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. Cognitive Regime Shift I - When the Brain Breaks/Neuronal Avalanches
  2. Cognitive Regime Shift I - When the Brain Breaks/On the Stability of Large Ecological Communities
  3. Cognitive Regime Shift I - When the Brain Breaks/Open discussion, synthesis, planning for Day 3, platform time
  4. Cognitive Regime Shift I - When the Brain Breaks/Recap from Day 1
  5. Cognitive Regime Shift I - When the Brain Breaks/Research Jam
  6. Cognitive Regime Shift I - When the Brain Breaks/SidneyRedner
  7. Cognitive Regime Shift I - When the Brain Breaks/States and Stability in Human Functional Brain Networks
  8. Cognitive Regime Shift I - When the Brain Breaks/The Brain and other Networks
  9. Cognitive Regime Shift I - When the Brain Breaks/WG Context under SFI Adaptation, Aging, Arrow of Time (AAA) & Wiki Collaboration Platform
  10. Cognitive Regime Shift I - When the Brain Breaks/Welcome & Introduction around the Room
  11. Cognitive neuroscience of sleep
  12. Coherence potentials: Loss-less, all-or-none network events in the cortex
  13. Communication dynamics in complex brain networks
  14. Community of the Self
  15. Comparing the Morningness-Eveningness Questionnaire and Munich ChronoType Questionnaire to the dim light melatonin onset
  16. Complexity of neural computation and cognition
  17. Control of Mammalian Circadian Rhythm by CKI -Regulated Proteasome-Mediated PER2 Degradation
  18. Coordinated reset
  19. Coordinated reset vibrotactile stimulation shows prolonged improvement in Parkinson's disease
  20. Correlation between genetic regulation of immune responsiveness and host defence against infections and tumours
  21. Correlation between interaction strengths drives stability in large ecological networks
  22. Cortically coordinated NREM thalamocortical oscillations play an essential, instructive role in visual system plasticity
  23. Critical dynamics of gene networks is a mechanism behind ageing and Gompertz law
  24. Critical networks exhibit maximal information diversity in structure-dynamics relationships
  25. Critical slowing down as early warning for the onset and termination of depression
  26. Critical slowing down as early warning for the onset and termination of depression2
  27. Critical slowing down as early warning for the onset and termination of depression3
  28. Critical slowing down as early warning for the onset and termination of depression4
  29. Data analysis using regression and multilevel/hierarchical models
  30. Decline of long-range temporal correlations in the human brain during sustained wakefulness
  31. Decreased segregation of brain systems across the healthy adult lifespan
  32. Demography of dietary restriction and death in Drosophila
  33. Differential and enhanced response to climate forcing in diarrheal disease due to rotavirus across a megacity of the developing world
  34. Diversity, Stability, and Reproducibility in Stochastically Assembled Microbial Ecosystems
  35. Diversity of ageing across the tree of life
  36. Doi.org/10.1073/pnas.1810630115
  37. Domestic and International Climate Migration from Rural Mexico
  38. Dynamic Multi-System Resilience in Human Aging
  39. Dynamic Multi-System Resilience in Human Aging/AlfonsHoekstra
  40. Dynamic Multi-System Resilience in Human Aging/ChhandaDutta
  41. Dynamic Multi-System Resilience in Human Aging/Conceptual models of human aging and resilience
  42. Dynamic Multi-System Resilience in Human Aging/Day 1 AM Break
  43. Dynamic Multi-System Resilience in Human Aging/Day 1 Collaborative Platform Work Time
  44. Dynamic Multi-System Resilience in Human Aging/Day 1 Continental Breakfast (outside SFI Noyce Conference Room)
  45. Dynamic Multi-System Resilience in Human Aging/Day 1 Lunch (outside SFI Noyce Conference Room)
  46. Dynamic Multi-System Resilience in Human Aging/Day 1 Open group discussion
