July 2, 2021
And What If? (1)
What if the “Great Reset” is about “BioDigital Convergence” (BioNTech)?
Today I bring to your attention the Subject which I believe ought to enter at once into everyone’s attention and to become at once the chief Subject of debate in society. Not only in Romanian society, but in human society as a whole.
It is the Subject that can elucidate the “Why?” of the global madness of the last year and a half.
It is perhaps the “missing link” between all the absolute novelties that have come upon us in this recent period: the pandemic, vaccination, the rapid rollout of 5G, the new normal… the Great Reset.
I know, however, that in launching this Subject for discussion, both I and those who will discuss this theme are taking major risks, the first of which is being discredited and made ridiculous through accusations ranging from conspiracism to madness. Yet the gravity and importance of the Subject demand the assumption of any risk, for what is at stake is the human being itself. Thus, after long discussions with my friend Radu Golban, who also supplied me with a large part of the documents, I decided to set aside any minimal prudence and to bring this Subject to your attention.
All the documents I shall put at your disposal, and which I ask you to read with the utmost attention, are either official documents or studies by institutions and universities of standing. I ask by this means my friends Vasile Astărăstoae, Răzvan Constantinescu, Adrian Severin, Gheorghe Iancu, Teodoru Ghiondea, Radu Iliescu — but above all the members of the Romanian Academy, as well as the fathers and brethren of the Holy Synod — to go through the materials below and to understand! And let the more courageous also give their expert opinion.
Here is how “BioDigital Convergence” is presented on an official site of the Canadian government (https://horizons.gc.ca/en/2020/02/11/exploring-biodigital-convergence/):
“In the coming years, biodigital technologies could be woven into our lives in the way that digital technologies are now. Biological and digital systems are converging, and could change the way we work, live, and even evolve as a species. More than a technological change, this biodigital convergence may transform the way we understand ourselves and cause us to redefine what we consider human or natural.
Biodigital convergence may have profound impacts on our economy, ecosystems and society. Being prepared to support it, while managing the risks with care and sensitivity, will shape how we navigate social and ethical considerations, as well as guide policy and governance conversations.”
BioDigital Convergence, however, has been spoken of openly for a very long time. Spoken of openly, but in closed circles. The most extensive study now made public dates from 2002 and may be found in the archive of President Obama at the White House (https://obamawhitehouse.archives.gov/sites/default/files/microsites/ostp/bioecon-%28%23%20023SUPP%29%20NSF-NBIC.pdf); it speaks of “Converging Technologies”, which it defines as the synergistic combination of four major “NBIC” (nano-bio-info-cogno) provinces of science and technology, each of which is currently progressing at a rapid rate: (a) nanoscience and nanotechnology; (b) biotechnology and biomedicine, including genetic engineering; (c) information technology, including advanced computing and communications; (d) cognitive science, including cognitive neuroscience.”
As early as 2002, at the White House, there was talk of “The Potential for Gene Therapy as a Validation / Delivery Platform”… does it sound familiar? There was talk of “Deep learning” (The knowledge taught will rest upon concepts offered by the nano, bio, information and cognitive sciences, and these concepts will be introduced early in the K-12 teaching process. High-quality science education will be made available to the majority of students), and even of the fact that “Visual communication could complement verbal communication, sometimes replacing spoken language when speed is a priority or enhancing speech when needed to exploit maximum mental capabilities (Horn 2002; Hewlett Packard 2002).”
All the materials below place us before an obvious fact: the Great Reset has already taken place. In 2020. And the year 2021 is the first year of the new normal, the first year of the implementation of “BioDigital Convergence” technologies.
That is why immediate and concerted action is necessary.
That is why a new category of rights must be introduced: “Neuronal rights” — the right to have your thoughts under your exclusive control; rights we shall have to fasten into the new form of #TheSovereigntyLaw as well.
I know, it seems madness. Until you read the official materials below.
Once you have gone through them, you will discover that we live in a reality beyond any dystopia ever imagined.
To convince you, I shall begin from today to give you quotations from the materials which you yourselves will be able to study.
