File:Calcium-stores-mediate-adaptation-in-axon-terminals-of-Olfactory-Receptor-Neurons-in-Drosophila-1471-2202-12-105-S1.ogv
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Calcium-stores-mediate-adaptation-in-axon-terminals-of-Olfactory-Receptor-Neurons-in-Drosophila-1471-2202-12-105-S1.ogv (Ogg Theora video file, length 27 s, 177 × 198 pixels, 1.12 Mbps, file size: 3.6 MB)
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DescriptionCalcium-stores-mediate-adaptation-in-axon-terminals-of-Olfactory-Receptor-Neurons-in-Drosophila-1471-2202-12-105-S1.ogv |
English: In-vivo bioluminescence imaging of Ca2+-responses elicited at the level of the antennal lobes in the olfactory sensory neurons (ORNs), of a living OR83b,GA/CS fly during 5 s of 5 successive applications, at 5 min-intervals of each of the three odors; spearmint, citronella, octanol, respectively. We note that the localization of the odor-evoked response is different for each odor, suggesting a specific glomerular activity pattern. Each frame represents 20 s of light accumulation and is shifted by 7 s (25 frames/s). The movie is seen 175 times faster. The light emission is coded in pseudocolors (0-6 photons/pixel) (QuickTime: 9,78 Ko). |
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Date | |||
Source | Murmu M, Stinnakre J, Réal E, Martin J (2011). "Calcium-stores mediate adaptation in axon terminals of Olfactory Receptor Neurons in Drosophila". BMC Neuroscience. DOI:10.1186/1471-2202-12-105. PMID 22024464. PMC: 3226658. | ||
Author | Murmu M, Stinnakre J, Réal E, Martin J | ||
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This file is licensed under the Creative Commons Attribution 2.0 Generic license.
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Date/Time | Thumbnail | Dimensions | User | Comment | |
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current | 22:23, 20 November 2012 | 27 s, 177 × 198 (3.6 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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Usage terms | http://creativecommons.org/licenses/by/2.0/ |
Image title | In-vivo bioluminescence imaging of Ca2+-responses elicited at the level of the antennal lobes in the olfactory sensory neurons (ORNs), of a living OR83b,GA/CS fly during 5 s of 5 successive applications, at 5 min-intervals of each of the three odors; spearmint, citronella, octanol, respectively. We note that the localization of the odor-evoked response is different for each odor, suggesting a specific glomerular activity pattern. Each frame represents 20 s of light accumulation and is shifted by 7 s (25 frames/s). The movie is seen 175 times faster. The light emission is coded in pseudocolors (0-6 photons/pixel) (QuickTime: 9,78 Ko). |
Software used | Xiph.Org libtheora 1.1 20090822 (Thusnelda) |
Date and time of digitizing | 2011 |