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🚨🇷🇺 Russian scientists develop medical microscope that can detect hidden skin damage It uses polarized light to reveal microscopic details invisible to conventional optics without any sample staining or preparation 🔸 The device measures all polarization parameters of reflected light in real time, giving information instantly 🔸 At 100–200x...

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🚨 SCIENTISTS JUST CREATED A WAY TO KILL ANTIBIOTIC-RESISTANT BACTERIA USING NOTHING BUT LIGHT. Researchers have developed graphene quantum dots that destroy over 99.9% of antibiotic-resistant S. aureus and E. coli when hit with low-intensity blue light without using any antibiotics at all. The dots work by generating reactive oxygen species that rip apart bacterial cells. After chemically modifying them, the team made the dots over 20 times more efficient, allowing them to work at very low concentrations. Because they’re made from graphene instead of toxic heavy metals, they’re also much safer for medical use. Why this matters: • Antibiotic resistance is one of the fastest-growing threats to global health • This offers a completely different weapon light instead of drugs • The dots could be used in wound dressings, creams, gels, and coatings for implants and catheters • Graphene is cheap, stable, and biocompatible The deeper implication: We’re running out of effective antibiotics, and bacteria are evolving faster than we can develop new drugs. This approach flips the script: instead of fighting bacteria with chemicals they can eventually resist, we use light to trigger a physical attack they can’t easily adapt to. If this scales, it could become a powerful new tool in the fight against superbugs especially for wound infections and medical devices, where resistant bacteria are hardest to treat. Sometimes the solution isn’t a better drug. It’s a better way to attack. Would you trust a light-activated treatment over traditional antibiotics if it worked this well? Follow for more frontier nanotechnology and breakthroughs in the fight against antibiotic resistance.

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🚨🇷🇺 RUSSIA TAUGHT ITS ISKANDER-M BALLISTIC MISSILE TO DODGE U.S. PATRIOT DEFENSES IN THE FINAL SECONDS Russia’s Iskander-M has learned to change the way it flies when air defenses have only seconds left to react. Modified Russian missiles now dive at steeper angles and maneuver during the terminal phase, breaking the predictable flight paths that U.S.-made Patriot systems use to calculate an interception. One Ukrainian official described the upgrade as a “game-changer.” 🔸 SOFTWARE CHANGED THE THREAT: Updated control and guidance systems allow the Iskander-M to depart from its expected descent path and make abrupt maneuvers as it closes on the target. 🔸 PATRIOT GETS LESS TIME TO REACT: The steep final dive compresses the engagement window and forces interceptors to adjust against a missile no longer following the trajectory calculated seconds earlier. 🔸 THE MISSILE WAS ALREADY BUILT TO SURVIVE: Iskander-M combines a depressed flight profile with decoys, electronic countermeasures, a small radar signature and mobile launchers carrying two ready missiles. 🔸 EVERY INTERCEPTION CREATES NEW DATA: Years of combat have shown Russian designers how Patriot and other Western systems detect, track and engage ballistic targets. That information can be converted into repeated software and guidance updates. 🔸 MASS ATTACKS MAKE THE PROBLEM WORSE: Geran drones and cruise missiles can saturate sensors, consume interceptors and overload command networks before ballistic missiles enter the most demanding phase of the attack. 🔸 RECENT STRIKES SHOW WHAT THIS MEANS IN PRACTICE: Russia used Iskander-M ballistic missiles as part of its July 19 massed strike, breaking through around Kiev and hitting a network of missile, drone and military-logistics facilities. The targets included military plants and major storage and assembly hubs supporting Ukraine’s long-range weapons programmes. Missile defense has become a continuous adaptation race — and Russia can repeatedly change trajectories, software and strike combinations while the defender must update tactics and preserve scarce interceptors. Is Russia winning the missile-versus-interceptor technology race?

