Data:academicpapers.json

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[ {

 "name": "At Least 55 Undeclared Chemical Elements Found in COVID-19 Vaccines from AstraZeneca, CanSino, Moderna, Pfizer, Sinopharm and Sputnik V, with Precise ICP-MS",
 "url": "https://pdfs.semanticscholar.org/b87a/c61fca29cea4d57e2cb915d5639539fa8d64.pdf",
 "author": "Lorena Diblasi PhD, Martín Monteverde MD, David Nonis PhD, Marcela Sangorrín PhD",
 "date": "2024-10-11",
 "description": "Laboratory testing of 13 vials from six COVID-19 vaccine brands (AstraZeneca, CanSino, Pfizer, Moderna, Sinopharm, and Sputnik V), using Inductively Coupled Plasma Mass Spectrometry (ICP-MS) detect 55 chemical elements - including heavy metals like chromium, arsenic, and nickel, plus 12 of 15 lanthanide elements - that don't appear on the manufacturers' declared ingredient lists. Speculation that the elements found relate to optogenetics and neural-interface material."

}, {

 "name": "The Moderna and Comirnaty B4-5 vaccines do not contain nitrogen and phosphorus (energy dispersive X-ray spectroscopy), so they do not contain mRNA. Nanotechnology in covid vaccines",
 "url": "https://www.academia.edu/124251340/The_Moderna_and_Comirnaty_B4_5_vaccines_do_not_contain_nitrogen_and_phosphorus_energy_dispersive_X_ray_spectroscopy_so_they_do_not_contain_mRNA_Nanotechnology_in_covid_vaccines",
 "author": "GEANINA HAGIMA",
 "date": "2023",
 "description": "The fact that covid vaccines contain nanoparticles obtained by nanotechnology is officially stated . As there are many uncertainties about the covid vaccines, including their composition, I have decided to carry out in October 2023 an analysis of the"

}, {

 "name": "Human Lethal Autonomous Weapons Systems: Human Lethal Engagement at the Direction of AI",
 "url": "https://papers.ssrn.com/sol3/papers.cfm?abstract_id=5221756",
 "author": "Sharp, Carolyn",
 "date": "2024-12-01",
 "description": "Humans may soon face the prospect of voluntarily (or not voluntarily) relinquishing their role as decision-maker to an AI system that possess the means, methods, and computational models to direct individuals' behaviors within a singular interbrain system. If this dynamic were applied in combat, a human would be acting in a drone-like state at the direction of AI to engage with an opponent; however, despite the human being central to the act, the human would not have made the lethality decision on an independent basis. Specifically, in this scenario, all human involvement and control (i.e., carrying out the act of engagement) would exist in a subordinate paradigm to the AI system."

}, {

 "name": "Metagenomics reveals a phylogenetically informed microbial signature associated with Morgellons disease",
 "url": "https://www.biorxiv.org/content/10.64898/2026.04.15.718803v1",
 "author": "Andrea Nicole Lambert, William Kindschuh",
 "date": "2026-01-01",
 "tags": "morgellons",
 "description": "Morgellons disease is a poorly understood and controversial condition characterized by cutaneous, often fibrous lesions, as well as variable systemic symptoms, such as fatigue, muscle and joint pain, and cognitive dysfunction. While there have been links suggested between Morgellons and known pathogens, most frequently Borrelia burgdorferi, the current medical consensus is that Morgellons disease is a form of delusional parasitosis, where patients falsely believe they are infected with parasites. Despite this controversy, there has not been a deep metagenomic exploration of Morgellons disease. Here, we use deep metagenomic sequencing and metagenomic analysis to characterize Morgellons lesions and unaffected skin from five individuals in a family cohort. We find that Morgellons lesions contain sequences poorly represented in existing databases, and demonstrate that lesions may harbor sequences with novel function. We further demonstrate that MAGs assembled from lesion samples vary taxonomically from MAGs assembled from unaffected skin, and that there is a phylogenetically informed microbial signature associated with Morgellons lesions."

}, {

 "name": "Treatment of Morgellons disease with doxycycline",
 "url": "https://onlinelibrary.wiley.com/doi/10.1002/ccr3.5148",
 "author": "Jeff F. Zhang, Keerthy Gopalakrishnan, Daniel J. Molloy",
 "date": "2021-12-01",
 "tags": "morgellons",
 "description": "Eruptive lesion with embedded fiber from patient's right thigh."

}, {

 "name": "Brain-to-brain communication: the possible role of brain electromagnetic fields (As a Potential Hypothesis)",
 "url": "https://pmc.ncbi.nlm.nih.gov/articles/PMC7937662/",
 "author": "Ehsan Hosseini",
 "date": "2021-03-01",
 "description": "Up now, the communication between brains of different humans or animals has been confirmed and confined by the sensory medium and motor facilities of body. Recently, direct brain-to-brain communication (DBBC) outside the conventional five senses has ..."

}, {

 "name": "Engineered bacteria-enabled biosensing: integration with artificial intelligence for enhanced diagnostic precision",
 "url": "https://pubs.rsc.org/sd/article/5/5/625/1233168/Engineered-bacteria-enabled-biosensing-integration?silentauthchecked=true",
 "author": "Jing, Qiuke, Liu, Hongmei, Wu, Decheng",
 "date": "2026-05-21",
 "tags": "morgellons",
 "description": "Engineered bacteria—microbial strains endowed with bespoke functionalities via genetic or protein engineering—represent a cornerstone of synthetic biology."

