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BRAIN COMPUTER INTERFACE NANOTECHNOLOGY THROUGH mRNA VACCINES. Since Moderna called their mRNA jabs an "operating system" designed to program humans, people were confused and nervous. And they should be. The type of tech that these pharmaceutical companies are developing along with other leading companies like the Pentagon's DARPA and many other leading researchers and tech innovators with self-assembling and other types of nanotechnology, developing sensors, electrodes, and BMI devices to enter the body through mRNA vaccines and other methods to have control, monitor, induce behavior, emotions, functions, even read and write to the brain, etc., are literally terrifying. This isn't something that's coming within the next 5 to 10 years. It's already here. Brain-Computer Interface (BCI), as a cutting-edge technology, refers to the establishment of a direct communication channel between the brain and peripheral electronic devices to realize the efficient information exchange between people and machines. It in a narrow sense refers to the establishment between the brain and the external environment does not depend on the peripheral nerve and muscle new communication and control channel, by measuring and collecting the central nervous system activity, and its directly translated can be recognized by external artificial equipment signal or instruction, so as to realize the direct communication and control of the brain and external equipment. Generalized brain computer interface includes input BCI, output BCI and interactive BCI, the input BCI is by external equipment or machine to the brain input electrical, magnetic, acoustic and optical stimulation of brain-computer interface system, output BCI is the signal of the brain into the external equipment control instructions, interactive BCI is by feedback nerve output and input link connected to form a closed loop brain computer interface system. Nanotechnology plays a key role in the innovative applications of neuroscience and brain computer interfaces. By taking advantage of the unique properties of ministerial, such as high conductivity, biocompatibility and regulation, scientists are able to design more sophisticated and efficient brain-computer interface devices. These devices can not only realize the precise recording and stimulation of nerve signals, but also promote the repair and regeneration of nerve tissue, providing new tools and means for neuroscience research and clinical application. Therefore, the innovative application of self-assembling, biodegradable, graphene, etc., nanotechnology in the interface between neuroscience and brain computer technology is gradually promoting the rapid development of this field, providing infinite possibilities for humans to explore the mysteries of the brain and improve the neural function. Brain-Computer Interfaces (BCIs) enable direct communication between the brain and external devices, but their performance heavily depends on the quality of the electrodes. Traditional materials, such as gold and platinum, offer high conductivity but often struggle with biocompatibility and can cause tissue damage due to their mechanical mismatch with neural tissue. While conductive polymers provide greater flexibility, they frequently fall short in electrical performance. Nanomaterials, including carbon nanotubes (CNTs) and graphene, are increasingly considered promising alternatives. These materials combine high conductivity with mechanical flexibility and offer potential improvements in biocompatibility, enhancing the capture and transmission of neural signals. Hybrid materials, which integrate conductive polymers with nanomaterials, have also shown potential by balancing flexibility and signal quality. This review examines recent advancements in nanomaterial-based BCI electrodes and focuses on how these new materials address the limitations of traditional electrodes. It also discusses emerging tools like metallic nanoparticles and nanowires, along with the ongoing challenges of biocompatibility, tissue integration, and ethical considerations. As nanotechnology continues to evolve, it has the potential to significantly enhance the functionality and longevity of BCIs, making them more effective in facilitating neural communication. Nanotechnology, as the frontier field of the development of science and technology in the 21st century, is gradually penetrating into the research of neuroscience and brain-computer interface, injecting new vitality and possibilities into this interdisciplinary subject. With the deepening of human cognition of the brain, neuroscience and brain-computer interface technology has increasingly become a bridge connecting the biological world and the digital world, aiming to interpret the brain information and realize human-computer interaction through advanced technological means, and then promote the innovation of medical treatment, rehabilitation, intelligent control and other fields. The introduction of nanotechnology provides a different perspective and means to solve the technical problems in the field of neuroscience and brain-computer interface. Antimalarial, with their unique structural characteristics, excellent photoelectric properties and excellent mechanical properties, show great potential in the application of neural interfaces. In structure, the small size effect of ministerial enables them to combine more closely with nerve cells to reduce tissue damage during implantation. In terms of photoelectric properties, the high electrical conductivity and tunable optical properties of ministerial enable the accurate recording and stimulation of nerve signals. In mechanical properties, the toughness and elasticity of ministerial ensure their stability and reliability in the long-term implantation process. These improvements in properties not only significantly enhance the biocompatibility of neural interfaces and reduce the risk of immune response, but also greatly improve the transmission efficiency and accuracy of neural signals, laying a solid foundation for the further progress of neuroscience and brain-computer interface technology. The main nanomaterials in the brain-computer interface is classified according to the organic nanomaterials in the composition, such as carbon nanotubes, graphite and nanoseconds, play an important role in neuroscience and brain-computer interfaces with their superior biocompatibility, high conductivity and lightweight properties. They need to be able to enhance electrode flexibility, improve signal recording quality and stimulation efficiency. Semiconductor ministerial, such as organic electrochemical transistors, have excellent ionic and electron conduction properties and can serve as an interactive interface between biology and electronics to achieve highly sensitive signal detection. As a typical spongy and wet material, hydrogel is widely studied and used because of its unique mechanical properties, biocompatibility and ionic conductivity. It can provide a good carrier for a variety of inorganic ministerial and build composites with better performance. There are also magnetic antiparticle, quantum dots and up conversion antiparticle, which play an important role in advanced imaging technologies and can realize the visualization of specific pathological markers or cellular processes, contributing to the early diagnosis and monitoring of neurodegenerative diseases. Although these technologies are great for people with disabilities or illnesses, just like many other technologies, it's already being weaponized as developments are already in the process with innovations and numerous methods of control and the monetization of certain aspects throughout this technology. This is a government's dream weapon and privacy will cease to exists along with your own thoughts. This is the world that is sadly already here and in major development for our society. The part that should scare everyone is that this type of technology and nanomaterial is already in some mRNA vaccines, in our food supply, and being sprayed on us, animals, and our food from above. Sadly, how much they've been lying to us. Let's just say it wouldn't surprise me if a large amount of people around the globe have some kind of self-assembling, nanotechnology inside them already. Especially the people who took the jabs during covid. I suggest to really do your own research before considering taking any vaccines or shots in general. The writing is on the wall, complete control is the goal, and it's already here.

