Body Area Networks – Next Episode…

Conspiracy Revelation Archive: 25.7.2024


Body Area Networks – Next Episode…


Inter-Ban and Intra-Ban.

Conspiracy Revelation: Intra-Ban transmits your thoughts and intentions wirelessly (Synthtel) to your group or your current environment… as it seems… 2 events I noticed today that point to this… through the intra-body a.i. neural networks.

„STANDARDS FOR MOLECULAR ENGINEERING in Vivo, in Humans
IEEE 1906.1 – 2013
Recommended Practice for Nanoscale and Molecular Communication Framework
Prof. Schober, University of Erlangen-Nürnberg“

„Molecular Communications: Fundamentals, Testbed & Research Directions, Prof. Robert Schober MBCom21 “
„IEEE ComSoc MBMC-TC
65 Abonnenten
141 Aufrufe 19.06.2022
Molecular communication is an emerging research area offering many interesting and challenging new research problems for communication engineers, biologists, chemists, and physicists. Molecular communication is widely considered as an attractive option for communication between nanodevices such as (possibly artificial) cells and nanosensors. Possible applications of the resulting nanonetworks include targeted drug delivery, health monitoring, and environmental monitoring. In this talk, we will give first a general introduction to molecular communication. Components of molecular communication networks, possible applications, and the evolution of the field will be reviewed. Thereby, we will focus particularly on diffusion based molecular communication, identify the relevant basic laws of physics and discuss their implications for communication system design. One particular challenge in the design of diffusive molecular communication systems is intersymbol interference. We will discuss corresponding mitigation techniques used by Nature. Furthermore, we will present two testbeds developed at Friedrich-Alexander University Erlangen-Nurnberg. In the last part of the talk, we will discuss some research challenges and directions in molecular communication.“

„COMPUTER NETWORKING THROUGH THE HUMAN BODY WITHOUT INFORMED CONSENT AND NOT A WORD FROM THE TALKING HEADS
#WirelessBiomedicalTelemetry
#CiscoYANG
IEEE 1906.1 / 1906.1.1
Molecular Engineering in Vivo, in Humans with smart Materials WITHOUT Informed Consent
#NanoCyberInterface“
„Atlanta 2019 ICT Networks Academic Conference“
https://twitter.com/i/status/1816448795946705094

„Elektra Angel
@ElektraAngel
Until the entire world population understands what’s been done to them, then humanity is fucked. It’s as simple as that.“

„benjamin conner
@connerben
May 13, 2024…
Electromagnetic Nanonetworks Beyond 6G: From Wearable and Implantable Networks to On-chip and Quantum Communication“
https://arxiv.org/pdf/2405.07812

„V. CONCLUSION
The concept of nanonetwork has gone through a natural
evolution since its inception, going from the interconnection
of nano-sized machines to a broader paradigm with a more
relaxed definition, but still having the size and amount of
integration as primary factor. In the electromagnetic side
of this paradigm, the number of potential communication
technologies has increased (including magnetoelectric anten-
nas in the microwave band) and its maturity has increased
(thanks to intense efforts in nanophotonics, graphene, and ter-
ahertz technology). The application scope of electromagnetic
nanonetworks has been broadened as well, adding wireless
communications within computing packages to the existing
range of IoNT applications in the biomedical, agricultural,
logistics, or environmental monitoring domains. Furthermore,
quantum computing has recently gained momentum and
presents important nanocommunication problems with extreme
resource constraints and performance requirements, hence
being a suitable candidate to become an application scenario
for electromagnetic nanonetworks. Overall, we have seen that
the existing communication technologies for nanonetworks are
very diverse, and so are the requirements of the different
application scenarios. This, together with the wide array of
challenges still to be solved, both general/cross-cutting and
specific to the different applications, suggests that the field
of electromagnetic nanonetworks will contine growing in the
years to come.“

„Wireless Warrior
@Anti5GWarrior
The above IEEE document, abstract, starts: „The ongoing research and development as well as the ever‐growing requirement for novel ICT technologies and services has started to change how wireless communications are perceived.“
WE are the ’novel ICT technologies’…🛜
#NoConsent“

https://ieeexplore.ieee.org/document/8043169

„Body as a Network Node
Publisher: Wiley Telecom
Wiley Telecom
is part of: Human Bond Communication: The Holy Grail of Holistic Communication and Immersive Experience
; Ramjee Prasad
All Authors

Abstract
Chapters & Sections

Front Matter
Introduction to Human Bond Communication
General Concepts Behind Human Bond Communications
Advanced Reconfigurable 5G Architectures for Human Bond Communication
Data Mining of the Human Being

