Bibliography:

  1. ​ LessWrong and cryonics

  2. ​ doc tag

  3. ​ Crypto Millionaire Fuels Push to Transform Brain Research: James Fickel Has Dedicated $200 Million He Made Betting on Ether to Becoming One of the World’s Biggest Investors in Those Fields

  4. ​ The Brain Collector: the Scientist Unravelling the Mysteries of Grey Matter

  5. ​ Vitrification and nanowarming enable long-term organ cryopreservation and life-sustaining kidney transplantation in a rat model

  6. ​ Induction of a torpor-like hypothermic and hypometabolic state in rodents by ultrasound

  7. ​ A novel nematode species from the Siberian permafrost shares adaptive mechanisms for cryptobiotic survival with C. elegans dauer larva

  8. ​ An update on eukaryotic viruses revived from ancient permafrost

  9. ​ Cellular recovery after prolonged warm ischaemia of the whole body

  10. ​ Nematodes can survive in a suspended form of life for indefinite time

  11. ​ Recovery and Reproduction of an Antarctic Tardigrade Retrieved from a Moss Sample Frozen for over 30 Years

  12. ​ Vitrification and Nanowarming of Kidneys

  13. ​ Thermomechanical stress analysis of rabbit kidney and human kidney during cryopreservation by vitrification with the application of radiofrequency heating

  14. ​ A connectomic study of a petascale fragment of human cerebral cortex

  15. ​ Accelerating progress in brain recording tech

  16. ​ Isochoric Freezing and Its Emerging Applications in Food Preservation

  17. ​ Meet Elizabeth Ann, the First Cloned Black-Footed Ferret: Her birth represents the first cloning of an endangered species native to North America, and may bring needed genetic diversity to the species

  18. ​ The Przewalski’s Horse Project

  19. ​ The connectome of the adult Drosophila mushroom body: implications for function

  20. ​ A discrete neuronal circuit induces a hibernation-like state in rodents

  21. ​ Cryonics for All?

  22. ​ A Connectome of the Adult Drosophila Central Brain

  23. ​ Scientists Are Giving Dead Brains New Life. What Could Go Wrong? In experiments on pig organs, scientists at Yale made a discovery that could someday challenge our understanding of what it means to die

  24. ​ Restoration of brain circulation and cellular functions hours post-mortem

  25. ​ Cryopreservation of Human Ovarian Tissue: A Review

  26. ​ Viable Nematodes from Late Pleistocene Permafrost of the Kolyma River Lowland

  27. ​ Thermal Analyses of a Human Kidney and a Rabbit Kidney During Cryopreservation by Vitrification

  28. ​ Improved tissue cryopreservation using inductive heating of magnetic nanoparticles

  29. ​ Persistence of Long-Term Memory in Vitrified and Revived Caenorhabditis elegans

  30. ​ Saturated Reconstruction of a Volume of Neocortex

  31. ​ Vitrification of kidney precursors as a new source for organ transplantation

  32. ​ High-resolution whole-brain staining for electron microscopic circuit reconstruction

  33. ​ Principles of Cryopreservation by Vitrification

  34. ​ In-depth study of Mollivirus sibericum, a new 30,000-y-old giant virus infecting Acanthamoeba

  35. ​ Genome Sequence of a 45,000-Year-Old Modern Human from Western Siberia

  36. ​ Thirty-thousand-year-old distant relative of giant icosahedral DNA viruses with a pandoravirus morphology

  37. ​ Recalibrating Equus evolution using the genome sequence of an early Middle Pleistocene horse

  38. ​ ELECTRON IMAGING TECHNOLOGY FOR WHOLE BRAIN NEURAL CIRCUIT MAPPING

  39. ​ Regeneration of Whole Fertile Plants from 30,000-Y-Old Fruit Tissue Buried in Siberian Permafrost

  40. ​ d57306b52da0fc1cd232ce2eea581fa85347c237.pdf

  41. ​ Declining Immortality Twice

  42. ​ Cryonics Probabilities Survey

  43. ​ Exceptional Preservation of a Prehistoric Human Brain from Heslington, Yorkshire, UK