}, {

 "name": "Biosymbiotic haptic feedback - Sustained long term human machine interfaces",
 "url": "https://www.sciencedirect.com/science/article/abs/pii/S0956566324004378?via%3Dihub",
 "author": "Amanda Tyree a, Aman Bhatia a, Minsik Hong b, Jessica Hanna a, Kevin Albert Kasper a, Brandon Good a, Dania Perez a, Dema Nua Govalla b, Abigail Hunt a, Vasanth Sathishkumaraselvam a, Jordan Philip Hoffman a, Jerzy W. Rozenblit b c, Philipp Gutruf",
 "date": "2024-10-01",
 "description": "Haptic technology permeates diverse fields and is receiving renewed attention for VR and AR applications.Flexible haptic devices integrated into soft wearables typically face operational-time constraints requiring large batteries, wired connections, or frequent recharging, which restricts their use to short-duration or low-duty-cycle tasks and leaves chronic applications largely unexplored. The authors' solution is a'biosymbiotic' device architecture that uses wireless power transfer to enable continuous operation without user intervention, eliminating the need for large batteries and delivering long-term haptic feedback without requiring adhesive attachment to the skin. They demonstrate this approach in two chronic use cases — robotic surgery training and posture correction sustained over weeks of use, incorporating neural-network computation — arguing that this device class moves beyond conventional 'brick and strap' or epidermal haptic devices to enable new, imperceptible applications in therapeutic and assistive care."

}, {

 "name": "Stretchable piezoelectric biocrystal thin films - Nature Communications",
 "url": "https://www.nature.com/articles/s41467-023-42184-8",
 "author": "Li, Jun, Carlos, Corey, Zhou, Hao, Sui, Jiajie, Wang, Yikai, Silva-Pedraza, Zulmari, Yang, Fan, Dong, Yutao, Zhang, Ziyi, Hacker, Timothy A., Liu, Bo, Mao, Yanchao, Wang, Xudong",
 "date": "2023-10-17",
 "description": "Stretchability is an essential property for wearable devices to match varying strains when interfacing with soft tissues or organs. While piezoelectricity has broad application potentials as tactile sensors, artificial skins, or nanogenerators, enabling tissue-comparable stretchability is a main roadblock due to the intrinsic rigidity and hardness of the crystalline phase. Here, an amino acid-based piezoelectric biocrystal thin film that offers tissue-compatible omnidirectional stretchability with unimpaired piezoelectricity is reported. The stretchability was enabled by a truss-like microstructure that was self-assembled under controlled molecule-solvent interaction and interface tension. Through the open and close of truss meshes, this large scale biocrystal microstructure was able to endure up to 40% tensile strain along different directions while retained both structural integrity and piezoelectric performance. Built on this structure, a tissue-compatible stretchable piezoelectric nanogenerator was developed, which could conform to various tissue surfaces, and exhibited stable functions under multidimensional large strains. In this work, we presented a promising solution that integrates piezoelectricity, stretchability and biocompatibility in one material system, a critical step toward tissue-compatible biomedical devices. Developing piezoelectric biocrystals that are stretchable while maintaining structure and stable piezoelectricity is challenging. Here, Li et al. report an amino acid-based piezoelectric biocrystal with omnidirectional stretchability enabled by a truss-like network, for wearable and implantable devices."

}, {

 "name": "Directly wireless communication of human minds via mind-controlled programming metasurface - Light: Science & Applications",
 "url": "https://www.nature.com/articles/s41377-022-00831-7",
 "author": "Luo, Xiangang",
 "date": "2022-06-16",
 "description": "An concept of electromagnetic brain-computer-metasurface (EBCM), and remotely mindcontrolled metasurface (RMCM) via brainwaves is reported in eLight. Rather than DC voltage from power supply or AC voltages from signal generators, such metasurfaces are controlled by brainwaves collected in real time and can transmit information wirelessly between human brains. Such platforms can lead to a promising approach for the service of disabled people."

}, {

 "name": "Chemtrails are Not Contrails: Radiometric Evidence",
 "url": "https://journaljgeesi.com/index.php/JGEESI/article/view/476",
 "author": "J. Marvin Herndon, Raymond D. Hoisington, Mark Whiteside",
 "date": "Unknown",
 "description": "Radiometric solar irradiance spectra data that included the transit of a typical tropospheric aerosol trail between radiometer-sensor and the solar disc showed significant absorption during    the transit period. The during-transit absorption is wholly inconsistent with the almost negligible adsorption by ice, but is wholly consistent with absorption by aerosolize particulates, including coal fly ash. This result is consistent with other aerosol-trail physical phenomena observations."

}, {

 "name": "Brain-to-brain communication: the possible role of brain electromagnetic fields (As a Potential Hypothesis)",
 "url": "https://pmc.ncbi.nlm.nih.gov/articles/PMC7937662/",
 "author": "Ehsan Hosseini",
 "date": "2021-03-01",
 "description": "Up now, the communication between brains of different humans or animals has been confirmed and confined by the sensory medium and motor facilities of body. Recently, direct brain-to-brain communication (DBBC) outside the conventional five senses has ..."

}, {

 "name": "Fe3O4 Nanoparticles: Structures, Synthesis, Magnetic Properties, Surface Functionalization, and Emerging Applications",
 "url": "https://pmc.ncbi.nlm.nih.gov/articles/PMC9285867/",
 "author": "Minh Dang Nguyen, Hung-Vu Tran, Shoujun Xu, T Randall Lee",
 "date": "2021-11-29",
 "description": "Magnetite (Fe3O4) nanoparticles (NPs) are attractive nanomaterials in the field of material science, chemistry, and physics because of their valuable properties, such as soft ferromagnetism, half-metallicity, and biocompatibility. Various structures ..."

}, {

 "name": "Superparamagnetic iron oxide nanoparticles: magnetic nanoplatforms as drug carriers",
 "url": "https://pmc.ncbi.nlm.nih.gov/articles/PMC3405876/",
 "author": "Wahajuddin, Sumit Arora",
 "date": "2012-07-06",
 "description": "A targeted drug delivery system is the need of the hour. Guiding magnetic iron oxide nanoparticles with the help of an external magnetic field to its target is the principle behind the development of superparamagnetic iron oxide nanoparticles ..."