Authors
Keywords
Metrics
Chapter Abstract:
The human body will be the main actor in the ICT systems, by playing an active role as node of the network, as well as part of the user terminal. Body as a Node ( ByN ) is the future of ICT networks (engineering pov). On the other hand “intrusion” with technological ICT devices in the body will provide to the body itself a great opportunity for the early monitoring and the daily cure of critical pathologies (medical pov). The entry point of this approach is, in authors’ opinion, the Oral Cavity (OC). The ByN approach can be specialized to the Oral Cavity: challenging future perspectives are driven by this visionary research approach.“

https://onlinelibrary.wiley.com/doi/10.1002/9781119341451.ch6

https://ascensionglossary.com/index.php/Dragon_Nodes

„Dragon Nodes
The planetary grid amplifies the intelligence streams into higher consciousness connections that can be achieved by constructing spiritually designed buildings onto these Dragon Nodes which act as the supernatural transformer of converging grid line energies. These energies form into consciousness intelligence streams that are transmitted directly into the human lightbody’s Nadial Structure when in that location. We have also referred to the converging intersections of certain powerful grid lines as chalice points, which are energy flow fountains of Zero Point energy that pour into the ley lines. Such beautiful spiritually enhanced structures were built with the comprehension of the complex mathematical knowledge of divine architecture that function similar to a musical instrument playing musical tones.“
„Solar Dragon Body Parts
The Solar Rishic Dragons are the celestial form representatives of the Cosmic Christos Suns from the God Worlds when they enter the time matrix and become dimensionalized, meaning they take a more physicalized form to become embodied within that time and space. The Solar Dragon Christos Races are the actual Ancient Builder Races and Guardians of the creation of this matter realm. Thus, many are specifically intertwined within the planetary landscapes, …The dragon bodies, dragon lines, Dragon Nodes and Dragon Eggs are spiritual features that have been relatively dormant until recent solar activations radically shifted the magnetic field…
Dragon Templar Knowledge
This same templar dragon knowledge was applied in the design of many examples of ancient architecture and in the building of stunning structures such as the many Gothic Cathedrals. Many were originally designed as sacred ritual sites for dragon mystery schools and as healing temples purposely built upon powerful planetary grid lines that converged into energetic nodes and portal systems. Currently, many of these ancient Gothic Cathedrals are undergoing specific attunements to the ongoing planetary grid solar activations to ignite the dragon lines, Dragon Nodes, dragon wings, dragon domes and Dragon Eggs. These are the organic energy components of the Holographic Geography of the planetary body that is awakening now, which comprise the frequency currents running within multidimensional energy systems forming the light language patterns into geomantic electromagnetic designs.
Yantras and Dragon Nodes
The ancient templars and builders set up spectacular divine architecture and geometric designs of yantras within this local grid network to flow dragon energy into the temples, underground caves and tunnels.
This area of the grid contains multiple intersections of Dragon Nodes that were being utilized for the purpose of creating powerful links for communicating directly with the Gods above and for reaping their higher energy benefits.
13 Dragon Beings
Each of these primary creator Dragons can reproduce themselves through Dragon Eggs which are anchored on top of Dragon Nodes, which are at the intersection of the dragon lines that they generally embody as an energetic principle in the planet.
Cathedral Activations
The reanimation of the Triple Solar Goddess in her Solar Christ Mary form has been actively involved in the sequential activation of many Gothic Cathedrals across the globe that were originally built on Dragon Nodes in her name and Mary Magdalene Sophia lineage.“

„Ian Hurn
@IanHurn0
23. Juli
Current debate over gene editing (eg CRISPR) indicates immense upside implications for humans and environments as well as inadvertent consequences such as destructive mutations. Reducing these risks demands that we begin planning carefully now.
2016“
https://www.paragkhanna.com/2016-1-25-formula-for-the-future/

„Post
Konversation
Nanomaterials MDPI
@Nano_MDPI
📢 Highly Cited Paper in 2021

📜 #Enzyme-free #Electrochemical Nano-#immunosensor based on Graphene Quantum Dots and Gold Nanoparticles for #Cardiac Biomarker Determination