  44. ​ 64fe76d897252aa4c8551f7289b4b4f9d0d4efd5.pdf

  45. ​ Physical and biological aspects of renal vitrification

  46. ​ Sequencing and analysis of Neanderthal genomic DNA

  47. ​ Isolation of a 250 million-year-old halotolerant bacterium from a primary salt crystal

  48. ​ Revival and Identification of Bacterial Spores in 25 to 40-Million-Year-Old Dominican Amber

  49. ​ Vitrification as an approach to cryopreservation

  50. ​ Ultrastructure of 40-Million-Year-Old Insect Tissue

  51. ​ Ability of the Ground Squirrel, Citellus lateralis, to Be Habituated to Stimuli While in Hibernation

  52. ​ Cryonics and Technological Inevitability

  53. ​ 1c06b8161cf2c18cfd3f9831e7f3ace289ecc0ad.html

  54. ​ Thus Spake Curtis Henderson, Part 5

  55. ​ 22c184cb4d7629a8fd7ea60c66705ff34ff77afe.html

  56. ​ Does Personal Identity Survive Cryopreservation?

  57. ​ 97dcad26295ce03530d859a37faad143743f7dfa.html

  58. ​ Three Strikes and You’re Out!

  59. ​ 21a44b23cebe1d55fa91d4e12aa73d0f792bf28f.html

  60. ​ The Mentality of Wealth

  61. ​ 73976840605cfadd48d8f2a5c741abc5eece8f5a.html

  62. ​ Member Statistics

  63. ​ Nectome-1517-2018

  64. ​ Book Review: Freezing People Is (Not) Easy

  65. ​ e3abef699d9381996da7881a7cd7c047e9d42323.html

  66. ​ California Man Becomes the First β€˜Death With Dignity’ Patient to Undergo Cryonic Preservation

  67. ​ Generation Cryo: Fighting Death in the Frozen Unknown

  68. ​ Remembering Vernor Vinge

  69. ​ Why Do β€˜Respectable’ Women Want Dead Husbands?

  70. ​ Why Do β€˜Respectable’ Women Want Dead Husbands? Β§ Comment #1393

  71. ​ 6941581047d65292c9c7f1e1a151699bc6b25689.html#comment-1393

  72. ​ Resurrection on Repeat: Rules and Orders of the Humane Society (1787)

  73. ​ Cryonics and Cryptography

  74. ​ 2cf048e5bd53cc6e58861c5c2974d2e396b0d0e7.html

  75. ​ Lasers To Lunar Arks: Cryopreservation Heats Up

  76. ​ 5083888bbced3ee974159bb9eb88ec67d71ca874.html

  77. ​ The Prospect of Immortality

  78. ​ 03f9ceef6d8a80cab6d5038b06098ca9a37801e0.html

  79. ​ Until Cryonics Do Us Part

  80. ​ History

  81. ​ c5300b3fcd36562bb87a795c5857de3dc32f5c5d.html

  82. ​ A New Choice for Immortalists

  83. ​ a89a513dbd07a2f52025c4a52cce98c9322334ba.html

  84. ​ Biostasis through Chemopreservation

  85. ​ FATAL ATTRACTION: Vision from the Other Side

  86. ​ In Praise of Cold

  87. ​ Man Into Superman

  88. ​ 99b49de0cf72af288f1b3d5a47af2cc0d112319b.html

  89. ​ 21CM Aldehyde Stabilized Cryopreservation Eval Page

  90. ​ 945184ac4aa2842b93db3740146375d10cce3831.html

  91. ​ Aldehyde Stabilized Cryopreserved Rabbit Brain Evaluation Images

  92. ​ 2caf174c07db740936cdc2030d743f42c07b325b.html

  93. ​ Ken Hayworth’s Personal Response to MIT Technology Review Article

  94. ​ 2058474ef8f7e1d8ed19c088e6e7f459588def0d.html

  95. ​ Opinion: The Prize Win Is a Vindication of the Idea of Cryonics, Not of Unaccountable Cryonics Service Organizations