}, {

 "name": "The war inside your mind: unprotected brain battlefields and neuro-vulnerability",
 "url": "https://www.academia.edu/2837-4010/2/1/10.20935/AcadBiol6156",
 "author": "Robert McCreight",
 "date": "2024-02-06",
 "description": "The 21st century featured explosive discoveries, inventions, and finely crafted technologies where the vaguely dangerous and ambiguous mix of genomics, neuroscience, nanotech, robotics, cyber, and other advanced scientific ventures leads to unknown"

}, {

 "name": "Surface modification of nano-Fe 3 O 4 with EDTA and its use in H 2 O 2  activation for removing organic pollutants",
 "url": "https://pubs.rsc.org/en/content/articlehtml/2012/cy/c1cy00260k",
 "author": "Mingqiong Wang, Nan Wang, Heqing Tang, Meijuan Cao, Yuanbin She, Lihua Zhu",
 "date": "2012-10-20",
 "description": "The effect of EDTA on the H2O2 activation ability of Fe3O4 nanoparticles was investigated for removing organic pollutants. Regular Fe3O4 nanoparticles were observed to have moderate catalytic activity, which was not suitable for the degradation of various organic pollutants. The addition of EDTA enhanced the activation of H2O2 on the surface of Fe3O4 nanoparticles, thereby accelerating the formation of reactive oxygen species and increasing the degradation rates of pentachlorophenol, sulfamonomethoxine, and Rhodamine B by 84.4, 48.3, and 17.5 times, respectively, at pH 5.0 and 40 °C. Based on spectroscopic and density functional theory studies, adsorption mechanisms for H2O2 and EDTA on the surface of Fe3O4 nanoparticles were proposed. It was clarified that the enhancing effect of EDTA was attributed to an appreciable improvement of Fe3+/Fe2+ recycling on the surface of Fe3O4 nanoparticles, and to the simultaneous degradation of EDTA and target pollutants."

}, {

 "name": "Design and Performance Evaluation of a Sub-6 GHz Multi-Port Coupled Antenna for 5G NR Mobile Applications",
 "url": "https://www.mdpi.com/2076-3417/15/14/7804?utm_source=chatgpt.com",
 "author": "Yoon, Cheol, Lee, Yunsub, Seong, Wonmo, Kim, Woosu",
 "date": "2025-01-01",
 "description": "This paper describes a compact multi-port sub-6 GHz multiple-input multiple-output (MIMO) antenna system tailored for 5G NR mobile terminals operating in the n77 (3.3–4.2 GHz), n78 (3.3–3.8 GHz), and n79 (4.4–5.0 GHz) frequency bands. The proposed design leverages a shared coupling approach that exploits the smartphone metal frame as the radiating element, facilitating efficient integration within the spatial constraints of modern mobile devices. A two-stage method is used to mitigate the mutual coupling and correlation issues typically encountered when designing compact MIMO configurations. Initially, a four-port structure is used to evaluate broadband impedance and spatial feasibility. Based on the observed limitations in terms of isolation and the envelope correlation coefficient (ECC), the final configuration was reconfigured as an optimized two-port layout with a refined coupling geometry and effective current path control. The fabricated two-port prototype exhibited a measured voltage standing wave ratio below 3:1 across the n78 band on both ports, with the isolation levels attaining –12.4 dB and ECCs below 0.12. The radiation efficiency exceeded −6 dB across the operational band, and the radiation patterns were stable at 3.3, 3.5, and 3.8 GHz, confirming that the system was appropriate for MIMO deployment. The antenna supports asymmetric per-port efficiency targets ranging from −4.5 to −10 dB. These are the realistic layout constraints of commercial smartphones. In summary, this study shows that a metal frame integrated two-port MIMO antenna enables wideband sub-6 GHz operation by meeting the key impedance and system-level performance requirements. Our method can be used to develop a scalable platform assisting future multi-band antenna integration in mass-market 5G smartphones."

}, {

 "name": "Microwave radiofrequencies, 5G, 6G, graphene nanomaterials: Technologies used in neurological warfare",
 "url": "https://www.researchgate.net/publication/386271033_Microwave_radiofrequencies_5G_6G_graphene_nanomaterials_Technologies_used_in_neurological_warfare",
 "author": "Fabien Deruelle",
 "date": "2024-11-29",
 "tags": "5g, 6g, graphene, neuroweapons, microwave, neurological warfare, bioeffects",
 "description": "A peer-reviewed analysis, declared free of conflicts of interest, examining the intersection of microwave radiofrequencies, 5G and 6G telecommunications infrastructure, and graphene nanomaterials as technologies with documented applicability to neurological warfare. Drawing on the independent scientific literature, the paper argues that biological effects occur even below the exposure limits defined by the International Commission on Non-Ionizing Radiation Protection (ICNIRP), and situates these technologies within a broader framework of non-consensual neurological influence at population scale."

}, {

 "name": "On-chip coronavirus shape antenna for wide band applications in terahertz band",
 "url": "https://pmc.ncbi.nlm.nih.gov/articles/PMC9807093/",
 "author": "Sina Kiani, Pejman Rezaei, Mina Fakhr",
 "date": "2023-01-02",
 "description": "In this paper, a novel compact planar coronavirus antenna is proposed for wide band applications. In the design of this antenna, the idea of the radiating part has been taken from the 3-D model of the coronavirus, which is fed by a 50 Ω coplanar ..."

}, {

 "name": "Nano‐rectenna powered body‐centric nano‐networks in the terahertz band",
 "url": "https://ietresearch.onlinelibrary.wiley.com/doi/full/10.1049/htl.2017.0034",
 "author": "Zhichao Rong, Mark S. Leeson, Matthew D. Higgins, Yi Lu",
 "date": "2018-08-01",
 "description": "A wireless body-centric nano-network consists of various nano-sized sensors with the purpose of healthcare application. One of the main challenges in the network is caused by the very limited power that can be stored in nano-batteries in comparison with the power required to drive the device for communications. Recently, novel rectifying antennas (rectennas) based on carbon nanotubes (CNTs), metal and graphene have been proposed. At the same time, research on simultaneous wireless information and power transfer (SWIPT) schemes has progressed apace. Body-centric nano-networks can overcome their energy bottleneck using these mechanisms. In this Letter, a nano-rectenna energy harvesting model is developed. The energy harvesting is realised by a nano-antenna and an ultra-high-speed rectifying diode combined as a nano-rectenna. This device can be used to power nanosensors using part of the terahertz (THz) information signal without any other system external energy source. The broadband properties of nano-rectennas enable them to generate direct current (DC) electricity from inputs with THz to optical frequencies. The authors calculate the output power generated by the nano-rectenna and compare this with the power required for nanosensors to communicate in the THz band. The calculation and analysis suggest that the nano-rectenna can be a viable approach to provide power for nanosensors in body-centric nano-networks. This tech is also used for ELECTRONIC HARASSMENT."

