Santa Fe Institute Collaboration Platform

COMPLEX TIME: Adaptation, Aging, & Arrow of Time

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Contact: Caitlin Lorraine McShea, Program Manager, cmcshea@santafe.edu

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  1. Aging and Adaptation in Infectious Diseases III/Day 4 Continental Breakfast (outside Noyce Conference Room)
  2. Aging and Adaptation in Infectious Diseases III/Day 4 Lunch (outside SFI Noyce Conference Room)
  3. Aging and Adaptation in Infectious Diseases III/Discussion: Plans for an SFI publication / Presentation from SFI Press
  4. Aging and Adaptation in Infectious Diseases III/Group Dinner
  5. Aging and Adaptation in Infectious Diseases III/KatieGostic
  6. Aging and Adaptation in Infectious Diseases III/Optional additional Working Group Sessions (for those staying that afternoon)
  7. Aging and Adaptation in Infectious Diseases III/Re-assembling: Brief updates and plans for Day 3
  8. Aging and Adaptation in Infectious Diseases III/Session I: Immune System: Innate/Adaptive collaboration
  9. Aging and Adaptation in Infectious Diseases III/Session II: Diversity, adaptive immunity, and age
  10. Aging and Adaptation in Infectious Diseases III/Session III: Disease History, Aging, and Complex Time
  11. Aging and Adaptation in Infectious Diseases III/Welcome, Introductions and Workshop Overview
  12. Aging in Single-celled Organisms: from Bacteria to the Whole Tree of Life/A time to sleep and a time to die
  13. Aging in Single-celled Organisms: from Bacteria to the Whole Tree of Life/About time: Precision measurements and emergent simplicities in an individual bacterial cell's stochastic aging dynamics.
  14. Aging in Single-celled Organisms: from Bacteria to the Whole Tree of Life/All creatures fast and slow: senescence and longevity across the tree of life
  15. Aging in Single-celled Organisms: from Bacteria to the Whole Tree of Life/Bree Aldridge
  16. Aging in Single-celled Organisms: from Bacteria to the Whole Tree of Life/Day 1 Continental Breakfast (outside SFI Collins Conference Room)
  17. Aging in Single-celled Organisms: from Bacteria to the Whole Tree of Life/Discussion
  18. Aging in Single-celled Organisms: from Bacteria to the Whole Tree of Life/JacopoGrilli
  19. Aging in Single-celled Organisms: from Bacteria to the Whole Tree of Life/LinChao
  20. Aging in Single-celled Organisms: from Bacteria to the Whole Tree of Life/MartinPicard
  21. Aging in Single-celled Organisms: from Bacteria to the Whole Tree of Life/MatteoOsella
  22. Aging in Single-celled Organisms: from Bacteria to the Whole Tree of Life/More questions than answers: relations between quantittative physiology and aging in E. coli
  23. Aging in Single-celled Organisms: from Bacteria to the Whole Tree of Life/Overview of the meeting
  24. Aging in Single-celled Organisms: from Bacteria to the Whole Tree of Life/Owen Jones
  25. Aging in Single-celled Organisms: from Bacteria to the Whole Tree of Life/SabrinaSpencer
  26. Aging in Single-celled Organisms: from Bacteria to the Whole Tree of Life/SrividyaIyer-Biswas
  27. Aging in Single-celled Organisms: from Bacteria to the Whole Tree of Life/Stochastic processes shape senescence, beyond genes, and environment
  28. Aging in Single-celled Organisms: from Bacteria to the Whole Tree of Life/Stochasticity, immortality, and mortality in E. coli
  29. Aging in Single-celled Organisms: from Bacteria to the Whole Tree of Life/Systematic Physiology and Aging Across Diverse Organisms
  30. Aging in Single-celled Organisms: from Bacteria to the Whole Tree of Life/The long and the short of it: mycobacterial aging, asymmetry, and stress tolerance
  31. Aging in Single-celled Organisms: from Bacteria to the Whole Tree of Life/Time perception and the rate of cellular aging outside the human body: an energetic perspective
  32. Aging in Single-celled Organisms: from Bacteria to the Whole Tree of Life/Toward a Molecular Understanding of Quiescence versus Senescence
  33. Aging in Single-celled Organisms: from Bacteria to the Whole Tree of Life/UliSteiner
  34. Cognitive Regime Shift II - When/why/how the Brain Breaks/MyPage
  35. Diversity of ageing across the tree of life
  36. Dynamic Multi-System Resilience in Human Aging/MyPage
  37. Dynamic Multi-System Resilience in Human Aging Shared-doc
  38. Hallmarks of Biological Failure/MyPage
  39. Hallmarks of Biological Failure Breakout Group Discussion
  40. Irreversible Processes in Ecological Evolution/MyPage
  41. Main Page
  42. Population and the Environment: Analytical Demography and Applied Population Ethics/MyPage
  43. Provinciali et al 2009
  44. Table
  45. TestCommentStreams
  46. Test GDC
  47. Test forum3
  48. The Complexity of Time/MyPage
  49. Toward a Multi-Scale Theory of Birth and Death Patterns II
  50. Toward a Multi-Scale Theory of Birth and Death Patterns II/
  51. Toward a Multi-Scale Theory of Birth and Death Patterns II/Caitlin McShea
  52. Toward a Multi-Scale Theory of Birth and Death Patterns II/Coffee Break
  53. Toward a Multi-Scale Theory of Birth and Death Patterns II/Ontogenetic consideration and discussion
  54. Toward a Multi-Scale Theory of Birth and Death Patterns II/Opening Remarks and Initial Discussion
  55. Toward a Multi-Scale Theory of Birth and Death Patterns II/Potential modeling methods
  56. Toward a multi-scale theory of birth and death pattern
  57. Toward a multi-scale theory of birth and death pattern/Round-table introduction
  58. Toward a multi-scale theory of birth and death pattern/Toward a multi-scale theory of birth and death patterns
  59. Toward a multi-scale theory of birth and death pattern/What is aging & what is dying?
  60. Towards a Multi-Scale Theory of Birth and Death Pattern II
  61. Towards a Multi-Scale Theory of Birth and Death Pattern II/Coffee Break
  62. Towards a Multi-Scale Theory of Birth and Death Pattern II/General Discussion
  63. Towards a Multi-Scale Theory of Birth and Death Pattern II/Ontological Considerations
  64. Towards a Multi-Scale Theory of Birth and Death Pattern II/Opening Remarks
  65. Towards a Multi-Scale Theory of Birth and Death Pattern II/Potential Modeling Approaches
  66. Towards a Multi-Scale Theory of Birth and Death Pattern II/Social Individuals

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