  47. Dynamic Multi-System Resilience in Human Aging/Day 1 PM Break
  48. Dynamic Multi-System Resilience in Human Aging/Day 1 Shuttle Departing Hotel Santa Fe (at lobby) to SFI
  49. Dynamic Multi-System Resilience in Human Aging/Day 1 Shuttle Departing SFI to Hotel Santa Fe
  50. Dynamic Multi-System Resilience in Human Aging/Day 2 AM Break
  51. Dynamic Multi-System Resilience in Human Aging/Day 2 Collaborative Platform Work Time
  52. Dynamic Multi-System Resilience in Human Aging/Day 2 Continental Breakfast (outside SFI Noyce Conference Room)
  53. Dynamic Multi-System Resilience in Human Aging/Day 2 Lunch (outside SFI Noyce Conference Room)
  54. Dynamic Multi-System Resilience in Human Aging/Day 2 Open group discussion
  55. Dynamic Multi-System Resilience in Human Aging/Day 2 Open group discussion II
  56. Dynamic Multi-System Resilience in Human Aging/Day 2 Opening Remarks
  57. Dynamic Multi-System Resilience in Human Aging/Day 2 PM Break
  58. Dynamic Multi-System Resilience in Human Aging/Day 2 Shuttle Departing Hotel Santa Fe (at lobby)
  59. Dynamic Multi-System Resilience in Human Aging/Day 2 Shuttle Departing SFI to Hotel Santa Fe
  60. Dynamic Multi-System Resilience in Human Aging/DervisCanVural
  61. Dynamic Multi-System Resilience in Human Aging/Developing dynamical indicators of resilience based on physiologic time series in older adult
  62. Dynamic Multi-System Resilience in Human Aging/Dynamical systems approach to studying resilience in older adults
  63. Dynamic Multi-System Resilience in Human Aging/Ecology for doctors: system dynamics models as a tool to understand observed behavior
  64. Dynamic Multi-System Resilience in Human Aging/Emergence of Aging in Natural and Synthetic Multicellular Structures
  65. Dynamic Multi-System Resilience in Human Aging/Group dinner at Casa Chimayo
  66. Dynamic Multi-System Resilience in Human Aging/HeatherWhitson
  67. Dynamic Multi-System Resilience in Human Aging/IngridvdLeemput
  68. Dynamic Multi-System Resilience in Human Aging/JerraldRector
  69. Dynamic Multi-System Resilience in Human Aging/LuisAmaral
  70. Dynamic Multi-System Resilience in Human Aging/MarcelGMOldeRikkert
  71. Dynamic Multi-System Resilience in Human Aging/Multiscale modeling to help making sense of dynamical multiscale resilience
  72. Dynamic Multi-System Resilience in Human Aging/MyPage
  73. Dynamic Multi-System Resilience in Human Aging/PeterMHoffmann
  74. Dynamic Multi-System Resilience in Human Aging/Physical resilience is a predictor of healthy aging in mice
  75. Dynamic Multi-System Resilience in Human Aging/PorterSwentzell
  76. Dynamic Multi-System Resilience in Human Aging/RaviVaradhan
  77. Dynamic Multi-System Resilience in Human Aging/ReneMelis
  78. Dynamic Multi-System Resilience in Human Aging/Resilience and vulnerability in a stressed system: an example from the wards
  79. Dynamic Multi-System Resilience in Human Aging/Resilience in New Mexico’s Indigenous Communities
  80. Dynamic Multi-System Resilience in Human Aging/SanneGijzel
  81. Dynamic Multi-System Resilience in Human Aging/Studies of Resiliencies to Physiologic Stressors: Need for Multilevel and Life Course Approaches
  82. Dynamic Multi-System Resilience in Human Aging/SusanFitzpatrick
  83. Dynamic Multi-System Resilience in Human Aging/TimBuchman
  84. Dynamic Multi-System Resilience in Human Aging/WG Context under SFI Adaptation, Aging, Arrow of Time (AAA) Research Theme
  85. Dynamic Multi-System Resilience in Human Aging/WarrenCLadiges
  86. Dynamic Multi-System Resilience in Human Aging/Welcome & introduction around the Room
  87. Dynamic Multi-System Resilience in Human Aging Shared-doc
  88. Dynamical Resilience Indicators in Time Series of Self-Rated Health Correspond to Frailty Levels in Older Adults
  89. Dynamical indicators of resilience in postural balance time series are related to successful aging in high-functioning older adults