}, {

 "name": "Brain Recording, Mind-Reading, and Neurotechnology: Ethical Issues from Consumer Devices to Brain-Based Speech Decoding - Science and Engineering Ethics",
 "url": "https://link.springer.com/article/10.1007/s11948-020-00218-0",
 "author": "Rainey, Stephen, Martin, Stéphanie, Christen, Andy, Mégevand, Pierre, Fourneret, Eric",
 "date": "2020-08-01",
 "description": "Brain reading technologies are rapidly being developed in a number of neuroscience fields. These technologies can record, process, and decode neural signal"

}, {

 "name": "Neurowar is Here! - AD1164923.pdf",
 "url": "https://apps.dtic.mil/sti/trecms/pdf/AD1164923.pdf",
 "author": "Joshua D. Gramm and Brian A. Branagan",
 "date": "2021-12-01",
 "description": "Mysterious attacks on the human brain have begun plaguing U.S. diplomats and officials with increasing frequency, ranging from overseas diplomatic outposts to right here in the United States. Known in the media as Havana Syndrome, these attacks appear to be signaling a new form of warfare—one that is focused on enhancing, targeting, and weaponizing the human brain—neurowarfare. Indeed, the human brain is at the center of a biotechnological revolution currently underway. At the same time, great power competition has returned to the forefront of international relations, as China and Russia seek to contest America's global leadership. In an increasingly globalized and interconnected world, this contest is ultimately a battle of ideas and influence, with more value placed on information and non-lethal means to manipulate and control both adversaries and domestic populations alike. The battle for influence begins and ends in the human mind, where reality is perceived. The implications of these developments point to both a new form and domain of warfare centering on the human brain. By highlighting recent attacks targeting the brain and revealing research from the United States and its two main competitors—China and Russia—this thesis seeks to argue that neurowar is not just coming, but rather is already here and is likely to fundamentally alter conflict and warfare."

}, {

 "name": "Growing Evidence for Human Health Benefits of Boron",
 "url": "https://journals.sagepub.com/doi/10.1177/2156587211407638",
 "author": "Forrest H. Nielsen, Susan L. Meacham",
 "date": "2011-01-01",
 "description": "Growing evidence from a variety of experimental models shows that boron is a bioactive and beneficial (perhaps essential) element for humans. Reported beneficia..."

}, {

 "name": "When Dreaming Is Believing: The (Motivated) Interpretation of Dreams",
 "url": "https://www.apa.org/pubs/journals/releases/psp962249.pdf",
 "author": "Carey K. Morewedge, Michael I. Norton",
 "date": "2009-01-01",
 "description": "Explores if dreams are considered meaningful sources of information that may effect a persons future judgments and behaviors."

}, {

 "name": "Deep Tech Wireless Synthetic Telepathic Technology, Remote Neural Monitoring, Mind Controller, Voice to Skull (V2K), Neurotechnology and Wireless Direct Energy Weapon, Psychotronic Cyber Crime Technics",
 "url": "https://www.ijraset.com/best-journal/title-deep-tech-wireless-synthetic-telepathic-technology-remote-neural-monitoring-mind-controller-voice-to-skull-v-2-k-neurotechnology-and-wireless-direct-energy-weapon-psychotronic-cyber-crime-technics",
 "author": "Pradeep Hariom Ar",
 "date": "2024-04-01",
 "description": "A high level view of a covert criminal remote weapons system used against innocent civilians in order to induce synthetic madness and what looks like mental illness. Describes many of the elements commonly seen in those effected by these weapon systems. Discusses various techniques relating to these weapon systems."

}, {

 "name": "The Phenomenology of Group Stalking ('Gang-Stalking'): A Content Analysis of Subjective Experiences",
 "url": "https://pmc.ncbi.nlm.nih.gov/articles/PMC7178134/",
 "author": "Lorraine Sheridan, David V James, Jayden Roth",
 "date": "2020-04-06",
 "description": "Epidemiological data suggest that as many as 0.66% of adult women and 0.17% of adult men in the western world may suffer the subjective experience of being group-stalked ('gang stalked') at some point in their lives. Yet the gang stalking experience ..."

}, {

 "name": "Recent progress on peripheral neural interface technology towards bioelectronic medicine - Bioelectronic Medicine",
 "url": "https://bioelecmed.biomedcentral.com/articles/10.1186/s42234-020-00059-z",
 "author": "Cho, Youngjun, Park, Jaeu, Lee, Chengkuo, Lee, Sanghoon",
 "date": "2020-12-01",
 "description": "Modulation of the peripheral nervous system (PNS) has a great potential for therapeutic intervention as well as restore bodily functions. Recent interest has focused on autonomic nerves, as they regulate extensive functions implicated in organ physiology, chronic disease state and appear tractable to targeted modulation of discrete nerve units. Therapeutic interventions based on specific bioelectronic neuromodulation depend on reliable neural interface to stimulate and record autonomic nerves. Furthermore, the function of stimulation and recording requires energy which should be delivered to the interface. Due to the physiological and anatomical challenges of autonomic nerves, various forms of this active neural interface need to be developed to achieve next generation of neural interface for bioelectronic medicine. In this article, we present an overview of the state-of-the-art for peripheral neural interface technology in relation to autonomic nerves. Also, we reveal the current status of wireless neural interface for peripheral nerve applications. Recent studies of a novel concept of self-sustainable neural interface without battery and electronic components are presented. Finally, the recent results of non-invasive stimulation such as ultrasound and magnetic stimulation are covered and the perspective of the future research direction is provided."

