File:A-Validated-Multiscale-In-Silico-Model-for-Mechano-sensitive-Tumour-Angiogenesis-and-Growth-pcbi.1005259.s013.ogv
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Size of this JPG preview of this OGG file: 800 × 447 pixels. Other resolutions: 320 × 179 pixels | 640 × 358 pixels | 1,024 × 573 pixels | 1,488 × 832 pixels.
Original file (Ogg Theora video file, length 12 s, 1,488 × 832 pixels, 7.75 Mbps, file size: 10.69 MB)
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[edit]DescriptionA-Validated-Multiscale-In-Silico-Model-for-Mechano-sensitive-Tumour-Angiogenesis-and-Growth-pcbi.1005259.s013.ogv |
English: Three-dimensional contour plot of the interstitial fluid pressure (IFP) distribution in the tumour-host soft tissue domain and the blood vessels. The growing tumour is shown as a transparent sphere, while the vascular network is presented as a scaffold by showing only the centreline tree. The predicted IFP solution, in mm-Hg, is projected from the nodes of the three-dimensional finite element grid onto the vascular nodes via a conventional interpolation scheme (i.e. the inverse distance algorithm). |
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Source | S6 Video from Vavourakis V, Wijeratne P, Shipley R, Loizidou M, Stylianopoulos T, Hawkes D (2017). "A Validated Multiscale In-Silico Model for Mechano-sensitive Tumour Angiogenesis and Growth". PLOS Computational Biology. DOI:10.1371/journal.pcbi.1005259. PMID 28125582. PMC: 5268362. | ||
Author | Vavourakis V, Wijeratne P, Shipley R, Loizidou M, Stylianopoulos T, Hawkes D | ||
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This file is licensed under the Creative Commons Attribution 4.0 International license.
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Date/Time | Thumbnail | Dimensions | User | Comment | |
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current | 22:45, 2 March 2017 | 12 s, 1,488 × 832 (10.69 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 | Three-dimensional contour plot of the interstitial fluid pressure (IFP) distribution in the tumour-host soft tissue domain and the blood vessels. |
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Author | Vavourakis V, Wijeratne P, Shipley R, Loizidou M, Stylianopoulos T, Hawkes D |
Usage terms | http://creativecommons.org/licenses/by/4.0/ |
Image title | The growing tumour is shown as a transparent sphere, while the vascular network is presented as a scaffold by showing only the centreline tree. The predicted IFP solution, in mm-Hg, is projected from the nodes of the three-dimensional finite element grid onto the vascular nodes via a conventional interpolation scheme (i.e. the inverse distance algorithm). |
Software used | Xiph.Org libtheora 1.1 20090822 (Thusnelda) |
Date and time of digitizing | 2017-01 |
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January 2017
application/ogg
602954c71fbb5e8bbdfde05d466770c45b173c6f
11,210,431 byte
11.5713 second
832 pixel
1,488 pixel
Categories:
- Videos of cardiovascular physiology
- Videos of developmental biology
- Angiogenesis
- Basic cancer research
- Neoplasm physiology
- Videos of cardiovascular anatomy
- Videos of blood vessels
- Videos of bodily fluids
- Interstitial fluid
- Videos of cell biology
- Extracellular matrix
- Videos of classical mechanics
- Damage mechanics