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Some of the most serious diseases in women progress for a long time without showing any symptoms. Cervical diseases, in particular, are often completely silent in the early stages. They can develop over years without pain, bleeding, or any noticeable complaints. Therefore, a Pap smear is not just a test, but one of the most powerful tools for early diagnosis. A Pap smear is a screening test that takes a sample of cells from the cervix. The aim is to detect cellular changes before they turn into cancer. Because cervical cancer is not a disease that develops suddenly; it is mostly the result of long-term cellular changes. The most critical point is this: Most patients feel nothing in the early stages. So, the approach of "if there are no symptoms, there is no problem" is not valid for this disease. Thanks to Pap smears: Precancerous lesions can be detected early. Treatment becomes much easier and more effective. Disease progression can be largely prevented. ACOG recommendations: 21–29 years → Pap smear every 3 years 30–65 years → * Pap smear every 3 years * or HPV test every 5 years * or co-test every 5 years (smear + HPV test) After 65 years of age, screening is discontinued in suitable patients. The procedure is short, often painless, and does not affect daily life. Common concerns in society are embarrassment, fear, or procrastination. However, a screening that takes only a few minutes can prevent a serious disease that could last for years.

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🚨 SCIENTISTS JUST BUILT AN ARTIFICIAL RETINA THAT RESTORES VISION AND ADDS INFRARED SIGHT. Researchers at Yonsei University in South Korea have developed a flexible, three-layer implant that bypasses dead photoreceptors and directly stimulates healthy retinal ganglion cells. The device not only helps restore vision in cases of retinal degeneration (like retinitis pigmentosa) but also gives the eye the ability to detect near-infrared light that humans normally cannot see. The key innovation is a soft 3D array of liquid metal micropillars (gallium-indium alloy) that gently conform to the curved retina without causing damage or inflammation a major improvement over rigid electrodes used in earlier implants. Why this matters: • Retinal diseases destroy light-sensing cells, but the neurons deeper in the eye often remain healthy and capable of sending signals to the brain • The implant uses an ultrathin filter + phototransistor array to convert near-infrared light into electrical signals the ganglion cells can understand • In mouse tests, blind animals regained visual responses, while healthy mice gained infrared sensitivity on top of their normal vision • The liquid metal electrodes are soft and biocompatible, dramatically reducing the risk of scarring or tissue damage The deeper implication: This isn’t just about restoring lost vision it’s about augmenting human sight. If it reaches human trials and proves safe long-term, people with partial vision loss could keep their remaining natural sight while gaining an entirely new sensory channel (infrared). The biggest open question is how the human brain would interpret this new stream of information whether it would feel like a new color, an overlay, or something else entirely. We’re moving from “fixing blindness” to “expanding what it means to see.” How do you think gaining the ability to see infrared light would change daily life or human perception? Follow for more frontier neurotechnology and bionic vision breakthroughs.

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PSA: $NAM Airdrop 🪂 - only a few hours left ➡️Claim closes on: 12th of Jan 2024, at 9am ➡️ The _ONLY_ place to claim ➡️Allocations have been adjusted recently - check if you have claimed to see if your number went up! ➡️US is sadly geoblocked 🔸Eligibility and How to Claim reminder ➡️ $OSMO snapshot: mainnet block 12146298 ➡️ $ATOM snapshots: block 17660694 (the last blocks before 1st of November 2023). To be eligible you need to have at least $100 USD staked ➡️In $OSMO: 280 $OSMO ➡️In $ATOM: 12.786667 $ATOM Beyond staking every account gets an Activity Score. The TLDR; of this scoring method is that it measures the engagement of the account on a decentralized network. The specific framework used in the RPGF Drop is an adaptation from Trusta AI ' Media Score, and was first introduced by Celestia on the Genesis Drop. Based on the mechanism, the score can be a minimum of 1.5 and a maximum of 15. The Activity Score is a points system that takes into account activity such as transactions, ibc transfers, the value of transactions, months active, etc. (the scoring details are linked in the announcement). The maximum points you can get on the Activity Score is 15. To determine the tier, the amount staked at the time is multiplied by the Activity Score. Then all eligible accounts are ranked by highest value to lowest and grouped into tiers: top 10%, 50-90%, and 0-50% ➡️Source: MEDIA SCORE as the Infrastructure for On-chain User Value Assessment: 🔸How to claim $NAM airdrop ➡️Get Namada Wallet Extension ➡️Go to ➡️Connect Wallet $ATOM $OSMO $STARS ➡️Connect $NAM Extension ➡️CLAIM $NAM ➡️Repeat for any additional chains / wallets 🔸Looking for an easy and super clear "how to claim video"? @L1am_Crypto & Stakecito Labs to the rescue 🫡 🔸$NAM airdrop beraindex overview: 🔸Stake $ATOM with our sponsor, Enigma , and don't miss out on future Airdrops 🥩 $ATOM 🫡