  90. Early-warning signals for critical transitions
  91. Eco-Evolutionary Theory and Insect Outbreaks
  92. Ecosystem tipping points in an evolving world
  93. Editorial overview: Neurobiology of cognitive behavior: Complexity of neural computation and cognition
  94. Effects of Meditation Experience on Functional Connectivity of Distributed Brain Networks
  95. Effects of host heterogeneity on pathogen diversity and evolution
  96. Effects of thermoregulation on human sleep patterns a mathematical model
  97. Elevated success of multispecies bacterial invasions impacts community composition during ecological succession
  98. Emancipatory catastrophism: What does it mean to climate change and risk society?
  99. Emergence of complex dynamics in a simple model of signaling networks
  100. Emergent Functional Network Effects in Parkinson Disease
  101. Emergent simplicity in microbial community assembly
  102. Entrainment of the human circadian clock to the natural light-dark cycle
  103. Environmental Dimensions of Migration
  104. Evidence of strain structure in Plasmodium falciparum var gene repertoires in children from Gabon, West Africa
  105. Evolution and climate variability
  106. Experience-dependent phase-reversal of hippocampal neuron firing during REM sleep
  107. Exposure to room light before bedtime suppresses melatonin onset and shortens melatonin duration in humans
  108. Extended Twilight among Isogenic C. elegans Causes a Disproportionate Scaling between Lifespan and Health
  109. Fisher's geometrical model and the mutational patterns of antibiotic resistance across dose gradients
  110. Fisher's geometrical model emerges as a property of complex integrated phenotypic networks
  111. Five Years of Experimental Warming Increases the Biodiversity and Productivity of Phytoplankton
  112. Fractal dynamics in physiology: Alterations with disease and aging
  113. Frequency-dependent selection in vaccine-associated pneumococcal population dynamics
  114. Functional Brain Networks Are Dominated by Stable Group and Individual Factors, Not Cognitive or Daily Variation
  115. Genetic control of immune responsiveness, aging and tumor incidence
  116. Genetic regulation of the specific and non-specific component of immunity
  117. Genetics of the human circadian clock and sleep homeostat
  118. Hallmarks of Biological Failure
  119. Hallmarks of Biological Failure/Adjourn; Shuttle Departing SFI to Hotel Santa Fe
  120. Hallmarks of Biological Failure/BarbaraNatterson-Horowitz
  121. Hallmarks of Biological Failure/BernieCrespi
  122. Hallmarks of Biological Failure/Breakout Group Discussion I
  123. Hallmarks of Biological Failure/Breakout Group Discussion II
  124. Hallmarks of Biological Failure/Complexity, Breaking Bad Tradeoffs, and the Evolution of Biological Failure
  125. Hallmarks of Biological Failure/Context Framing
  126. Hallmarks of Biological Failure/DanielPromislow
  127. Hallmarks of Biological Failure/DarioValenzano
  128. Hallmarks of Biological Failure/DavidSchneider
  129. Hallmarks of Biological Failure/Day 1 AM Break
  130. Hallmarks of Biological Failure/Day 1 Continental Breakfast (outside SFI Noyce Conference Room)
  131. Hallmarks of Biological Failure/Day 1 Lunch (outside SFI Noyce Conference Room)
  132. Hallmarks of Biological Failure/Day 1 Open Discussion
  133. Hallmarks of Biological Failure/Day 1 PM Break
  134. Hallmarks of Biological Failure/Day 1 Shuttle Departing Hotel Santa Fe (at lobby) to SFI
  135. Hallmarks of Biological Failure/Day 1 Shuttle Departing SFI to Hotel Santa Fe
  136. Hallmarks of Biological Failure/Day 1 Wiki Platform Work Time
  137. Hallmarks of Biological Failure/Day 2 AM Break
  138. Hallmarks of Biological Failure/Day 2 Continental Breakfast (outside SFI Noyce Conference Room)
  139. Hallmarks of Biological Failure/Day 2 Lunch (outside SFI Noyce Conference Room)
  140. Hallmarks of Biological Failure/Day 2 PM Break
  141. Hallmarks of Biological Failure/Day 2 Shuttle Departing Hotel Santa Fe (at lobby) to SFI
  142. Hallmarks of Biological Failure/Day 2 Shuttle Departing SFI to Hotel Santa Fe
  143. Hallmarks of Biological Failure/Day 2 Wiki Platform Work Time
  144. Hallmarks of Biological Failure/Day 3 AM Break
  145. Hallmarks of Biological Failure/Day 3 Continental Breakfast (outside SFI Noyce Conference Room)
  146. Hallmarks of Biological Failure/Day 3 Lunch (outside SFI Noyce Conference Room); Adjourn
  147. Hallmarks of Biological Failure/Day 3 Shuttle Departing Hotel Santa Fe (at lobby) to SFI
  148. Hallmarks of Biological Failure/Day 3 Wiki Platform Work Time