}, {

 "name": "Recent advances in recording and modulation technologies for next-generation neural interfaces",
 "url": "https://www.researchgate.net/publication/356752251_Recent_Advances_in_Recording_and_Modulation_Technologies_for_Next-generation_Neural_Interfaces",
 "author": "Ji-Won Hong, Chanwoong Yoon, Kyunghyun Jo, Joon Hee Won, Seongjun Park",
 "date": "2021-12-17",
 "description": "Battery free Neural Monitoring and modulation technologies. HERE NOW..."

}, {

 "name": "Frontiers | Electrical stimulation mapping in the medial prefrontal cortex induced auditory hallucinations of episodic memory: A case report",
 "url": "https://www.frontiersin.org/journals/human-neuroscience/articles/10.3389/fnhum.2022.815232/full",
 "author": "Long, Qiting , Li, Wenjie , Zhang, Wei , Han, Biao , Chen, Qi , Shen, Lu , Liu, Xingzhou",
 "date": "2022-07-28",
 "description": "It has been well documented that the auditory system in the superior temporal cortex is responsible for processing basic auditory sound features, such as sound, pitch and volume. This study presents the ability to induce auditory hallucination through DBS."

}, {

 "name": "(PDF) Detection of Mental State from EEG Signal Data: An Investigation with Machine Learning Classifiers",
 "url": "https://www.researchgate.net/publication/359178243_Detection_of_Mental_State_from_EEG_Signal_Data_An_Investigation_with_Machine_Learning_Classifiers",
 "author": "Ahnaf Akif Rahman, Muntequa Imtiaz Siraji, Lamim Ibtisam Khalid, Fahim Faisal, Nchouwat Ndumgouo Ibrahim moubarak",
 "date": "2022-01-26",
 "description": "PDF | The mental state of a person is a combination of very complex neural activities which determine the current state of mind. It depends on a lot of... | I believe this technique could be used to measure the emotional state of a target in order to respond to it so as to give the impression of real people responding to the target.. It allows a remote system autonomous system to react to the mental state of target. For example if they are angry then the system might increase the attack to make them lose their temper more. If they are concentrating it might try to distract them etc...."

}, {

 "name": "Piezocatalytic property of PVDF/Graphene self-assembling piezoelectric membrane for environmental remediation",
 "url": "https://www.sciencedirect.com/science/article/abs/pii/S1385894724020564",
 "author": "Unknown",
 "date": "2024-05-01",
 "description": "Another reason to put more Graphene Oxide in the environment under the guise of environmental remediation.. I am sure it has nothing to do with filling people's brains with the crap for Rind Reading and Modulation. Or for filling peoples ears with it for V2k... In recent years, industrial pollution has become an inescapable global issue. The catalytic degradation processes driven by environmental sources, suc…"

}, {

 "name": "Tailoring the specific crosslinking sites of graphene oxide framework nanosheets for controlled nanofiltration of salts and dyes",
 "url": "https://www.sciencedirect.com/science/article/abs/pii/S0959652623004389",
 "author": "Hannah Faye M. Austria a, Januar Widakdo c, Owen Setiawan a, T.M. Subrahmanya a, Wei-Song Hung a, Chih-Feng Wang d, Chien-Chieh Hu a, Kueir-Rarn Lee b, Juin-Yih Lai a",
 "date": "2023-04-01",
 "description": "Graphene oxide (GO), appears to increasing in it's everyday uses.. This article explores using GO to filter water supplies of Salts and Dyes... Not sure if the GO is after this process or if the people are expected to drink and bathe this crap... "

}, {

 "name": "Advancements in biosensing of hormones: Recent progress and future trends",
 "url": "https://www.sciencedirect.com/science/article/abs/pii/S0165993624000827",
 "author": "Unknown",
 "date": "2024-04-01",
 "description": "Hormones play a crucial role as signaling molecules, produced by different glands in the body and transported through the bloodstream to target organs…"

}, {

 "name": "Nanotechnology and nanosensors in personalized healthcare: A comprehensive review",
 "url": "https://www.sciencedirect.com/science/article/pii/S2214180425000066",
 "author": "Unknown",
 "date": "2025-02-01",
 "description": "Healthcare is one of the most essential fields in providing accurate and fast medical care. With the advancement of technology, nanosensors have becom…"

}, {

 "name": "Advanced Piezoelectric Materials, Devices, and Systems for Orthopedic Medicine",
 "url": "https://advanced.onlinelibrary.wiley.com/doi/10.1002/advs.202410400",
 "author": "Jingkai Zhang, Chang Liu, Jun Li, Tao Yu, Jing Ruan, Fan Yang",
 "date": "2025-01-01",
 "description": "Harnessing the robust electromechanical coupling of piezoelectric materials, this review explores their applications in orthopedic medicine, inspired by collagen's natural piezoelectricity in bones. ..."

}, {

 "name": "Piezoelectric smart biomaterials for bone and cartilage tissue engineering - Inflammation and Regeneration",
 "url": "https://inflammregen.biomedcentral.com/articles/10.1186/s41232-018-0059-8",
 "author": "Jacob, Jaicy, More, Namdev, Kalia, Kiran, Kapusetti, Govinda",
 "date": "2018-12-01",
 "description": "Tissues like bone and cartilage are remodeled dynamically for their functional requirements by signaling pathways. The signals are controlled by the cells and extracellular matrix and transmitted through an electrical and chemical synapse. Scaffold-based tissue engineering therapies largely disturb the natural signaling pathways, due to their rigidity towards signal conduction, despite their therapeutic advantages. Thus, there is a high need of smart biomaterials, which can conveniently generate and transfer the bioelectric signals analogous to native tissues for appropriate physiological functions. Piezoelectric materials can generate electrical signals in response to the applied stress. Furthermore, they can stimulate the signaling pathways and thereby enhance the tissue regeneration at the impaired site. The piezoelectric scaffolds can act as sensitive mechanoelectrical transduction systems. Hence, it is applicable to the regions, where mechanical loads are predominant. The present review is mainly concentrated on the mechanism related to the electrical stimulation in a biological system and the different piezoelectric materials suitable for bone and cartilage tissue engineering."