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🚨 SCIENTISTS JUST BUILT A CHIP THAT CAN SEE, THINK, AND REMEMBER ALL AT THE SAME TIME. And it works more like a biological brain than a traditional computer. Researchers at RMIT University have created a neuromorphic vision chip that mimics the human eye and brain. Unlike conventional systems that capture images and send data to external processors, this chip performs sensing, processing, and memory storage directly where the light hits. The active layer is thousands of times thinner than a human hair. It uses doped indium oxide to detect light, process the information on-chip, and retain what it sees over time without constant electrical refreshing. Why this matters: • It dramatically cuts energy use and latency by eliminating data transfer to separate processors • Enables much faster real-time decision making for autonomous systems • Works more like biological vision than traditional machine vision • Could power the next generation of efficient edge AI in vehicles, robots, and remote sensors The deeper implication: For decades, we’ve built vision systems by bolting cameras, processors, and memory together like separate organs. This chip collapses those functions into one biological-style unit. It’s a step toward machines that don’t just “see” but actually perceive and remember in a more efficient, brain-like way. If scaled successfully, it could become a foundational component for autonomous systems that need to operate intelligently with minimal power and minimal delay. We’re moving from cameras that take pictures to chips that truly see. How do you think neuromorphic vision chips like this will change what’s possible for self-driving cars and autonomous robots? Follow for more frontier neuromorphic computing, AI hardware, and brain-inspired technology.

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Claude Monet painted the same stretch of cliff more than ninety times. The place is Étretat, a small fishing village on the coast of Normandy, where the chalk cliffs fall into the sea in great arches and a single spire of rock, the Aiguille, stands alone in the water. Monet had known the place since childhood. He grew up in Normandy, and these cliffs were among the first landscapes he ever saw... He returned to paint them again and again. He worked through the 1880s in front of the same rock formations, and across that time he produced more than ninety canvases of them: the cliffs at dawn, at sunset, under storm, under calm, in winter light and in the gold of a clear evening. In his letters to Alice, the woman he would later marry, he described the agony of it: the weather turning, the tide rising, the sun moving, the colour he had begun to capture vanishing before he could finish. He often worked on several canvases at once, switching between them as the conditions changed, racing each one against the hour. In a letter to his friend Frédéric Bazille he wrote: "It is beautiful here in Etretat. Every day I discover even more beautiful things. It is intoxicating me, and I want to paint it all, my head is bursting. I want to fight, scratch it off, start again, because I start to see and understand. It seems to me as if I can see nature and I can catch it all." The cliffs of Étretat had stood for millions of years and would look, to most people, the same on any given day. Monet saw that they were never the same even for two minutes. He stood on that shore and tried to hold, on canvas, something that exists only for an instant and then is gone forever. And that's exactly what those paintings really are: 90 attempts to keep a single, vanishing moment of light from disappearing. As Dylan Thomas once wrote: "Do not go gentle into that good night. Rage, rage against the dying of the light." -- -- -- If you want a deeper dive into the craft of painting, I recently wrote a piece exploring it in detail. You can read it here: And if you'd like to support my work, a paid subscription is what makes it possible:

