Data:academicpapers.json: Difference between revisions

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   "publishDate": "2011-06",
   "publishDate": "2011-06",
   "description": "A significant challenge for neuroscientists is to determine how both electrical and chemical signals affect the activity of cells and circuits and how the nervous system subsequently translates that activity into behavior. Remote, bidirectional manipulation of those signals with high spatiotemporal precision is an ideal approach to addressing that challenge"
   "description": "A significant challenge for neuroscientists is to determine how both electrical and chemical signals affect the activity of cells and circuits and how the nervous system subsequently translates that activity into behavior. Remote, bidirectional manipulation of those signals with high spatiotemporal precision is an ideal approach to addressing that challenge"
},
{
  "name": "Piezoelectric Nanomaterials Activated by Ultrasound: The Pathway from Discovery to Future Clinical Adoption",
  "url": "https://pmc.ncbi.nlm.nih.gov/articles/PMC8397402/",
  "author": "Andrea Cafarelli †,‡, Attilio Marino §, Lorenzo Vannozzi †,‡, Josep Puigmartí-Luis ∥,⊥, Salvador Pané #, Gianni Ciofani §, Leonardo Ricotti",
  "publishDate": "2021-06-21",
  "description": "This article discusses the use of ultrasonic sound as a mechanism to induce activation of nano-bots inside the human body"
  },
  },
  {
  {

Revision as of 07:42, 4 January 2025

[

{
  "name": "Remote Control of Neuronal Signaling",
  "url": "https://pmc.ncbi.nlm.nih.gov/articles/PMC3082452/",
  "author": "Sarah C Rogan, Bryan L Roth",
  "publishDate": "2011-06",
  "description": "A significant challenge for neuroscientists is to determine how both electrical and chemical signals affect the activity of cells and circuits and how the nervous system subsequently translates that activity into behavior. Remote, bidirectional manipulation of those signals with high spatiotemporal precision is an ideal approach to addressing that challenge"
},
{
  "name": "Piezoelectric Nanomaterials Activated by Ultrasound: The Pathway from Discovery to Future Clinical Adoption",
  "url": "https://pmc.ncbi.nlm.nih.gov/articles/PMC8397402/",
  "author": "Andrea Cafarelli †,‡, Attilio Marino §, Lorenzo Vannozzi †,‡, Josep Puigmartí-Luis ∥,⊥, Salvador Pané #, Gianni Ciofani §, Leonardo Ricotti",
  "publishDate": "2021-06-21",
  "description": "This article discusses the use of ultrasonic sound as a mechanism to induce activation of nano-bots inside the human body"
},
{
  "name": "Wireless agents for brain recording and stimulation modalities",
  "url": "https://bioelecmed.biomedcentral.com/articles/10.1186/s42234-023-00122-5",
  "author": "Ilhan Bok, Adam Vareberg, Yash Gokhale, Suyash Bhatt, Emily Masterson, Jack Phillips, Tianxiang Zhu, Xiaoxuan Ren and Aviad Hai",
  "publishDate": "2023-09-20",
  "description": "An excellent article outlining all the different types of nano-tech inside most people today (without most of them realising)"
},
{
  "name": "The New Era of Neural Modulation Led by Smart Nanomaterials",
  "url": "https://pmc.ncbi.nlm.nih.gov/articles/PMC11586479/",
  "author": "Zhitao Hou",
  "publishDate": "2024-12-20",

"description": "This article explains the the induction Remote Neural Modulation with the help of various types of nano-particulate including

  • Piezoelectric
  • Magneto-Electric
  • Magneto-Thermal
  • Photothermal
  • Photoelectric
  • " }, { "name": "AI, Cyber S.A.T.A.N. and the Battle for Your Brain", "url": "https://www.academia.edu/103532154/AI_Cyber_S_A_T_A_N_and_the_Battle_for_Your_Brain", "author": "Nathan M . Wiley", "publishDate": "2023-06-1", "description": "An excellent Article that does a very good job of explaining key events and players in a conspiracy for eugenics and global mind-control and how we got to this point." } , { "name": "Project DEFUSE: Defusing the Threat of Bat-borne Coronaviruses", "url": "https://s3.documentcloud.org/documents/21066966/defuse-proposal.pdf", "author": "DARPA, EcoHealth Alliance, Peter Daszak", "publishDate": "2018-03-18", "description": "This 2018 document outlines a $14 million PROPOSAL from EcoHealth Alliance (Peter Daszak) to DARPA (A US Department of Defense agent) for provision of services to be carried out over 3.5 years, related to preemptive actions against an allegedly yet unknown threat of a coronavirus from BATS namely SARS-Cov.

    This includes experiments to be conducted by the Wuhan Institute of Virology, all related to SARS-COV including monitoring, constructing models to predicting cross species spill-over, isolating the virus, developing recombinant viruses with spike proteins from novel SARS-CoV (AKA Gain of function)." } ]