🔍 Read more: https://mdpi.com/2079-4991/11/3


Download PDF
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Open AccessArticle
Enzyme-Free Electrochemical Nano-Immunosensor Based on Graphene Quantum Dots and Gold Nanoparticles for Cardiac Biomarker Determination
by Bhargav D. Mansuriya
[ORCID] and Zeynep Altintas
*
Institute of Chemistry, Technical University of Berlin, Straße des 17. Juni 124, 10623 Berlin, Germany
*
Author to whom correspondence should be addressed.
Nanomaterials 2021, 11(3), 578; https://doi.org/10.3390/nano11030578
Submission received: 16 January 2021 / Revised: 15 February 2021 / Accepted: 21 February 2021 / Published: 26 February 2021
(This article belongs to the Special Issue Nanotechnologies for Biomedical Applications in Biosensors and Devices)
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Abstract
An ultrasensitive enzyme-free electrochemical nano-immunosensor based on a screen-printed gold electrode (SPGE) modified with graphene quantum dots (GQDs) and gold nanoparticles (AuNPs) was engineered to detect cardiac troponin-I (cTnI) for the early diagnosis of acute myocardial infarction (AMI). The GQDs and in-house synthesized AuNPs were implanted onto the SPGE and allowed for anti-cTnI immobilization prior to quantifying cTnI. …. The sensor showed high specificity for cTnI with slight responses for nonspecific biomolecules. Each step of the sensor fabrication was characterized using.. and their nanocomposites were characterized by transmission electron microscopy (TEM) and scanning electron microscopy (SEM). This is the first immunosensor that represents the successful determination of an analyte using four different electrochemical techniques. Such a sensor could demonstrate a promising future for on-site detection of AMI with its sensitivity, cost-effectiveness, rapidity and specificity.
Keywords:
enzyme-free electrochemical nano-immunosensor; graphene quantum dots; gold nanoparticles; screen-printed gold electrode; biomarker detection

1. Introduction
Cardiovascular diseases (CVDs) are linked with blood vessels and the heart . They result in nearly 33% of all deaths globally and hold significant morbidity, of which 80% of CVD deaths are due to strokes and heart attacks .

Those who are at a high risk of CVDs may show symptoms, such as elevated blood pressure, increased blood cholesterol and raised glucose levels, as well as induced obesity, which can be readily monitored in primary healthcare facilities.

Identifying those individuals at severe risk of CVDs and assuring that they receive concise treatment can be prevented from premature deaths . It is henceforth noteworthy to diagnose such patients at an initial stage that can reduce additional expenses by screening their hospital admission process and by focusing on those resources that are specifically at high-risk . Therefore, prognostic biomarkers are required to be detected with minimally invasive techniques to improve the treatment of CVDs, whereas the choice of accurate, rapid, ultrasensitive and reliable sensing methods for the detection of CVDs is highly demanded to be explored.
In biomedicine, research for designing electrochemical immunosensors has evolved over the past decade because it is critical to selectively detect biomarkers in clinical samples for the effective diagnosis and monitoring of various diseases . To meet the demand for quick, low-cost, specific and easy detection of such biomolecules in ultralow concentrations, numerous nanomaterials have garnered tremendous attention for the development of immunosensors and have been expanded to enhance the sensitivity, selectivity and reproducibility of such sensing platforms. Hence, electrochemical immunosensors hold vital features, rendering them highly appropriate for the quantification of CVD biomarkers at very low concentrations in biological fluids . The exclusive merits of these sensors in terms of high sensitivity, selectivity and stability supplied by nanostructuring their sensor surface have emerged in the introduction of innovative electrochemical immunosensing strategies. Such immunosensing techniques are being developed as desirable substitutes to the conventional methods for clinically diagnosing and managing several CVDs.
Electrochemical sensors exhibit superior features when compared to optical and thermal sensors owing to their unique detectability, experimental simplicity and cost-effectiveness . They have a prominent position among the currently accessible sensors that have reached the commercial stage and have been well-known for a wide range of important applications in the area of biomedicine. This sensor type can function as a miniaturized device for point-of-care testing (POCT). To date, a number of nanomaterials-based immunosensing strategies have been reported, which possess the convincing ability for designing biosensors . In this regard, nanomaterials, such as graphene quantum dots (GQDs) and gold nanoparticles (AuNPs), have prompted a particular interest in the fabrication of electrochemical immunosensors.
Since the past decade, various nanomaterials-based electrochemical immunosensors have been reported for the quantification of cTnI [6,13,17]. A photoelectrochemical immunosensor based on N,S−GQDs and CdS cosensitized hierarchical Zn2SnO4 cube was proposed for cTnI detection [18], wherein N,S−GQDs were implanted on the Zn2SnO4 cube, resulting in the increased photo-to-current transferability and electroconductivity. In addition, an optical sensor based on amine-functionalized GQDs was developed for cTnI determination [19]. Several other immunosensors based on GQDs were reported for sensing other cardiac biomarkers, such as cardiac myoglobin (cMyo) [20], tyrosine kinase receptor (AXL) [21] and C-reactive protein (CRP) [22]. Apart from the electrochemical immunosensors that highlighted the importance of AuNPs in their development for cTnI [11], several other biosensors working under the principle of electrochemiluminescence (ECL) [23], surface plasmon resonance (SPR) [24] and field-dependent electron transfer (FET) [25] also proved the significance of AuNPs for designing immunosensors for cTnI. All these aforementioned sensors revealed the supreme characteristics for introducing some novel immunosensing strategies based on nanomaterials for the early diagnosis of CVDs.
In the current work, a GQDs and AuNPs-based screen-printed electrochemical immunosensor was constructed for the determination of cTnI as a model biomarker. The enzyme-free nano-immunosensor was fabricated by drop-coating the optimized concentrations of GQDs and AuNPs onto the screen-printed gold electrode (SPGE) surface. The layout of all the fabrication steps involved in the development of this sensor is delineated in Figure 1. AuNPs and GQDs were preferred as the potent nanomaterials owing to their marvelous features, such as good biocompatibility, signal amplifying attributes, excellent electro-catalytic activity, being responsible for the electrode surface area enhancement, abundant sites for chemical modification and cost-effectiveness [26]. The anti-cTnI antibody was then immobilized onto the AuNPs@GQDs nanocomposite layer during overnight incubation, followed by blocking of the antibody-free areas with bovine serum albumin (BSA). Individual nanomaterials, nanocomposite formation and sensor fabrication steps were characterized using several microscopic as well as electrochemical techniques. Thereafter, the anti-cTnI immobilized sensor was employed for the specific recognition of cTnI antigen, where the detection of an analyte with CV, SWV, EIS, and chronoamperometry techniques was achieved for the first time.
Nanomaterials 11 00578 g001 550″