}, {

 "name": "Association between COVID-19 Vaccination and Neuropsychiatric Conditions",
 "url": "https://www.preprints.org/frontend/manuscript/7dc7205bbd67a92d8954af45e21b4bfd/download_pub",
 "author": "Peter McCullough, Claire Rogers, Kirstin Cosgrove, Steven Hatfill, Peter Breggin, Drew Pinsky, Peter McCullough",
 "date": "2025-04-11",
 "description": "This study analyzed data from the CDC and FDA's VAERS database to compare neuropsychiatric side effects reported after COVID-19 vaccines with those reported after flu and other vaccines. COVID-19 vaccines were linked to much higher rates of cognitive issues (up to 118% higher), psychiatric symptoms (up to 115% higher), and events related to suicide or homicide (up to 80% higher) compared to flu shots. Similar patterns appeared when compared to all other vaccines. The findings suggest a strong safety signal and call for urgent review of the long-term mental health risks associated with COVID-19 vaccines."

}, {

 "name": "(PDF) Secret Societies: Intimations of Organization",
 "url": "https://www.researchgate.net/publication/282519587_Secret_Societies_Intimations_of_Organization",
 "author": "Martin Parker",
 "date": "2015-08-12",
 "description": "This paper uses the secret society to pose questions about the politics, epistemology and ontology of organizing."

}, {

 "name": "Neuromodulator regulation and emotions: insights from the crosstalk of cell signaling",
 "url": "https://pmc.ncbi.nlm.nih.gov/articles/PMC10954900/",
 "author": "Daisuke Tsuboi, Taku Nagai, Junichiro Yoshimoto, Kozo Kaibuchi",
 "date": "2024-03-07",
 "description": "The unraveling of the regulatory mechanisms that govern neuronal excitability is a major challenge for neuroscientists worldwide. Neurotransmitters play a critical role in maintaining the balance between excitatory and inhibitory activity in the ..."

}, {

 "name": "Psychosis following COVID-19 vaccination : Telangana Journal of Psychiatry",
 "url": "https://journals.lww.com/tjpy/fulltext/2022/08020/psychosis_following_covid_19_vaccination.12.aspx",
 "author": "Krishna, Javangula Swetha; Harshitha, Veeramachaneni; Endreddy, Ananda Reddy; Seshamma, V. Venkata",
 "date": "2022-12-01",
 "description": " in people, especially the neuropsychiatric manifestations. The present case report is of a 46-year-old single mother who completed graduation and working as a primary school teacher brought to our outpatient department with complaints of muttering to herself, decreased sleep and appetite, hearing the voice of her husband who died 15 years back, and being fearful after 3 days of receiving the second dose of Covishield vaccine. She got prescribed tablet risperidone 2 mg (bd) and tablet clonazepam 0.5 mg at night. In the absence of any other causative explanations, a temporal association is that the presentation could have been triggered as a result of complications relating to COVID-19 vaccination...."

}, {

 "name": "Exploring magneto-electric nanoparticles (MENPs): a platform for implanted deep brain stimulation",
 "url": "https://pmc.ncbi.nlm.nih.gov/articles/PMC9241387/",
 "author": "Małgorzata Kujawska, Ajeet Kaushik",
 "date": "2022-04-25",
 "description": "This article explores magneto-electric nanoparticles (MENPs) as a novel, wireless platform for deep brain stimulation (DBS). By converting external magnetic fields into localized electric signals, MENPs offer a minimally invasive method to modulate neural activity. The technology neuromodulation without the need for implanted electrodes or batteries."

}, {

 "name": "In Vivo Wireless Brain Stimulation via Non-invasive and Targeted Delivery of Magnetoelectric Nanoparticles",
 "url": "https://www.sciencedirect.com/science/article/pii/S1878747923007912",
 "author": "Unknown",
 "date": "2021-07-01",
 "description": "Wireless and precise stimulation of deep brain structures could have important applications to study intact brain circuits and treat neurological disorders using magnetoelectro nanoparticles (MENs). This is allows remote neuromodulation ([RNM])"

}, {

 "name": "Intracellular detection and communication of a wireless chip in cell - Scientific Reports",
 "url": "https://www.nature.com/articles/s41598-021-85268-5?fromPaywallRec=false",
 "author": "Yang, Mimi X., Hu, Xiaolin, Akin, Demir, Poon, Ada, Wong, H.-S Philip",
 "date": "2021-03-16",
 "description": "Some observers have reported hexagonal structures in nanotech found inside and outside the body—could these be RFID devices like those described here? These miniature sensors can detect neuronal or synaptic activity and potentially write signals back to cells, enabling bidirectional communication. In a major step toward non-invasive, intracellular monitoring, researchers have demonstrated that a 25 μm wireless RFID can be internalized by a mammalian cell and still be externally identified. The device's electrical signals vary distinctly between different tags, allowing cell classification via non-invasive readout."

}, {

 "name": "Separating nano graphene oxide from the residual strong-acid filtrate of the modified Hummers method with alkaline solution",
 "url": "https://www.sciencedirect.com/science/article/abs/pii/S0169433214028360#preview-section-abstract",
 "author": "Unknown",
 "date": "2015-02-28",
 "description": "Graphene Oxide (GO) can be hidden in acids as they often prevent building or clumping. This allows GO to be hidden in liquids that might even appear totally clear. Adding an alkaline can cause GO to clump, revealing it...."

}, {

 "name": "DARPA's N3: The Future of Non-Surgical Brain Interfaces - Institute for Biodefense Research",
 "url": "https://biodefenseresearch.org/darpas-n3-the-future-of-non-surgical-brain-interfaces/",
 "author": "James Giordano",
 "date": "2024-10-30",
 "description": "DARPA's groundbreaking N3 project: non-surgical brain-computer interfaces using nanomaterials, and the ethical challenges they present."

}, {

 "name": "3D imaging system based on FMCW millimeter wave radar",
 "url": "https://ieeexplore.ieee.org/document/1572565",
 "author": "D. Korneev; L. Bogdanov; A. Nalivkin; S. Berezin",
 "date": "2005-09-23",
 "description": "3D radar imaging systems are highly requested for use in guidance system for aircraft landing and shipping navigation. These systems usually work in difficult weather conditions such as fog, snow, dust. Use of 3-mm wavelength FMCW radar allows getting images at distances up to 1000m with high spatial resolution."

