Robert SFDC

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Robert SFDC

Robert SFDC

@robert_adero

Life is more fun if U keep an open 🧠 Do Good, Have Fun Rt SU #91827 ☁️ Truth seeker ❄ Salesforce 📡 M.I.T Alumni Volunteer|Mentor 🍀 #Ubuntu #BostonCeltics

TRK - ERT Katılım Şubat 2010
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Robert SFDC
Robert SFDC@robert_adero·
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UC WorkRoom
UC WorkRoom@ucworkroom1·
@Ryansikorski10 Check this out This is how they're trafficking synthetic molecules inside of cells. The NanoInjection Platform The nanoinjection platform comprises five components: (1) A Scanning Ion Conductance Microscope (SICM) (2) A Nanopipette which acts as the SICM Scanning Probe, A Nanoinjection Tool & A Single Molecule Counter (3) Microstepper Motors for coarse positioning of the nanopipette in the region of interest (4) Piezoelectric Actuator for positioning the nanopipette in three dimensions with nanoscale precision (5) A Spinning Disk Confocal Microscope for Brightfield & Fluorescence Imaging before & After Nanoinjection. Single Molecule Delivery into living Cells nature.com/articles/s4146…
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Ryan sikorski
Ryan sikorski@Ryansikorski10·
Non-Invasive Brain-Computer Interfaces: Converging Frontiers in Neural Signal Decoding and Flexible Bioelectronics Integration This review systematically examines the representative progress in neural decoding algorithms and flexible bioelectronic platforms over the past decade, highlighting key design principles, material innovations, and integration strategies that are poised to advance non-invasive BCI capabilities. It also discusses the importance of multimodal data fusion, hardware-software co-optimization, and closed-loop control strategies. Furthermore, the review discusses the application potential and associated engineering challenges of this technology in clinical rehabilitation and industrial translation, aiming to provide a reference for advancing non-invasive BCIs toward practical and scalable deployment. link.springer.com/article/10.100… PDF DOWNLOAD link.springer.com/content/pdf/10…
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UC WorkRoom@ucworkroom1

They construct this neural interface inside you using a technique called Micromachining!!!! Neural Interface Neural probe is a microstructure which connects neural tissue with external electrical, optical or chemical systems. In this structure, size, thickness, dimension and impedance are important issues to have the least brain damage during and after implantation. MICROMACHINING TECHNIQUE Micromachining technique has been used in probe production in which probe lies in the gold nanoparticle bath and then a layer of carbon nanotube with 2-micron thickness forms on the electrode body. Finally, nanoparticles are homogenized by ultrasonic wave and complete the probe structure pmc.ncbi.nlm.nih.gov/articles/PMC60… The gold nanoparticles are activated by Radiofrequency!!!!! Gold nanoparticle-based sensors activated by external radio frequency fields. Molecular Beacons are Nanomachines !!! A NOVEL MOLECULAR BEACON (A NANOMACHINE) is constructed THAT CAN BE ACTUATED BY A RADIO FREQUENCY (RF) FIELD. The nanomachine consists of the following elements arranged in molecular beacon configuration: a gold nanoparticle that acts both as quencher for fluorescence and a localized heat source; one reporter fluorochrome, and; a piece of DNA as a hinge and recognition sequence. When the nanomachines are irradiated with a 3 GHz RF field the fluorescence signal increases due to melting of the stem of the molecular beacon. pubmed.ncbi.nlm.nih.gov/25180655/

