nanoHUB-U: Biological Engineering - Cellular Design Principles

nanoHUB-U: Biological Engineering - Cellular Design Principles

Offering: Spring 2017 Section: Default

Video
  • L2.4: Introduction to Biological Networks 1. L2.4: Introduction to Biologic… 0
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  • In this lecture … 2. In this lecture … 11.711711711711713
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  • Interaction: fundamental feature of life 3. Interaction: fundamental featu… 29.996663329996665
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  • Network Representation 4. Network Representation 71.404738071404736
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  • Many Types of Biological Networks 5. Many Types of Biological Netwo… 108.90890890890891
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  • Real Biological Network 6. Real Biological Network 184.81815148481815
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  • What would a network look if it connections were random? 7. What would a network look if i… 239.47280613947282
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  • Define Quantitative Features Node Degree, k 8. Define Quantitative Features N… 307.7077077077077
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  • Random Network 9. Random Network 398.66533199866535
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  • better fit by a power law 10. better fit by a power law 458.12479145812483
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  • Scale-Free vs. Random Network 11. Scale-Free vs. Random Network 492.45912579245913
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  • Biological Scale Free Networks 12. Biological Scale Free Networks 560.92759426092766
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  • Functional consequence of highly connected nodes? 13. Functional consequence of high… 630.96429763096432
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  • functional implications of structure 14. functional implications of str… 748.44844844844852
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  • Cell Design Consequence? 15. Cell Design Consequence? 815.3820487153821
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  • Other quantitative features? 16. Other quantitative features? 867.600934267601
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  • Metabolic Networks 17. Metabolic Networks 1092.0920920920921
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  • What about Local Structure? 18. What about Local Structure? 1214.8148148148148
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  • E. coli Transcription Network 19. E. coli Transcription Network 1295.7290623957292
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  • Feedforward loops are enriched in E. coli transcription network. 20. Feedforward loops are enriched… 1380.880880880881
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  • Coming up…. 21. Coming up…. 1426.55989322656
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