„I did not sign up for ´transmitting my INBODY INFORMATION´ wirelessly to some remote server
Nano-routing and Graphene injections:
ONLY OVER MY DEAD BODY
#NurembergCode“

„Metanoia
@metanoia_ki
Me neither. Many people haven’t.“

„Elektra Angel hat repostet
Eleventhstar ✨
@Eleventhstar1
“The interconnection of the biological world and the cyber world of the Internet is possible by a powerful hybrid device called Bio Cyber Interface. Bio Cyber Interface translates biochemical signals from in-body nanonetworks into electromagnetic signal..”
researchgate.net
Securing Bio-Cyber Interface for the Internet of Bio-Nano Things using Particle Swarm Optimization…
Request PDF | Securing Bio-Cyber Interface for the Internet of Bio-Nano Things using Particle Swarm Optimization and Artificial Neural Networks based Parameter Profiling | Internet of bio-nano things…“
https://www.researchgate.net/publication/353610078_Securing_Bio-Cyber_Interface_for_the_Internet_of_Bio-Nano_Things_

using_Particle_Swarm_Optimization_and_Artificial_Neural_Networks_based_Parameter_Profiling

„Abstract
Internet of bio-nano things (IoBNT) is a novel communication paradigm where tiny, biocompatible and non-intrusive devices collect and sense biological signals from the environment and send them to data centers for processing through the internet. The concept of the IoBNT has stemmed from the combination of synthetic biology and nanotechnology tools which enable the fabrication of biological computing devices called Bio-nano things. Bio-nano things are nanoscale (1-100 nm) devices that are ideal for in vivo applications, where non-intrusive devices can reach hard-to-access areas of the human body (such as deep inside the tissue) to collect biological information. Bio-nano things work collaboratively in the form of a network called nanonetwork. The interconnection of the biological world and the cyber world of the Internet is made possible by a powerful hybrid device called Bio Cyber Interface. Bio Cyber Interface translates biochemical signals from in-body nanonetworks into electromagnetic signals and vice versa. Bio Cyber Interface can be designed using several technologies. In this paper, we have selected bio field-effect transistor (BioFET) technology, due to its characteristics of being fast, low-cost, and simple The main concern in this work is the security of IoBNT, which must be the preliminary requirement, especially for healthcare applications of IoBNT. Once the human body is accessible through the Internet, there is always a chance that it will be done with malicious intent. To address the issue of security in IoBNT, we propose a framework that utilizes Particle Swarm Optimization (PSO) algorithm to optimize Artificial Neural Networks (ANN) and to detect anomalous activities in the IoBNT transmission. Our proposed PSO-based ANN model was tested for the simulated dataset of BioFET based Bio Cyber Interface communication features. The results show an improved accuracy of 98.9% when compared with Adam based optimization function.“

„SpiNNaker – Brain / Cloud Interface 🧠
~ SpiNNaker is a novel computer architecture inspired by the working of the human brain.“

„Neal Taparia
@nealtaparia
24. Juli
Your 9-to-5 job is dying.
By 2034, it’ll be extinct.
That’s Reid Hoffman’s latest prediction – the founder of LinkedIn who predicted the rise of social media in 1997.“

„!Barely Bruised Books
@BarelyBook
„It´s just science.“
IEEE 2030
CONTROL FOR
SOCIETAL-SCALE
CHALLENGES:
The ROAD MAP to a Cyborg society.
I took a few screenshots of the 284 pages in the hopes they’ll interest you to read the rest.“

https://ieeecss.org/sites/ieeecss/files/2023-05/CSS_Roadmap_2023_Cover_8x10_FINAL_REV5.pdf

601800cookie-checkBody Area Networks – Next Episode…
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