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UC WorkRoom
UC WorkRoom@ucworkroom1·
Understand this is integrated in the Extended User App. It's important to note the vaccination app from EyeSeeTea, which will be integrated into DHIS2. Vaccination Campaign App Vaccination Campaign App is a DHIS2 Web Application designed as an easy-to-use tool for information management during reactive (and potentially preventive) vaccination campaigns that can be rapidly configured & is fully integrated with Health Management Information System (HMIS) github.com/EyeSeeTea/vacc… What they're saying there is it's integrated into all their databases including: Uniprot uniprot.org/arba?query=* Reactome Knowledgebase reactome.org Fluorescent Protein Database fpbase.org The typical workflow would be to use yarn link to point to a development branch of that package Unfortunately, yarn link does not work at the moment. Use this link to address this issue without restarting the server. The fix for this issue is the installation of these 3 other modules: 1) Rewire Rewire acts exactly like require. With just one difference: Your module will now export a special setter & getter for private variables. github.com/jhnns/rewire 2) Babel Plugin Rewire A babel plugin adding the ability to rewire module dependencies. This enables to mock modules for testing purposes. github.com/speedskater/ba… 3) Rewire Webpack This is a plugin that enables rewire for client-side bundles generated by webpack. github.com/jhnns/rewire-w… All together, this gives them the ability TO RUN TESTS ON YOU, REMOTELY & DISCRETELY ! These tests will be EXPERIMENTAL & GENETICALLY ALTERING !!!
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UC WorkRoom
UC WorkRoom@ucworkroom1·
SynX & Synthetic Gene Networks SynX a platform for testing synthetic gene networks !!! The Synthetic Yeast Chromosome X (synX) is part of the Synthetic Yeast Genome Project (Sc2.0), which aims to redesign & synthesize the entire Saccharomyces cerevisiae genome with improved stability & genetic flexibility. pubs.acs.org/doi/10.1021/ac… SynX, along with other synthetic chromosomes (synII, synIII, synV, synVI, synIXR, synXII), was constructed using design principles that include the removal of destabilizing elements like transposons and tRNA genes, and the incorporation of symmetrical loxP sites (loxPsym) in the 3′ untranslated regions of non-essential genes to enable the SCRaMbLE system. pmc.ncbi.nlm.nih.gov/articles/PMC10… This system allows for controlled genome rearrangements, including inversions, deletions, duplications, and translocations, facilitating directed genome evolution and the study of complex genetic interactions. sciencedirect.com/science/articl… SynX has been used in studies to investigate the effects of synthetic genome design on cellular function and genome organization. For instance, a combinatorial genetic interaction between the SWI3 gene on synX and the synSUP61 gene on synIII was identified and corrected during the debugging phase, which improved the growth fitness of yeast strains carrying multiple synthetic chromosomes. Furthermore, the consolidation of multiple synthetic chromosomes, including synX, into a single strain (syn6.5) enabled the study of large-scale genome organization and the impact of designer features on transcription and chromatin architecture. cell.com/cell/fulltext/… The SCRaMbLE system, enabled by the loxPsym sites on synX, has been used to generate complex structural variations, such as pericentric inversions and trans-chromosomal translocations, which can lead to significant phenotypic changes, including a 2.7-fold increase in astaxanthin yield in engineered yeast strains. The design of synX also includes the integration of tRNA arrays flanked by rox recombination sites, which serve as tools for further genetic manipulation and the study of extrachromosomal circular DNA dynamics. THIS LAST PART IS IMPORTANT !!!! This part clearly states that this is a great platform for testing the Functional Consequences of Genomic Rearrangement !!!! These features make synX a valuable platform for testing synthetic gene networks and exploring the functional consequences of genome rearrangements in a controlled, high-throughput manner. sciencedirect.com/science/articl… Essentially, they will use this to ensure your chronic illness & compliance. Let be clear what this means. GENOMIC REARRANGEMENTS Genome rearrangements, which include deletions, duplications, inversions, translocations & insertions, have diverse functional consequences that can be detrimental, neutral, or beneficial depending on the genomic context & biological system. nature.com/articles/s4146… CREATING CHRONIC ILLNESS COVERTLY !!!!!! Genomic Rearrangements are implicated in various diseases, including nervous system disorders, congenital heart diseases & cancers, where they can act as causal factors through mechanisms like gene disruption or position effects. journals.plos.org/plosgenetics/a… TURNING OFF YOUR IMMUNE SYSTEM !!! In addition to "Disease", Genome Rearrangements play essential roles in normal biological processes. For instance, VDJ recombination & class switch recombination in lymphocytes rely on programmed DNA Rearrangements to generate antigen receptor diversity, which is critical for adaptive immunity. academic.oup.com/bioinformatics… ENSURING DEPOPULATION UNDER THE DISGUISE OF PUBLIC HEALTH !!! They will be using this to assign a Chronic Illness & Scheduled Euthanasia to everybody around the world.
