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The following pages are not linked from or transcluded into other pages in Ilya Nemenman: Theoretical Biophysics @ Emory.

Showing below up to 50 results in range #1 to #50.

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  1. Bel et al., 2010
  2. CNS Clinic 2012: Dynamic Clamping
  3. CNS Clinic 2012: Information theory for understanding the neural code
  4. CNS Clinic 2012: Ins and outs of script programming with Genesis
  5. CNS Clinic 2012: Model fitting with neural data: Stories from the trenches
  6. CNS Clinic 2012: Principal Components Analysis of neural and behavioral data
  7. CNS Clinic 2012: Spike train analysis
  8. Diagnostics using microarray data
  9. E. coli chemoreceptor: mesoscopic model
  10. Entropy Estimation
  11. Entropy estimation methods
  12. Establishing causality
  13. First q-bio Conference: Employment board
  14. First q-bio Conference: Participants
  15. First q-bio Conference: Program
  16. First q-bio Conference: Program Details
  17. First q-bio Summer School: Classrooms
  18. First q-bio Summer School: Gene Regulation
  19. First q-bio Summer School: Other Topics in Biological Modeling
  20. First q-bio Summer School: Participants
  21. First q-bio Summer School: Program
  22. First q-bio Summer School: School Hotel
  23. First q-bio Summer School: Signal Transduction Mechanisms
  24. First q-bio Summer School: Stochasticity in Biochemistry and Systems Biology
  25. Group seminar / Journal club
  26. INemenman
  27. Information Bottleneck Method
  28. Information processing in biological systems
  29. Installing Octave on your PC and Mac
  30. Learning, adaptation, and adaptive behaviors
  31. Michaelis-Menten reaction: pump current and other stochastic effects
  32. Mugler et al., 2009
  33. Nemenman-filtering
  34. Nemenman and Wiggins
  35. Nemenman et al.
  36. P53 regulation
  37. Personal Pages
  38. Physics 212, 2016: Syllabus
  39. Physics 212, 2017: Lab 10
  40. Physics 212, 2017: Lab 12
  41. Physics 212, 2017: Lab 4
  42. Physics 212, 2017: Lab 5: Starting with Project 2
  43. Physics 212, 2017: Lab 7
  44. Physics 212, 2017: Lecture 10
  45. Physics 212, 2017: Lecture 11: Good coding practices
  46. Physics 212, 2017: Lecture 12: More Python: Scopes and all that
  47. Physics 212, 2017: Lecture 13
  48. Physics 212, 2017: Lecture 14
  49. Physics 212, 2017: Lecture 15
  50. Physics 212, 2017: Lecture 18: Introduction to randomness. How are pseudo-random numbers generated?

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