I begin with the introductory part of the Document entitled “Converging Technologies for Improving Human Performance: NANOTECHNOLOGY, BIOTECHNOLOGY, INFORMATION TECHNOLOGY AND COGNITIVE SCIENCE” (“Converging Technologies
for Improving Human Performance NANOTECHNOLOGY, BIOTECHNOLOGY, INFORMATION TECHNOLOGY AND COGNITIVE SCIENCE”),
the 480-page document of which I was speaking, from the archive of President Obama — an introductory part which tells us, in brief, that this BioDigital Convergence is “the Solution to all the problems of humanity”.
Read! Read and understand!
Read:
“EXECUTIVE SUMMARY
M.C. Roco and W.S. Bainbridge
In the early decades of the 21st century, concentrated efforts can unify science
based on the unity of nature, thereby advancing the combination of nanotechnology, biotechnology, information technology and new technologies based upon cognitive science. With proper attention to ethical issues and societal needs, converging technologies could achieve a tremendous improvement in human abilities, societal outcomes, the nation’s productivity, and the quality of life. This is a broad, cross-cutting, emerging and timely opportunity of interest to individuals, society and humanity in the long term.
The phrase “converging technologies” refers to the synergistic combination of four major “NBIC” (nano-bio-info-cogno) provinces of science and technology, each of which is currently progressing at a rapid rate: (a) nanoscience and nanotechnology; (b) biotechnology and biomedicine, including genetic engineering; (c) information technology, including advanced computing and communications; (d) cognitive science, including cognitive neuroscience.
Timely and broad opportunity. The convergence of the diverse technologies rests upon material unity at the nanoscale and upon technology integration from that scale. The building blocks of matter that are fundamental to all sciences originate at the nanoscale. Revolutionary advances at the interfaces between previously separate fields of science and technology are ready to create key transforming tools for NBIC technologies. Developments in systems approaches, mathematics and computation together with NBIC allow us for the first time to understand the natural world, human society and scientific research as closely coupled complex hierarchical systems. At this moment in the evolution of technical achievement, improvement of human performance through the integration of technologies becomes possible.
Examples of rewards may include improved work efficiency and learning, enhanced individual sensory and cognitive capabilities, revolutionary changes in healthcare, improved both individual and group creativity, highly effective communication techniques including brain-to-brain interaction, perfecting human-machine interfaces including neuromorphic engineering, sustainable and “intelligent” environments including neuro-ergonomics, enhancing human capabilities for defence purposes, reaching sustainable development using NBIC tools, and ameliorating the physical and cognitive decline that is common to the aging mind.
Workshop participants foresee important breakthroughs in NBIC-related fields in the next 10 to 20 years. Fundamental research requires about the same interval to yield significant applications. Now is the time to anticipate research issues and to plan a research and development approach that will yield optimal results.
This report addresses key questions: What are the implications of the unification of the sciences and of converging technologies? How will current scientific knowledge and technologies evolve, and what emerging developments are envisaged? What visionary ideas can guide research to obtain broad benefits for humanity? What are the most urgent research and education issues? How can we develop a transforming national strategy to enhance individual capabilities and the resulting society as a whole? What should be done to obtain the best results over the next 10 to 20 years?
This report outlines several long-term implications of the convergence of technologies in key areas of human activity, including work, learning, aging, group interaction and human evolution. If we make the right decisions and investments today, many of these visions could be addressed within 20 years. Moving forward simultaneously along many of these paths could achieve an age of innovation and prosperity that would be a turning point in the evolution of human society. The right of each person to use new knowledge and technologies to attain personal goals, as well as the right to privacy and choice, lies at the foundation of the developments envisaged.
This report rests upon exploratory research already initiated in representative research organisations and upon the opinions of leading scientists and engineers using research data.
Strategies for transformation. It is essential to prepare key organisations and the activities of society for the changes made possible by the convergence of technologies. Activities that accelerate convergence in order to improve human performance must be enhanced, including focused research and development, increased technological synergy from the nanoscale, the development of interfaces between sciences and technologies, and a holistic approach to monitoring the resulting evolution of society. The aim is to offer individuals and groups a broad range of attractive choices, while preserving fundamental values such as privacy, safety and moral responsibility. Education and training at all levels should use converging science and technology and should prepare people to take advantage of them. We must experiment with innovative ideas in order to motivate multidisciplinary research and development, while finding ways of addressing ethical, legal and moral concerns. In many fields of application, such as medical technology and healthcare, it is necessary to accelerate the advances that would take advantage of converging technologies.