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UC WorkRoom
UC WorkRoom@ucworkroom1·
They already mapped the graphene & voltage to your brain !!!!!!! Then connectome Brain Mapping, Manipulation & Synthetic Integrations Formly known as "Blue Brain", it's now called Open Brain Institute. Brain Indexer Create indexes of simple shapes and find all indexed elements that intersect with a query region. brain-indexer.readthedocs.io/en/stable/ Open Brain Institute github.com/openbraininsti… BrainBuilder BrainBuilder is a tool to define the cells that will compose a circuit. It also houses utilities for working with SONATA circuits. Open Brain Institute github.com/openbraininsti… THE RECIPE FZ-TD-RECIPE A wrapper around a connectome building recipe used by BlueBrain tools, to be either defined in JSON/YAML or XML (deprecated). github.com/openbraininsti… The recipe format is documented within the SONATA Extension by the Blue Brain Project SONATA Extension This document specifies all parameters required to generate the connectome of a circuit. Components of the recipe are used by TouchDetector & Functionalizer as noted. sonata-extension.readthedocs.io/en/latest/reci… CIRCUITS Microns to Sonata Building a SONATA circuit from the MICrONS mm^3 data. The ultimate goal is to create a Sonata model of the data that we can simulate. github.com/openbraininsti… Connectome Tools A collection of tools for specifying and analysing circuit connectivity. github.com/openbraininsti… VOLTAGE BlueNaaS Single Cell Using a simple web user interface, single cell simulations can be easily configured and launched, producing voltage traces from selected compartments. openbluebrain.com/api/bluenaas/d… BRAIN CLOUD CONNECTION & DEPLOYMENT Amazon AWS Terraform Deployment Open Brain Institute github.com/openbraininsti… AWS Well-Architected Framework github.com/openbraininsti… For convenience, the file format utilized for the documentation is Markdown, and for the diagrams is Scalable Vector Graphics (SVG). github.com/openbraininsti…
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UC WorkRoom
UC WorkRoom@ucworkroom1·
They construct this neural interface inside you using a technique called Micromachining!!!! Neural Interface Neural probe is a microstructure which connects neural tissue with external electrical, optical or chemical systems. In this structure, size, thickness, dimension and impedance are important issues to have the least brain damage during and after implantation. MICROMACHINING TECHNIQUE Micromachining technique has been used in probe production in which probe lies in the gold nanoparticle bath and then a layer of carbon nanotube with 2-micron thickness forms on the electrode body. Finally, nanoparticles are homogenized by ultrasonic wave and complete the probe structure pmc.ncbi.nlm.nih.gov/articles/PMC60… The gold nanoparticles are activated by Radiofrequency!!!!! Gold nanoparticle-based sensors activated by external radio frequency fields. Molecular Beacons are Nanomachines !!! A NOVEL MOLECULAR BEACON (A NANOMACHINE) is constructed THAT CAN BE ACTUATED BY A RADIO FREQUENCY (RF) FIELD. The nanomachine consists of the following elements arranged in molecular beacon configuration: a gold nanoparticle that acts both as quencher for fluorescence and a localized heat source; one reporter fluorochrome, and; a piece of DNA as a hinge and recognition sequence. When the nanomachines are irradiated with a 3 GHz RF field the fluorescence signal increases due to melting of the stem of the molecular beacon. pubmed.ncbi.nlm.nih.gov/25180655/
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UC WorkRoom
UC WorkRoom@ucworkroom1·
Yeah this is a fact. Just look into Project Nano Domestic Quell Project Nano Domestic Quell archive.org/details/nano-d… Is Nano Domestic Quell Government Project Still Going On? How Long Have Our Bodies Been Loaded With Nano Particles In Food, Drinks And Water Supply? Are We Now Part Of The World Wide Sensor Network? anamihalceamdphd.substack.com/p/is-nano-dome…
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Fight Back Podcast
Fight Back Podcast@ShieldsClips·
"So the bankers that are destroying our society, and these freaks that are trying to corrupt our children, what do they fear most? They fear this word 'Hitler'"
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Kristie Iushkova 🌺
Kristie Iushkova 🌺@KristieIushkova·
🚨ITU-T X.1080 through ITU-T X.1099 Series primarily covering Telebiometrics and e-Health security. Here I am highlighting ITU-T X.1080.2 Biology to Machine (B2M)🚨 NOTE: Source links ⬇️
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Kristie Iushkova 🌺@KristieIushkova

