Rocheleau J, Remedi M, Granada B, Head W, Koster J, Nichols C, Piston D (2006). "Critical Role of Gap Junction Coupled KATP Channel Activity for Regulated Insulin Secretion". PLOS Biology. DOI:10.1371/journal.pbio.0040026. PMID 16402858. PMC: 1334237. | ||
Author | Rocheleau J, Remedi M, Granada B, Head W, Koster J, Nichols C, Piston D | ||
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Date/Time | Thumbnail | Dimensions | User | Comment | |
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current | 14:01, 16 November 2012 | 4.0 s, 360 × 360 (1.62 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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Short title | This Video Shows the Same Kir6.2[AAA] Islet Shown in Video S1 , but Treated to 2 mM Glucose with 10 ?M ?GA (2 mM Glc + 10 uM GA) |
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Author | Rocheleau J, Remedi M, Granada B, Head W, Koster J, Nichols C, Piston D |
Usage terms | http://creativecommons.org/licenses/by/3.0/ |
Image title | The elapsed time covers a period of 190s at 1.57 frames/s. Similar to the response found with 2 mM glucose (Video S1), some individual cells are observed to asynchronously increase in intensity. These responses are similar to those observed in WT islets at nonstimulatory glucose concentrations [11], and are consistent with an ?-cell response. (438 KB MOV). |
Software used | Xiph.Org libtheora 1.1 20090822 (Thusnelda) |
Date and time of digitizing | 2006-02 |