The SCIF

25,975 Aufrufe • vor 1 Jahr

Announcing the BOOM DAO GRANT PROGRAM!📢🚨🚀 The BOOM Grant Program is designed to accelerate the expansion of the BOOM ecosystem and enhance the broader Internet Computer ecosystem by empowering game developers to create exceptional video games on the BOOM World Protocol. By offering grants, the program encourages developers to innovate and build engaging gaming experiences that integrate seamlessly with the BOOM Gaming Guild. Game developers who participate in the BOOM Grant Program have the opportunity to integrate quests from the BOOM Gaming Guild into their games. This integration not only enriches the BOOM game platform but also rewards gamers and developers. Additionally, by incorporating BOOM Gaming Guild quests, developers can tap into the extensive Gaming Guild userbase, potentially acquiring thousands of new users. This synergy creates powerful network effects that benefit both the BOOM ecosystem and the Internet Computer ecosystem at large. Grantees can also give back to BOOM DAO through future token launches or NFT launches. The program seeks to make building games on ICP more accessible and appealing by providing the necessary financial, tech, and marketing support to promising teams and individuals. Through this initiative, game developers are equipped with the resources they need to bring their visionary games to life, contributing to interconnected gaming community on the Internet Computer blockchain. Focus Areas for the Grants 👉 Building simple, fun, casual, and visually beautiful 3D minigames using the BOOM Minigame Template, which automatically integrates ICP login and quests in the BOOM Gaming Guild. 👉 Integrating the BOOM Unity Package into your existing Unity game, deploying it on ICP using WebGL, and creating quests in the BOOM Gaming Guild for it. 👉 All games must meet the requirements of having high-quality graphics, easy-to-learn gameplay, built in Unity, optimized for WebGL, and a focus on a crypto-native user base. 👉 Overly complex games (eg. Advanced Strategy games) or visually boring games (eg. 2D or cheap graphics) will be rejected. Grant Application Process A motion proposal must be made by the game development team or individual to the BOOM SNS DAO with a detailed breakdown of their funding tier and the milestones of their grant application. This is subject to the DAO voting for approval. We are currently offering three funding tiers, and ask you to tailor your application and scope of work accordingly: 👉 5,000 USD - Your work should be scoped according to a 1-2 month timeline. 👉 10,000 USD - Your work should be scoped according to a 2-3 month timeline. 👉 25,000 USD - Your work should be scoped according to a 3-4 month timeline. More than 1 game can be built during the process of a grant, in fact BOOM DAO encourages teams to build as many high-quality games as they can during a grant timeline. The more games that can be built during a grant, the more games that are growing the BOOM ecosystem. Each grant will consist of 4 milestones, with funding being distributed in 4 equal increments. Each milestone will be accountable to a motion proposal with a detailed progress update and links to any deliverables available to review. After each milestone has been reached and approved through the motion proposal, a transfer proposal can be made for ICP tokens from the treasury using the USD value on the day of distribution. Let's grow the ICP and BOOM DAO gaming ecosystem! 🎮🌏