🚨ITU-T X.1080 through ITU-T X.1099 Series primarily covering Telebiometrics and e-Health security. Here I am highlighting ITU-T X.1094 and authentication using BIOSIGNALS🚨 NOTE: Source links ⬇️

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Moneypenny
Moneypenny@nic_moneypenny·
If we are living in a complex hologram and reality is a complex deception, how would we find out? Quantum Holography considers a wave based Genome & Phantom DNA effect, individual to each of us and intricately linked to external energies. Does DNA act as a holographic projector of acoustic and electromagnetic information? What is the impact of external electromagnetic, radiation and acoustic waves therefore on our genetics or even consciousness?
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UC WorkRoom
UC WorkRoom@ucworkroom1·
THE SERPENTS - HOW THEIR BEING USED IN THE NEW SYSTEM 1) The Python (Brain Computer Interfaces BCI, Biosensors) A. Brain Computer Interfaces (BCI) I. OpenBCI Python The Python software library designed to work with OpenBCI hardware. It's purpose is to allow for programmers TO INTERFACE WITH OpenBCI technology DIRECTLY, both to acquire data & to write programs that can use that data on a LIVE SETTING, using python. github.com/openbci-archiv… II. pyOpenBCI Provide a Stable Python Driver for All OpenBCI Biosensors github.com/openbci-archiv… III. Brain Flow - Python #python" target="_blank" rel="nofollow noopener">brainflow.readthedocs.io/en/stable/Buil… B. Biosensor - Python Python Class - Create Biosensor & Travel Phylogeny of life Create Biosensor & Travel Phylogeny of life. Python Class for Making DNA-Sensors by Travelling through Phylogeny of life includes Searching, Traversing, Making PHYLOGENY Graph, Downloading Genomic Data using ftp & Creating K-mers manually to FIND UNIQUE DNA Fragment for Target Node to accelerate development project of Biosensors in BioInformatics. github.com/DBT-BIF/Biosen… C. Python/Twisted (The Matrix & Neurons) I. Synapse Synapse: Matrix homeserver written in Python/Twisted. element-hq.github.io/synapse/latest/ 2) The Anaconda (Quantum Chemistry, Biology & Simulation) Notice the Upstream & Downstream. (just like a network) It's being done in a conda environment. Conda Packages A. PSI4 Open-Source Quantum Chemistry anaconda.org/psi4 B. SPARC-X SPARC: Simulation Package for Ab-initio Real-space Calculations SPARC is an open-source software package for the accurate, effcient & scalable solution of the Kohn-Sham density functional theory (DFT) problem. anaconda.org/conda-forge/sp… 3) The Cobra (Graphene Oxide GO & Golang) A. GO Command-Line Interface A Commander for Modern Go CLI interactions cobra.dev Cobra is a library for creating powerful modern CLI applications. B. GO Projects Cobra is used in many Go projects such as Kubernetes, This List contains a more extensive list of projects using Cobra. github.com/spf13/cobra These GO projects extend to the Digital ID like DHIS2 DHIS2 - Go. Data Interoperability The DHIS2 - Go. Data Interoperability App enables metadata to be securely exchanged between Go. Data, an outbreak response tool developed by WHO & DHIS2. This includes BI-DIRECTIONAL EXCHANGE of reference METADATA used across both platforms (i.e., location hierarchies, facility lists); and case/contact data (cases being registered and investigated; and their contacts who are being listed & traced). Such an integration enables field teams to make use of additional visualizations for chains of transmission & contact tracing follow up in Go. Data DURING AN ACUTE OUTBREAK SCENARIO while ensuring key field intel gets reflected back into overarching DHIS2 system. apps.dhis2.org/app/450e6234-6… World Health Organization (WHO) Go. Data Source github.com/WorldHealthOrg… Go Data Project goarn.who.int/virtual-spaces… OpenWHO Go Data openwho.org/channels/godata Bio-Routing (Updated 1 month Ago) Bio Routing is a project to create a versatile, fast & reliable routing daemon in Golang. bio = BGP + IS-IS + OSPF github.com/bio-routing/bi… This involves the Open Air Interface (OAI) openairinterface.org Packages for Deploying OAI Network Functions via Nephio github.com/OPENAIRINTERFA… Nephio: Cloud Native Network Automation nephio.org 4) The Viper (Carbon System, Infrastructure) Viper Project github.com/viperproject Viper Viper is a verification infrastructure that simplifies the development of program verifiers & facilitates rapid prototyping of verification techniques & tools. viper.ethz.ch/tutorial/
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Ady
Ady@Kavanuchi_tm·
@ShaykhSulaiman "We've been willing to lead, President Trump has led the entire time, but it's not just us. You might want to start learning how to fight for yourself."
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Ryan sikorski
Ryan sikorski@Ryansikorski10·
This groundbreaking work delves into the implications of a patent that promises to digitize the soul, offering a stark warning about the potential for surveillance, control, and the commodification of human existence. The book meticulously examines the Bolonkin patent, a visionary yet unsettling blueprint for achieving digital immortality by recording and rewriting human consciousness onto electronic chips.  Hellblazer’s Soul Code' is particularly beneficial for policymakers, technologists, ethicists, and individuals who are concerned about the implications of digital immortality and the potential for centralized control. Method of Recording and Saving of Human Soul for Human Immortality and Installation for it # US20090062677A1 The inventor shows that a human soul is only the information in human brain. He offers a method for re-writing the human brain on electronic chips.  This method of writing and saving of Human Soul includes: writing of views which person see in during his life by a micro video recorder to a portable memory; writing of sounds which person speaks and hears by microphone; writing of person physical conditions by micro sensors; writing of time and dates; writing of person body position and so on. An Installation utilized the Method is comprising devices: micro video camera located at man head, microphone, computer (chip) for data processing, portable memory located at an person body and connected to the portable memory; portable recorder for writing of life film located at the man body and connected to the computer and to the portable memory; micro sensors for writing of person physical and environment conditions; a clock for writing of time, the micro sensors for writing of men body positions; navigation system, long time memory high capability storage and so on. patents.google.com/patent/US20090…
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Paul franks@Paulfra07911928