}, {

 "name": "Multiview three-dimensional reconstruction by millimetre-wave portable camera - Scientific Reports",
 "url": "https://www.nature.com/articles/s41598-017-06475-7",
 "author": "Laviada, Jaime, Arboleya-Arboleya, Ana, Álvarez, Yuri, González-Valdés, Borja, Las-Heras, Fernando",
 "date": "2017-07-25",
 "description": "5G/6G Millimetre-wave imaging is a powerful non-destructive inspection technique which has become widely used in areas such as through-the-wall imaging or concealed weapon detection. Nevertheless, current systems are usually limited to either a single view point providing a limited 3D millimeter-wave model or a multiview relying on the accurate movement of a robot arm through precise positions resulting in very bulky systems. In this paper, we present a set of techniques to achieve a multiview millimetre-wave scanner. The aperture of the scanner is kept below 16 cm so it can be portable and, consequently, multiview can be achieved by simple hand movements. In addition, optical images are also acquired with a two-fold purpose: i) building a complementary 3D-model by employing Structure from Movement (SfM) techniques; ii) estimating the scanner position and poses. The proposed technology is illustrated for people screening, proving the capacity of the system to detect hidden weapons."

}, {

 "name": "Smart Dust: Communicating with a Cubic-Millimeter Computer",
 "url": "https://resenv.media.mit.edu/classarchive/MAS961/readings/SmartDust.pdf",
 "author": "B. Warneke, M. Last, Brian Liebowitz, K. Pister, K. Pister",
 "date": "2001-01-01",
 "description": "The Smart Dust project 2 is exploring whether an autonomous sensing, computing, and communication system can be packed into a cubic-millimeter mote (a small particle or speck) to form the basis of integrated, massively distributed sensor networks. Decreasing computing device size, increased connectivity, and enhanced interaction with the physical world have characterized computing's history."

}, {

 "name": "Creation of Conductive Graphene Materials by Bacterial Reduction Using Shewanella Oneidensis",
 "url": "https://chemistry-europe.onlinelibrary.wiley.com/doi/10.1002/open.201900186",
 "author": "Benjamin A. E. Lehner, Vera A. E. C. Janssen, Ewa M. Spiesz, Dominik Benz, Stan J. J. Brouns, Anne S. Meyer, Herre S. J. van der Zant",
 "date": "2019-07-01",
 "description": "Bacteria at work! The two-dimensional material graphene has outstanding properties. Microbially-produced graphene demonstrates increased conductance and a high surface-area-to-thickness ratio, making it well-suited to a number of different applications."

}, {

 "name": "Shewanella infection in humans: Epidemiology, clinical features and pathogenicity",
 "url": "https://pmc.ncbi.nlm.nih.gov/articles/PMC9481105/",
 "author": "Keyi Yu, Zhenzhou Huang, Yue Xiao, Duochun Wang",
 "date": "2022-09-05",
 "description": "The genus Shewanella consists of Gram-negative proteobacteria that are ubiquitously distributed in environment. As the members of this genus have rapidly increased within the past decade, several species have become emerging pathogens worldwide. Some have suggested it is being integrated with Graphene Oxide to allow infection of the people with a conductive layer over peoples skin and internally that facilitates electronic harassment attacks via EMF. This is the nature of the SCUM FUNGAS Establishment in their push for control over the people!"

}, {

 "name": "Remote Control of Neuronal Signaling",
 "url": "https://pmc.ncbi.nlm.nih.gov/articles/PMC3082452/",
 "author": "Sarah C Rogan, Bryan L Roth",
 "date": "2011-06-01",
 "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": "Synthetic Aperture Radar Doppler Tomography Reveals Details of Undiscovered High-Resolution Internal Structure of the Great Pyramid of Giza",
 "url": "https://www.mdpi.com/2072-4292/14/20/5231",
 "author": "Biondi, Filippo, Malanga, Corrado",
 "date": "2022-01-01",
 "description": "An imaging method based on the analysis of micro-movements on the Khnum-Khufu Pyramid, which are usually generated by background seismic waves. High-resolution full 3D tomographic imaging of the pyramid's interior and subsurface was achieved. Khnum-Khufu becomes transparent when observed in the micro-movement domain. Based on this novelty, we have completely reconstructed internal objects, observing and measuring structures that have never been discovered before. The experimental results are estimated by processing series of SAR images from the second-generation Italian COSMO-SkyMed satellite system, demonstrating the effectiveness of the proposed method."

}, {

 "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",
 "date": "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. This is especially useful in applications such as Neural Modulation where an electrical charge can be induced inside the brain in response to an ultrasonic frequency being activated outside the head."

}, {

 "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",
 "date": "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": "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",
 "date": "2023-06-01",
 "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": "Cellphone remote intelligent neuroregulation with self-powered piezoelectric wireless brain probe",
 "url": "https://www.sciencedirect.com/science/article/abs/pii/S2211285522011831",
 "author": "Hongye Guan a, Yong Tang b, Zhihe Long c, Rui Lin a, Shan Liang a, Fuqiang Zhu b, Tianyan Zhong a, Yaming Zhang a, Yaowei Fan a, Zhen Wang b, Chuang Shi d, Wanli Ma e, Sheng Sun e, Meihua Chen f, Lili Xing a, Yan Zhang a, Xinyu Xue a, Yang Zhan b",
 "date": "2023-02-01",
 "description": "Outlines a system powered acoustically using piezoelectric nano generators and allowing monitoring and modulation of the subject."

}, {

 "name": "A Review on Graphene-Based Nano-Electromechanical Resonators: Fabrication, Performance, and Applications",
 "url": "https://pmc.ncbi.nlm.nih.gov/articles/PMC8880531/",
 "author": "Yang Xiao 1,†, Fang Luo 1,2,†, Yuchen Zhang 1, Feng Hu 1, Mengjian Zhu 1,2,*, Shiqiao Qin 1,*",
 "date": "2022-01-29",
 "description": "Outlines production of nano sized resonators for measuring mass, pressure and various other sensor related measurements. These can be used to remotely (via Radio Frequency) measure body metrics such as blood pressure, heart etc."

