nanoHUB-U: Biological Engineering - Cellular Design Principles

nanoHUB-U: Biological Engineering - Cellular Design Principles

Offering: Spring 2017 Section: Default

Video
  • L3.5: Introduction to Feed-forward Loops (FFLs): a Motif in Biological Networks 1. L3.5: Introduction to Feed-for… 0
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  • This lecture … 2. This lecture … 14.080747414080747
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  • Take a few minutes on your own. 3. Take a few minutes on your own… 38.50517183850517
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  • 13 possible connection patterns between 3 nodes 4. 13 possible connection pattern… 87.187187187187192
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  • Feed-forward Loop VS. Feed-back Loop 5. Feed-forward Loop VS. Feed-bac… 137.10377043710378
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  • 8 possible Feed-forward Loops 6. 8 possible Feed-forward Loops 181.81514848181516
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  • How does Z integrate the 2 inputs? 7. How does Z integrate the 2 inp… 300.76743410076745
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  • Feedforward loops are enriched in E. coli transcription network. 8. Feedforward loops are enriched… 366.19953286619955
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  • Feedforward Loops are Enriched 9. Feedforward Loops are Enriched 403.7037037037037
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  • C1-FFL and I1-FFL are highly enriched in yeast and E. coli T.F. networks 10. C1-FFL and I1-FFL are highly e… 541.24124124124126
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  • Neuronal Network of C. elegans 11. Neuronal Network of C. elegans 600.10010010010012
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  • Feedforward Loops are Enriched in Neuronal Networks in C. elegans 12. Feedforward Loops are Enriched… 684.68468468468473
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  • For further reading 13. For further reading 724.52452452452451
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  • Coming up… 14. Coming up… 738.8054721388055
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