Towards the Unification of Science and Converging Technologies. The evolution of a hierarchical architecture will be needed for the integration of the natural and human sciences across several scales, dimensions and modalities of data. Half a millennium ago, the leaders of the Renaissance were masters of several fields at once. Today, however, specialisation has divided the arts and engineering, and no one can master more than a small fragment of human creativity. The sciences have reached a watershed at which they must unite if they are to continue advancing rapidly. The convergence of the sciences may initiate a new renaissance, embodying a holistic vision of technology founded upon transforming tools, the mathematics of complex systems and a unified understanding of cause and effect in the physical world from the nanoscale to the planetary scale.
Major themes. Scientific leaders and decision-makers from various fields prepared written statements for a workshop in December 2001, assessing the potential impact of NBIC technologies on the improvement of human capabilities at the microscopic, individual, group and societal levels. During the workshop, participants examined the vast potential in six different fields of relevance:
• The general potential of converging technologies. Representatives of government agencies and of the private sector set themselves the mission of exploring the potential of converging technologies and the research needs for improving human performance, as well as the general potential for revolutionary changes in the economy and in society. They identified the synergistic development of nano-, bio-, information- and cognition-based technologies as a remarkable opportunity at the interface and frontier of the sciences and engineering in the coming decades, and proposed new visions of what it is possible to achieve.
Expanding human cognition and communication. The highest priority was given to “The Human Cognome Project”, a multidisciplinary effort to understand the structure, functions and potential improvements of the human mind. Other priority fields are: personal sensory interfaces; enriched community through humanised technology; learning how to learn; and improved tools for creativity.
Improving human health and physical capabilities. Six priority fields were identified: nano-bio processors for research and the development of treatments, including those resulting from bioinformatics, genomics and proteomics; nanotechnology-based implants and regenerative biosystems as replacements for human organs or for monitoring physiological well-being; nanoscale devices and comparable discrete instruments for medical intervention; multi-modality platforms for increasing sensory capabilities, especially for the visually and hearing impaired; brain-to-brain and brain-to-machine interfaces; and virtual environments for training, design and forms of work unlimited by distance or by the physical scale on which it is carried out.
Improving group and societal outcomes. An NBIC system called “The Communicator” would remove the barriers to communication caused by physical disabilities, linguistic differences, geographical distance and variations in knowledge, thereby greatly increasing the effectiveness of cooperation in schools, corporations, government agencies and throughout the world. Other areas of focus are the improvement of group creativity and productivity, cognitive engineering and developments related to the networked society. A key priority will be revolutionary new products and services based on the integration of the four technologies from the nanoscale.
National security. Given the radical change of conflict in this new century, seven opportunities for strengthening national defence offered by technological convergence merit high priority: data linking and the anticipation of threats; uninhabited combat vehicles; education and training for warfighters; responses to chemical, biological, radiological and explosive threats; warfighting systems; non-drug treatments to enhance human performance; and applications of human-machine interfaces.
Unifying science and education. To meet the challenges of the future, science education needs a radical transformation from elementary school through postgraduate training. The convergence of previously separate scientific disciplines and engineering fields cannot take place without the emergence of new kinds of people who understand several fields in depth and can work intelligently to integrate them.
New programmes will be needed, new concepts to ensure intellectual coherence, and new forms of educational institution.
Beyond the 20-year time frame, or outside the present limits of high technology, convergence may have significant impacts in fields such as: work efficiency, the human body and mind throughout the life cycle, communication and education, mental health, aeronautics and space flight, food and agriculture, sustainable and intelligent environments, self-presentation and fashion, and the transformation of civilisation.