@Ryansikorski10 books.brightlearn.ai/Hellblazers-So… thank you for all you do !!

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Ryan sikorski
Ryan sikorski@Ryansikorski10·
NVIDIA Proteina-Complexa A generative model that designs de novo protein binders and enzymes. research.nvidia.com/labs/genair/pr… Proteina-Complexa performance relies on three distinct technical components: the base generative model, the training datasets, and the integration of inference-time compute scaling. Built on top of the La-Proteina model,research.nvidia.com/labs/genair/la… Proteina-Complexa uses a partially latent flow-matching framework to generate both fully atomistic binder structures (protein backbone and side-chain) and the corresponding amino acid sequence, called co-design. In this approach, backbone alpha carbon atoms are explicitly modeled in 3D Cartesian space while all other atoms (side-chain and non-alpha-carbon) and the amino acid sequence are compressed into a learned latent space through an autoencoder. This balances atomic fidelity with computational tractability. developer.nvidia.com/blog/designing… 📄La-Proteina: Atomistic Protein Generation via Partially Latent Flow Matching arxiv.org/abs/2507.09466 📄Scaling Atomistic Protein Binder Design with Generative Pretraining and Test-Time Compute openreview.net/pdf?id=qmCpJtF… 📄Latent Generative Search unlocks de novo Design of Untapped Biomolecular Interactions at Scale research.nvidia.com/labs/genair/pr… Teddymer dataset This dataset presents 0.5 million non-singleton structural clusters generated by our Foldseek-Multimer-Clustering algorithm. The clusters are derived from the TED database, where domains are segmented across the entire AlphaFold Database. We generated a dimer database from the entire TED database, treating each domain as a chain. From 10 million dimers whose chains are fully annotated by CATH and are entries in afdb50 (a MMseqs-clustered version of afdb), we obtained 3.5 million clusters—500,000 non-singleton and 3 million singleton. teddymer.steineggerlab.workers.dev TED Database TED: The Encyclopedia of Domains The Encyclopedia of Domains combines state-of-the-art deep learning-based domain parsing and structure comparison algorithms to segment and classify domains across the whole AlphaFold Database. ted.cathdb.info CATH / Gene3D v4.4 151 million protein domains classified into 6,573 superfamilies. cathdb.info
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