  149. Hallmarks of Biological Failure/Dynamic Cardiovascular Systems, Evolved Adaptations and Clinical Pathology
  150. Hallmarks of Biological Failure/Explain this! - Evolutionary approaches to unanswered questions in cancer biology
  151. Hallmarks of Biological Failure/Group Discussion & Breakout Group Discussion
  152. Hallmarks of Biological Failure/Group Presentations and Plans for Next Steps
  153. Hallmarks of Biological Failure/Group dinner at Casa Chimayo
  154. Hallmarks of Biological Failure/Introduction: 3-min Lightning Talks
  155. Hallmarks of Biological Failure/JamesDeGregori
  156. Hallmarks of Biological Failure/KelleyHarris
  157. Hallmarks of Biological Failure/MariaRiolo
  158. Hallmarks of Biological Failure/MartenScheffer
  159. Hallmarks of Biological Failure/Measuring the resilience of hosts to infections by mapping disease space
  160. Hallmarks of Biological Failure/Metabolic Integrity & Aging: Amplification of Small Perturbations
  161. Hallmarks of Biological Failure/MichaelHochberg
  162. Hallmarks of Biological Failure/Models in Aging: Two Examples
  163. Hallmarks of Biological Failure/MorganLevine
  164. Hallmarks of Biological Failure/MyPage
  165. Hallmarks of Biological Failure/OphelieRonce
  166. Hallmarks of Biological Failure/Quantifying Resilience of Humans and other Animals
  167. Hallmarks of Biological Failure/Recap from Day 1
  168. Hallmarks of Biological Failure/Recap from Day 1 & 2
  169. Hallmarks of Biological Failure/Relaxed selection shapes the rate of aging across species
  170. Hallmarks of Biological Failure/RozalynAnderson
  171. Hallmarks of Biological Failure/SabrinaSpencer
  172. Hallmarks of Biological Failure/ShripadTuljapurkar
  173. Hallmarks of Biological Failure/Single-cell analysis of heterogeneity in proliferation-quiescence decisions
  174. Hallmarks of Biological Failure/Systems-Level Modeling of Aging across Biological Levels of Organization
  175. Hallmarks of Biological Failure/WG Context under Adaptation, Aging, Arrow of Time project
  176. Hallmarks of Biological Failure Breakout Group Discussion
  177. Health beliefs and the politics of Cree well-being
  178. Heuristic segmentation of a nonstationary time series
  179. Hierarchy theory: the challenge of complex systems
  180. Hierarchy theory: the challenge of complex systems2
  181. High performance communication by people with paralysis using an intracortical brain-computer interface
  182. High sensitivity and interindividual variability in the response of the human circadian system to evening light
  183. Hippocampal network oscillations rescue memory consolidation deficits caused by sleep loss
  184. Homer1a drives homeostatic scaling-down of excitatory synapses during sleep
  185. How the World Survived the Population Bomb: Lessons From 50 Years of Extraordinary Demographic History
  186. Human cortical excitability increases with time awake
  187. Human information processing in complex networks
  188. In Vivo Amelioration of Age-Associated Hallmarks by Partial Reprogramming Cellular reprogramming by transient expression of Yamanaka factors ameliorates age-associated symptoms, prolongs lifespan in progeroid mice, and improves tissue homeostasis in older
  189. In defence of repugnance
  190. Increased Network Interdependency Leads to Aging
  191. Indirect genetic effects clarify how traits can evolve even when fitness does not
  192. Inferring network structure from cascades
  193. Inheritance of immune responsiveness, life span, and disease incidence in interline crosses of mice selected for high or low multispecific antibody production.
  194. Input source and strength influences overall firing phase of model hippocampal CA1 pyramidal cells during theta: Relevance to REM sleep reactivation and memory consolidation
  195. Interdependence theory of tissue failure: Bulk and boundary effects
  196. Intergenerational resource transfers with random offspring numbers
  197. International Climate Migration: Evidence for the Climate Inhibitor Mechanism and the Agricultural Pathway
  198. Intrinsic period and light intensity determine the phase relationship between melatonin and sleep in humans
  199. Irregular spiking of pyramidal neurons organizes as scale-invariant neuronal avalanches in the awake state
  200. Irreversible Processes in Ecological Evolution
  201. Irreversible Processes in Ecological Evolution/AmyPChen
  202. Irreversible Processes in Ecological Evolution/AnnetteOstling
  203. Irreversible Processes in Ecological Evolution/Are changes in species interactions and their ecosystem consequences irreversible?