BOOM DAO

12,041 Aufrufe • vor 2 Jahren

🚀 We're thrilled to introduce Orthrus 🧬🐕—a groundbreaking mature RNA foundation model designed to push the boundaries of RNA property prediction! 🔬 What is Orthrus? Orthrus is a Mamba-based RNA foundation model, pre-trained using a novel self-supervised contrastive learning objective with biologically inspired augmentations. It optimizes the similarity between splicing isoforms and orthologous transcripts, capturing functional and evolutionary relationships to enhance mature RNA property prediction accuracy. 📑 Preprint: 💻 Code: 🌐 Project Page: 📦 Model Weights: 🧠 Why Orthrus? Decoding the RNA regulatory code is key to understanding biology, but traditional experimental approaches are slow and costly. Existing genomic foundation models rely on techniques like masked language modeling or next-token prediction, which aren't fully aligned with the complexities of genomic data—leading to suboptimal results. 🌟 Orthrus Highlights: - Biologically-Informed Contrastive Learning 🧪: A novel contrastive learning objective designed specifically for genomics, maximizing similarity between splicing isoforms and orthologous transcripts across species. - Extensive Pre-training 📊: Trained on splicing annotations from 10 species and orthologous alignments from 400+ mammalian species (Zoonomia Project), with a focus on sequences of high functional importance. - Superior Representations🏅: Orthrus outperforms existing genomic models on 5 mRNA property prediction tasks, often surpassing supervised methods with just a simple linear transformation. - Efficiency in Low-Data Settings📉: Orthrus excels in low-data regimes, achieving state-of-the-art results with as few as 45 labeled examples for fine-tuning on RNA half-life prediction. Shoutout to the amazing leading authors Phil (Phil Fradkin) and Ian (Ian Shi)! Also the work is impossible without an outstanding collaboration by Karina (Karin(a) Isaev), Brendan (Brendan Frey) , Quaid (Quaid Morris), Leo J. Lee! Vector Institute University Health Network U of T Department of Computer Science Temerty Centre for AI in Medicine (T-CAIREM) Department of Laboratory Medicine & Pathobiology

Bo Wang

114,890 Aufrufe • vor 1 Jahr

DEEP STATE BIOLABS IN UKRAINE On the day Putin attacked Ukraine's biolabs, Zelensky ordered the destruction of state documents linked to US companies like Metabiota, where Hunter Biden was involved. On March 24, during Russia's military operation in Ukraine, Russia revealed on state media that Hunter Biden's investment fund financed the US military biological program. As Russian troops entered Ukraine, Kyiv ordered the "emergency destruction" of pathogens, including plague and anthrax, at US-funded labs near the Russian border. US intelligence dismissed Russia's claims of a US military bio-program, stating Ukraine's labs researched pathogens with public US funding. However, Jen Psaki called biolab reports Russian fake news on March 9. Hunter Biden's involvement in funding biolabs was not mentioned. In 2009, Hunter Biden co-founded Rosemont Seneca Technology Partners with Christopher Heinz, investing $500,000 in Metabiota, a San Francisco-based pathogen-research company. On March 17, the New York Times confirmed the authenticity of emails on Hunter Biden’s computer, revealing he introduced Metabiota to Burisma officials for a "science project" involving Ukrainian biolabs. Hunter Biden said, "I don’t think I made a mistake joining that board. I underestimated how it would be used against me," regarding his $50,000-a-month Burisma role during his father’s vice presidency. Metabiota worked with Black & Veatch, a US defense contractor tied to military intelligence, which built secure labs in Ukraine, per the Daily Mail. Emails show Metabiota’s vice-president Mary Guttieri wrote to Hunter Biden about geopolitical issues and leveraging their work to assert Ukraine’s independence from Russia. In 2010, Black & Veatch was commissioned by the US DoD’s Threat Reduction Agency to build a lab in Odessa to enhance Ukraine’s bioterrorism and epidemic response systems. The US Embassy in Ukraine stated its International Counterproliferation Program trains Ukrainian forces in WMD and dual-use item identification, focusing on bio-terror and WMD investigations. Victoria Nuland admitted on March 8 to biological research labs in Ukraine, noting US efforts to prevent their capture by Russia. A 2012 US National Academy of Sciences report said some Ukrainian labs were upgraded to handle dangerous pathogens like anthrax and cholera. Russia claimed evidence showed pathogens were transported to the US. The World Health Organization advised Ukraine to destroy high-threat pathogens to prevent potential spills. Putin could not allow such a threat at his border and had no choice but to launch a special mission of hitting strategic targets in Ukraine.