  96. ​ a565ab1869962915718582a19cc4b32721e184f4.html

  97. ​ Small Mammal BPF Prize Winning Announcement

  98. ​ d6cf6a66df4644de0fae9c2a7d8f89cce1e30b96.html

  99. ​ Inside The Immortality Business

  100. ​ Chasing Ghosts: Unlocking the Mysteries of Human Hibernation

  101. ​ 4a391ebb93b5a7442601abd2c7cb0857cb97e668.html

  102. ​ Chemical Brain Preservation and Human Suspended Animation

  103. ​ Suspension Failures: Lessons from the Early Years

  104. ​ Will Cryonics Work? Examining the Probabilities

  105. ​ Absolute Zero Is 0K

  106. ​ Breaking Down Cryonics Probabilities

  107. ​ ce69044aad924306b1e21d4a11ad85fd5cafbb41.html

  108. ​ The Brain Preservation Foundation's Small Mammalian Brain Prize Won

  109. ​ More Cryonics Probability Estimates

  110. ​ More Cryonics Probability Estimates

  111. ​ The Pascal's Wager Fallacy Fallacy

  112. ​ Cryonics Wants To Be Big

  113. ​ Cryonics Costs: given Estimates Are Low

  114. ​ Rationality, Cryonics and Pascal's Wager

  115. ​ Mike Darwin on Animal Research, Moral Cowardice, and Reasoning in an Uncaring Universe

  116. ​ Normal Cryonics

  117. ​ Normal Cryonics

  118. ​ On the Unpopularity of Cryonics: Life Sucks, but at Least Then You Die

  119. ​ Mentioning Cryonics to a Dying Person

  120. ​ Cryonics Is Far, Cord-Blood Is Near

  121. ​ A Review of Cryonics/brain Preservation in 2016

  122. ​ Until Cryonics Do Us Part

  123. ​ Sebastian Seung’s Quest to Map the Human Brain

  124. ​ Cryonics During the Pandemic

  125. ​ Break Cryonics Down

  126. ​ Brin Says Cryonics Selfish

  127. ​ Why Men Are Bad At β€˜Feelings’

  128. ​ Modern Male Sati

  129. ​ Aldehyde-Stabilized Cryopreservation

  130. ​ The Mind of a Mouse

  131. ​ Extreme Life Extension: Investing in Cryonics for the Long, Long Term

  132. ​ Icing Organs

  133. ​ The Dad's Army of British Cryonics Cryonics

  134. ​ The Strange and Often Radical Pursuit of Immortality in Russia

  135. ​ b1962d40c8fce2d9954c19e0ef1bea222ea5bc0c.html

  136. ​ The Most Complete Brain Map Ever Is Here: A Fly's 'Connectome'

  137. ​ ae908d15effb3ed74cc84500fe87a606e94f9af2.html

  138. ​ 2023-han-figure6-photographsofnanowarmedratkidneysvsunvitrifiedkidneys.jpg

  139. ​ 2021-shapesoncoe-figure1-scanninghumanbrainsample.png

  140. ​ http://stm.sciencemag.org/content/9/379/eaah4586

  141. ​ https://cryonicsarchive.org/docs/cryonics-magazine-2007-03.pdf

  142. ​ 5810b169bc4b8c4713c85d923e8ddeb8eca3dcfe.pdf

  143. ​ https://cryopets.com/explore/science

  144. ​ https://diyhpl.us/wiki/transcripts/verifiable-brain-preservation/

  145. ​ https://dubroy.com/blog/cold-blooded-software/

  146. ​ 3511da08bedf13800402cb40cc42e293083c8a1b.html

  147. ​ https://erights.medium.com/norm-hardys-place-in-history-cecf191df641

  148. ​ https://neurobiology.substack.com/p/what-should-we-be-measuring-in-brain

  149. ​ https://research.google/blog/releasing-the-drosophila-hemibrain-connectome-the-largest-synapse-resolution-map-of-brain-connectivity/