Summary of recommendations
The recommendations of this report are far-reaching and fundamental, urging the transformation of science, engineering and technology at their very roots. The new developments will be revolutionary and must be governed by respect for human well-being and dignity. This report sets objectives for societal and educational transformation. Drawing on the suggestions developed in the five topical groups and on the ideas from more than 50 individual contributions, the workshop recommended a national priority area in research and development on converging technologies focused on improving human performance. The opportunity is broad, enduring and of general interest.
a) Individuals. Scientists and engineers at every career level should acquire skills in at least one NBIC area and in the neighbouring disciplines, collaborate with colleagues from other fields and take risks in launching innovative projects that could advance NBIC.
b) Academia. Educational institutions at all levels should undertake major curricular and organisational reforms in order to restructure the teaching and research of science and engineering, so that previously separate disciplines may converge around common principles in order to train the technical workforce of the future.
c) The private sector. Manufacturing, biotechnology, information and medical-service companies will need to develop partnerships of unmatched scope in order to exploit the enormous opportunities of technological convergence, investing in production facilities based on entirely new principles, materials, devices and systems, with increased emphasis on human development.
d) Government. The federal government should establish a national research and development area on converging technologies focused on improving human performance. Government organisations at all levels should provide leadership in creating the NBIC infrastructure and in coordinating the work of other institutions, and must accelerate convergence by supporting new multidisciplinary scientific efforts, while sustaining the traditional disciplines that are essential to success. Ethical, legal, moral, economic, environmental, workforce-development and other social implications must be addressed from the outset, involving leading NBIC scientists and engineers, social scientists and a broad coalition of professional and civic organisations. Research on societal implications must be funded, and the risk of potential unwanted side effects must be monitored by a government organisation, in order to anticipate and take corrective measures. Tools should be developed to anticipate scenarios for the future development and technology of applications.
e) Professional societies. The scientific and engineering communities should create new means of interdisciplinary training and communication, reduce the barriers that prevent people from working across disciplines, aggressively highlight the opportunities of convergence at their conferences, develop links with a variety of other technical and medical organisations, and address the ethical questions raised by technological developments.
f) Other organisations. Non-governmental organisations representing potential groups of users should contribute to the design and testing of converging technologies, in order to maximise the benefits for their diverse constituencies. Private research foundations should invest in NBIC research in those fields consistent with their unique missions. The press should increase high-quality coverage of science and technology, on the basis of the new convergent paradigm, in order to inform citizens so that they may participate wisely in debates on ethical issues, such as unexpected effects upon inequality, policies concerning diversity and the implications of transforming human capabilities.
A great opportunity is created by the convergence of the sciences and technologies, beginning with integration from the nanoscale and having immense individual, societal and historical implications for human development. The participants in the meetings that prepared this report recommend a national priority research and development area on converging technologies focused on improving human performance. This would be an appropriate framework for a coherent, long-term strategy in research and education. Science and technology will increasingly dominate the world, as population, resource exploitation and the potential for social conflict grow. Therefore, the success of this priority area of converging technologies is essential to the future of humanity.
Documents:
https://obamawhitehouse.archives.gov/sites/default/files/microsites/ostp/bioecon-%28%23%20023SUPP%29%20NSF-NBIC.pdf
Here are the terms by which readers may search within the document:
“language”
“education” 63, 166, 432, “instant learning” 183
“virus” 126, 127, 128, 130, 213, 215, 334
“vaccination” 361, 449,
“linguistic” 442
“ecolog” 397, 413
What is important is to understand what NBICS (nano – bio – info – cogno – socio) means. I have listed only a few of the interesting pages.
Each must go deeper into the study according to his own interest.