  204. Irreversible Processes in Ecological Evolution/Collaborative Platform Work Time: references, reference note, presentation upload, additional reflection & commenting on each other’s reflection
  205. Irreversible Processes in Ecological Evolution/Cooperation and specialization in dynamic fluids
  206. Irreversible Processes in Ecological Evolution/Cooperative growth and cell-cell aggregation in marine bacteria
  207. Irreversible Processes in Ecological Evolution/Day 1 Continental Breakfast (outside SFI Noyce Conference Room)
  208. Irreversible Processes in Ecological Evolution/Day 1 Lunch (outside SFI Noyce Conference Room)
  209. Irreversible Processes in Ecological Evolution/Day 1 PM Break
  210. Irreversible Processes in Ecological Evolution/Day 2 AM Break
  211. Irreversible Processes in Ecological Evolution/Day 2 Continental Breakfast (outside SFI Noyce Conference Room)
  212. Irreversible Processes in Ecological Evolution/Day 2 Lunch (outside SFI Noyce Conference Room)
  213. Irreversible Processes in Ecological Evolution/Day 2 Open discussion
  214. Irreversible Processes in Ecological Evolution/Day 2 PM Break
  215. Irreversible Processes in Ecological Evolution/Day 2 Reflection time
  216. Irreversible Processes in Ecological Evolution/Day 3 AM Break
  217. Irreversible Processes in Ecological Evolution/Day 3 Continental Breakfast (outside SFI Noyce Conference Room)
  218. Irreversible Processes in Ecological Evolution/Day 3 Lunch (outside SFI Noyce Conference Room); Adjourn
  219. Irreversible Processes in Ecological Evolution/Day 3 Open discussion
  220. Irreversible Processes in Ecological Evolution/Day 3 Reflection time
  221. Irreversible Processes in Ecological Evolution/DervisCanVural
  222. Irreversible Processes in Ecological Evolution/Emergent structure and dynamics in stochastic, open, competitive communities
  223. Irreversible Processes in Ecological Evolution/FernandaValdovinos
  224. Irreversible Processes in Ecological Evolution/GregDwyer
  225. Irreversible Processes in Ecological Evolution/Higher-order interactions, stability across timescales, and macroecological patterns
  226. Irreversible Processes in Ecological Evolution/Irreversible processes in ecological networks
  227. Irreversible Processes in Ecological Evolution/JacopoGrilli
  228. Irreversible Processes in Ecological Evolution/MyPage
  229. Irreversible Processes in Ecological Evolution/NathanielRupprecht
  230. Irreversible Processes in Ecological Evolution/Natural selection, population cycles, and climate change in forest insects
  231. Irreversible Processes in Ecological Evolution/Open discussion & reflection time I
  232. Irreversible Processes in Ecological Evolution/Open discussion & reflection time II
  233. Irreversible Processes in Ecological Evolution/Open discussion & reflection time III
  234. Irreversible Processes in Ecological Evolution/OttoCordero
  235. Irreversible Processes in Ecological Evolution/Pathogen diversity and negative frequency-dependent selection: consequences for intervention
  236. Irreversible Processes in Ecological Evolution/Phenotypic evolution in the Anthropocene
  237. Irreversible Processes in Ecological Evolution/Population genetics of low-probability transitions
  238. Irreversible Processes in Ecological Evolution/PriyangaAmarasekare
  239. Irreversible Processes in Ecological Evolution/RobertMarsland
  240. Irreversible Processes in Ecological Evolution/SamraatPawar
  241. Irreversible Processes in Ecological Evolution/Statistical mechanics of microbiomes
  242. Irreversible Processes in Ecological Evolution/StephenProulx
  243. Irreversible Processes in Ecological Evolution/SusanFitzpatrick
  244. Irreversible Processes in Ecological Evolution/SushrutGhonge
  245. Irreversible Processes in Ecological Evolution/WG Context under Adaptation, Aging, Arrow of Time project
  246. Irreversible Processes in Ecological Evolution/Welcome & introduction around the room
  247. Irreversible Processes in Ecological Evolution/Working Group Context Framing
  248. K-complex, a reactive EEG graphoelement of NREM sleep: An old chap in a new garment
  249. Life-Span, tumor incidence, and natural killer cell activity in mice selected for high or low antibody responsiveness
  250. Limits of Prediction in thermodynamic systems: a review

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