  150. ​ https://royalsocietypublishing.org/doi/10.1098/rspb.2023.2606

  151. ​ https://www.alcor.org/docs/algorithmic-estimation-of-cortical-autolysis-in-post-mortem-adult-rat-brains.pdf

  152. ​ 74e4bbddff807adf0f69646bcc3a6612d0aba113.pdf

  153. ​ https://www.alcor.org/library/alcor-membership-statistics/

  154. ​ https://www.alcor.org/library/allocation-of-long-term-care-costs-at-alcor/

  155. ​ 2bc4b74e4bf4300fad3343d0ae71361c5a25f785.html

  156. ​ https://www.atlasobscura.com/articles/mystery-preserved-brains

  157. ​ https://www.biostasis.com/pdfs/hostile.pdf

  158. ​ 6f8a887e35f79a18f1980f2155324f51d5a3835f.pdf

  159. ​ https://www.cryonicscalculator.com/

  160. ​ https://www.girlsandcorpses.com/monthly/questions.html

  161. ​ 1bf842e480911d4fe83609fec81428b2dc6432b9.html

  162. ​ https://www.lesswrong.com/posts/68TGNutjDcBcq6PCZ/bitcoin-cryonics-fund#5Da2f8n9aXmfJ7FYA

  163. ​ https://www.lesswrong.com/posts/mCu8hnycFkdiBMvD7/why-wasn-t-preservation-with-the-goal-of-potential-future

  164. ​ https://www.lesswrong.com/posts/sSYmGhBpjTG88Q4FW/mentioning-cryonics-to-a-dying-person#bGEMXD6h9RkdAC7DQ

  165. ​ https://www.maximum-progress.com/p/grading-extropian-predictions

  166. ​ https://www.nature.com/articles/s41587-021-00986-5

  167. ​ https://www.overcomingbias.com/2010/07/space-ashes-vs-cryonics.html

  168. ​ https://www.pnas.org/doi/full/10.1073/pnas.1717588114

  169. ​ https://www.quantamagazine.org/most-life-on-earth-is-dormant-after-pulling-an-emergency-brake-20240605/

  170. ​ https://www.sciencemag.org/news/2018/07/tour-de-force-researchers-image-entire-fly-brain-minute-detail

  171. ​ https://www.wired.com/story/mars-hiberators-guide-to-the-galaxy/

  172. ​ 075eb79e365df2f4cbbed03297c9c7207129bd24.html

  173. ​ Vitrification and nanowarming enable long-term organ cryopreservation and life-sustaining kidney transplantation in a rat model

  174. ​ https%253A%252F%252Fwww.nature.com%252Farticles%252Fs41467-023-38824-8.html

  175. ​ Cellular recovery after prolonged warm ischaemia of the whole body

  176. ​ %252Fdoc%252Fcryonics%252F2022-andrijevic.pdf.html

  177. ​ Vitrification and Nanowarming of Kidneys

  178. ​ https%253A%252F%252Fonlinelibrary.wiley.com%252Fdoi%252Ffull%252F10.1002%252Fadvs.202101691.html

  179. ​ A connectomic study of a petascale fragment of human cerebral cortex

  180. ​ https%253A%252F%252Fwww.biorxiv.org%252Fcontent%252F10.1101%252F2021.05.29.446289.full.html

  181. ​ Accelerating progress in brain recording tech

  182. ​ https%253A%252F%252Fxcorr.net%252F2021%252F04%252F27%252Faccelerating-progress-in-brain-recording-tech%252F.html

  183. ​ Viable Nematodes from Late Pleistocene Permafrost of the Kolyma River Lowland

  184. ​ %252Fdoc%252Fcryonics%252F2018-shatilovich.pdf.html

  185. ​ Isolation of a 250 million-year-old halotolerant bacterium from a primary salt crystal

  186. ​ %252Fdoc%252Fbiology%252F2000-vreeland.pdf.html

  187. ​ Vitrification as an approach to cryopreservation

  188. ​ %252Fdoc%252Fcryonics%252F1984-fahy.pdf.html