}, {

 "name": "Morgellons disease: a filamentous borrelial dermatitis",
 "url": "https://pmc.ncbi.nlm.nih.gov/articles/PMC5072536/",
 "author": "Marianne J Middelveen, Raphael B Stricker",
 "date": "2016-10-14",
 "description": "An article confirming that Morgellons disease is NOT a delusional disorder that many journals make it out to be. But this article makes an association with Lyme Disease which I believe is a red herring. There are many with the condition that do not have Lyme Disease. This is a partial truth article. The fibers are bio-tech based. Not organic!"

}, {

 "name": "Classification and Staging of Morgellons Disease: Lessons from Syphilis",
 "url": "https://pmc.ncbi.nlm.nih.gov/articles/PMC7012249/",
 "author": "Marianne J Middelveen, Roberto M Martinez, Melissa C Fesler, Eva Sapi, Jennie Burke, Jyotsna S Shah, Carsten Nicolaus, Raphael B Stricker",
 "date": "2016-10-14",
 "description": "An article confirming that Morgellons disease is NOT a delusional disorder that makes an association with Syphilis which I believe is a red herring. There are many with the condition that do not have Syphilis. This is a partial truth article that appears to want to confuse the matter further by introducing many possibilities so the truth is not found. This is bio-nano-tech. It's technology. Created and not organic."

}, {

 "name": "Using borax as a cross-linking agent in cellulose-based hydrogels - IOPscience",
 "url": "https://iopscience.iop.org/article/10.1088/1757-899X/600/1/012013",
 "author": "Farin Phoothong, Anyaporn Boonmahitthisud, Supachok Tanpichai",
 "date": "Unknown",
 "description": "Has BORAX been seeded into the TRUTHER community as a solution when in reality it is a means to improve the adhesion and strengthen HYDROGELS on the body to allow adhesion of NANOTECH \"under the skin\"? This article explores using borax as a cross-linking agent in cellulose-based hydrogels."

}, {

 "name": "Recent progress in self-healing polymers and hydrogels based on reversible dynamic B–O bonds: boronic/boronate esters, borax, and benzoxaborole",
 "url": "https://pubs.rsc.org/en/content/articlehtml/2021/ta/d1ta02308j",
 "author": "Seungwan Cho, Sung Yeon Hwang, Dongyeop X. Oh, Jeyoung Park",
 "date": "2021-05-17",
 "description": "Has BORAX been seeded into the TRUTHER community as a solution when in reality it is a means to improve the adhesion and strengthen HYDROGELS on the body to allow adhesion of NANOTECH \"under the skin\"?"

}, {

 "name": "Self-healing polymers via supramolecular forces - PubMed",
 "url": "https://pubmed.ncbi.nlm.nih.gov/23315930/",
 "author": "Unknown",
 "date": "Unknown",
 "description": "As polymers and polymeric materials are \"the\" smart invention and technological driving force of the 20th century, the quest for self-healing or self-repairing polymers is strong. The concept of supramolecular self-healing materials relies on the use of noncovalent, transient bonds to generate netwo …"

}, {

 "name": "Fluorescent nanoparticles present in Coca-Cola and Pepsi-Cola: physiochemical properties, cytotoxicity, biodistribution and digestion studies - PubMed",
 "url": "https://pubmed.ncbi.nlm.nih.gov/29261040/",
 "author": "Shen Li, Chengkun Jiang, Haitao Wang, Shuang Cong, Mingqian Tan",
 "date": "2017-12-20",
 "description": "Foodborne nanoparticles (NPs) have drawn great attention due to human health concerns. This study reports the detection of the presence of fluorescent NPs, about 5 nm, in two of the most popular beverages, Coca-Cola (Coke) and Pepsi-Cola (Pepsi). The NPs contain H, C and O, three elements with a tun …"

}, {

 "name": "Graphene Nanomaterials-Based Radio-Frequency/Microwave Biosensors for Biomaterials Detection",
 "url": "https://pmc.ncbi.nlm.nih.gov/articles/PMC6470802/#sec5-materials-12-00952",
 "author": "Hee-Jo Lee, Jong-Gwan Yook",
 "date": "2019-03-21",
 "description": "In this paper, the advances in radio-frequency (RF)/microwave biosensors based on graphene nanomaterials including graphene, graphene oxide (GO), and reduced graphene oxide (rGO) are reviewed. From a few frontier studies, recently developed graphene ..."

}, {

 "name": "Melatonin: A Potential Shield against Electromagnetic Waves",
 "url": "https://pmc.ncbi.nlm.nih.gov/articles/PMC9608227/",
 "author": "Maya Jammoul, Nada Lawand",
 "date": "2022-03-04",
 "description": "Melatonin, a vital hormone synthesized by the pineal gland, has been implicated in various physiological functions and circadian rhythm regulation. Its role in the protection against the non-ionizing electromagnetic field (EMF), known to disrupt the ..."

}, {

 "name": "The New Era of Neural Modulation Led by Smart Nanomaterials",
 "url": "https://pmc.ncbi.nlm.nih.gov/articles/PMC11586479/",
 "author": "Zhitao Hou",
 "date": "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
  • ", "tags": "rnm, neuralmodulation, neurology, nano, nanotech" }, { "name": "Biophysical characterization of low-frequency ultrasound interaction with dental pulp stem cells", "url": "https://pmc.ncbi.nlm.nih.gov/articles/PMC4265945/", "author": "Sleiman R Ghorayeb, Upen S Patel, A Damien Walmsley, Ben A Scheven", "date": "2013-08-01", "description": "Low-intensity ultrasound is considered an effective non-invasive therapy to stimulate hard tissue repair, in particular to accelerate delayed non-union bone fracture healing. More recently, ultrasound has been proposed as a therapeutic tool to ...", "tags": "frequency, healing, health, dental" } ]