Biodigital Philosophy, Technological Convergence, and Postdigital Knowledge Ecologies | SpringerLink
A term to search for: “5G” (written without a space)
Here is a relatively simple explanation:
Magnetogenetics: Your Brain on Magnets — Neurothetical
https://horizons.gc.ca/en/2020/02/11/exploring-biodigital-convergence/
http://www.buffalo.edu/news/releases/2011/09/12926.html
https://pubs.rsc.org/en/content/articlelanding/2017/SC/C7SC01462G#!divAbstract (vezi tabelul 2)
https://www.theguardian.com/science/neurophilosophy/2016/mar/24/magneto-remotely-controls-brain-and-behaviour
https://www.nature.com/articles/s41423-021-00643-6
https://www.sciencedirect.com/science/article/pii/S0006349519300190
https://www.nature.com/articles/s41598-018-27087-9
https://elifesciences.org/articles/27069
Optogenetik
https://www.nature.com/articles/s41591-021-01351-4
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5470037/
https://www.healio.com/news/ophthalmology/20201116/optogenetics-gene-therapy-may-improve-visual-acuity-in-advanced-retinitis-pigmentosa
https://www.semanticscholar.org/paper/Optogenetic-approaches-to-vision-restoration-Simunovic-Shen/ccd9255bf49ba74bf0853edfbe2f9d2521b7461f
https://www.sciencedirect.com/science/article/pii/S2095927316302407
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4397176/
https://www.bbc.com/news/science-environment-20513292
(PDF) Hacking a Brain for Contemptuous Interests: Ethical Risks of Advancing Neuroscience Techniques for Mind Control (researchgate.net)
A Possible Inductive Mechanism for Magnetogenetics | bioRxiv
A spike-ferritin nanoparticle vaccine induces robust innate immune activity and drives polyfunctional SARS-CoV-2-specific T cells | bioRxiv
Biodigital Philosophy, Technological Convergence, and Postdigital Knowledge Ecologies | SpringerLink
Can Magnetism Help Us Control the Brain, Remotely? - University at Buffalo
Engineered Ferritin for Magnetogenetic Manipulation of Proteins and Organelles Inside Living Cells - PubMed (nih.gov)
Ethical brain stimulation—Neuroethics of deep brain stimulation în research and clinical practice | Request PDF (researchgate.net)
Genetically engineered 'Magneto' protein remotely controls brain and behaviour | Science | The Guardian
Lipid Oxidation Induced by RF Waves and Mediated by Ferritin Iron Causes Activation of Ferritin-Tagged Ion Channels - ScienceDirect
Magnetic control of cellular processes using biofunctional nanoparticles - Chemical Science (RSC Publishing)
Magnetic Entropy as a Proposed Gating Mechanism for Magnetogenetic Ion Channels - ScienceDirectMagnetic Entropy as a Proposed Gating Mechanism for Magnetogenetic Ion Channels - ScienceDirect
Magnetic fields for modulating the nervous system: Physics Today: Vol 74, No 2 (scitation.org)
Magnetic nanoparticle therapy for Parkinson’s disease | Results În Brief | CORDIS | European Commission (europa.eu)
Magneto Protein Could Help Magnets Control Brain Circuitry | Inside Science
Magneto: remote control over neuronal activity and behaviour (uzh.ch)
Magnetogenetics Controls the Brain and Behavior of Zebrafish and Mice (epigenie.com)
Magnetogenetics: A New Technique for Controlling Mouse Behavior (conductscience.com)
Magnetogenetics: Your Brain on Magnets — Neurothetical
Magnetothermal genetic deep brain stimulation of motor behaviors în awake, freely moving mice | eLife (elifesciences.org)
Manipulating neurons with magnetogenetics | Nature Methods
Nanoparticle-based local translation reveals mRNA as a translation-coupled scaffold with anchoring function (nih.gov)
http://ndl.ethernet.edu.et/bitstream/123456789/75096/1/214.pdf
Optogenetics blog posts | Noldus
Sub-second multi-channel magnetic control of select neural circuits în behaving flies | bioRxiv
Viana_whole_thesis_ex_pub_mat.pdf (utas.edu.au)
Wireless control of cellular function by activation of a novel protein responsive to electromagnetic fields | Scientific Reports (nature.com)
post scriptum:
https://www.france24.com/en/live-news/20210504-mindblowing-advances-in-brain-tech-spur-push-for-neuro-rights
https://nri.ntc.columbia.edu/projects
https://thecanadian.news/2021/04/29/chile-wants-to-include-neuro-rights-or-rights-of-the-brain-in-its-constitution/
https://www.frontiersin.org/articles/10.3389/fnins.2019.00112/full
https://www.frontiersin.org/articles/10.3389/fnins.2019.00112/full
https://stop5g.cz/us/magneto-genetics-vaccines-artificial-protein-switching-neurons-senses-body-and-muscles-on-and-off-darpa-biomarkers-ferritin/
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