MrTruthBomb

15,985 Aufrufe • vor 11 Monaten

DARPA and the CIA's neurological electronic weapons are absolutely terrifying and are the biggest story that nobody is talking about. In the 1950s, the CIA launched Project MKUltra, a covert program aimed at developing techniques to manipulate mental states and brain functions for interrogation and psychological operations. Now there's MK Ultra 3.0. Following MK Ultra, attention shifted toward electromagnetic technologies, including extremely low frequency (ELF) and radio frequency (RF) waves, which can influence emotions and project voices into the human mind. The "Frey Effect," discovered in the 1960s, demonstrated that pulsed microwaves could produce audible effects or voices in a subject's head, also known as "voice-to-skull" (V2K). Declassified documents show the U.S. military and intelligence agencies explored and used this tech during the Gulf War in the 1990s. DARPA—established in 1958 to advance cutting-edge military technology—began funding projects that bridged neuroscience and electronics, laying the groundwork for brain-computer interfaces (BCIs). DARPA’s role expanded significantly in the 21st century with programs like the Next-Generation Nonsurgical Neurotechnology (N3) initiative, launched in 2018. N3 aims to develop non-invasive BCIs that allow soldiers to control drones or robots with their thoughts, using techniques like ultrasound, magnetic fields, and nanoparticles to interface with the brain. This builds on earlier DARPA efforts, such as the Revolutionizing Prosthetics program, which enabled thought-controlled artificial limbs. Concurrently, the Obama administration’s BRAIN Initiative, announced in 2013, sought to map the brain’s neural circuits and accelerate neurotechnology development. While framed as a scientific endeavor to treat neurological disorders, its overlap with DARPA funding—$225 million by 2015—imply heavy military applications, including behavior modification and thought decoding. The integration of ELF/RF frequencies with 5G and AI represents the latest frontier. 5G’s high-frequency millimeter waves and dense network of transmitters could, in theory, enhance the precision and range of electromagnetic signals targeting the brain. Paired with AI, which can analyze vast datasets of neural activity in real time, this technology enables remote behavior control and thought reading. DARPA’s N3 program, for instance, envisions two-way communication between brains and machines, potentially allowing external systems to interpret intentions or implant sensory feedback—like voices or emotions. Speculative claims suggest that military and intelligence agencies are weaponizing these tools to suppress fear in soldiers, influence adversaries’ decisions, or surveil thoughts. Today, these technologies raise profound ethical and practical questions. The line between enhancement and control blurs when AI-driven systems could override human autonomy. Reports of "targeted individuals" experiencing voice projection or emotional manipulation fuel speculation and aren't looking unrealistic after all. Arguments that the secrecy surrounding DARPA and CIA projects—echoing MKUltra’s hidden abuses—obscures the true extent of weaponization, while proponents frame advancements vital, for national security. The progression from MKUltra’s crude drug experiments to ELF/RF explorations, and now to DARPA’s AI-enhanced BCIs under the BRAIN Initiative reflects a trajectory toward increasingly sophisticated mind control capabilities. The addition of 5G’s infrastructure amplifies the potential for remote influence, suggesting a future where thoughts, emotions, and behaviors could be manipulated or monitored. While the military and intelligence agencies undeniably pursue these technologies for strategic advantage, the full scope of their operational use and the line between what the public believes is even possible is diminishing by the day now that these technologies and operations are fully functional. You were warned.

The SCIF

67,803 Aufrufe • vor 1 Jahr