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58,391 Aufrufe • vor 3 Monaten

HTML Artifacts are a big part of how I work with agents now. Artifacts can be more than just static files. When combined with agents, they can take action or help you take action. This unlocks all kinds of interesting ways to work with agents. This is clearly the future. Check out this writing and scheduler artifact I built in a few minutes. It uses a bit of HTML and JS. All the data is in markdown (Obsidian vaults), so the agent can access and modify it at any time. No DB needed. No sophisticated functionalities. The agent decides all that for me based on the skills, context, and memory it has access to. The best part about this simple stack is that all the important information stays with me. This has allowed me to build a recursive self-improving system and automations that can better tap into coding agents like Codex or Claude Code. I could have paid or built an entire app for scheduling posts, and there are so many of them out there. But I don't need to. I've realized a simple artifact does the job. And the simplicity of it is actually an advantage. Very little maintenance for very high returns on personalization, time, and efficiency. The other benefit of this is that I can add features as I please. That level of personalization feels magical, and we should all be pursuing more of it. All of this just keeps compounding. Of course, this example is just about writing. But I have similar artifacts for research, design, experimentation, evaluation, and so much more. And no, I didn't actually publish the post example I shared in the clip. It was just for demonstration purposes. I actually spend more time than this when writing together with agents. Lastly, having built my own agent orchestrator tool has made me realize that simplifying the tool stack is a superpower. If you are curious about how all this works, I will do a live session next week:

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Apparently, I saw this video online and I decided to share. What this worker is applying is called bitumen, or what many of us know as bituminous coating. Most people think a wall is a solid, impenetrable block, but in reality, it is more like a sponge. Concrete and blocks have microscopic pores that pull water from the earth through a process we call capillary action. This thick black substance is the shield that stops that water from climbing up into the house. It is not about making the wall look good because this part will be buried under the dirt forever. It is about creating a skin that water cannot breathe through. When do you need to do this? The need for this arises because the soil is a very aggressive environment. Water is not your only enemy.. The ground also contains salts and sulfates that want to eat away at the cement. If this moisture finds its way to the steel bars inside the columns, those bars will start to rust. And when steel rusts, it expands, and that expansion is what cracks the concrete from the inside out. This coating is the only thing standing between your foundation and that kind of slow destruction. Thats is why if you see wet patches at the bottom of your walls inside your house, it usually means someone skipped this step or did it poorly during construction. You can apply this anytime you are building parts of a structure that will stay in contact with the ground. It is common in areas where the water table is high or where the soil stays damp for most of the year. This is a one-shot opportunity. Once you backfill the soil, you can never go back to fix it without a lot of expense and a lot of digging. It is about having the foresight to protect the heart of the building while it is still exposed. Please don’t ignore this if you need to. If you ignore it now to save a bit of money, you will be funding the future decay of your own home. I hope this helps.

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Is Using a Nebulizer with Food Grade Hydrogen Peroxide preventive and healing for upper respiratory symptoms? The earlier you get this in the better, so if you start feeling run down or stuffy take action sooner. ***THIS IS NOT MEDICAL ADVICE. Not only can nebulizing save you money, but also time from healing and potentially from the damage/side effects that antibiotics can have. I used a nasal mist sprayer with a 50/50 mix of 3% HP to distilled water and ate raw chopped garlic too when I had pneumonia and I relieved congestion, coughing or anything chest related. Just aches and pains. I’m all about prevention and using natural medicines first! “The inhalation of HP by nebulization has been shown to be extremely effective for the rapid elimination of any pathogen presence in the sinuses, nose, throat, and deep into the lungs.” -Dr. Levy HOW TO PREPARE HYDROGEN PEROXIDE FOR NEBULIZING 1. Add 2 tsp of 3% food grade hydrogen peroxide to 8 oz of saline water (this makes.1% dilution), if you are starting with 12% hydrogen peroxide, add 1/2 tsp to 8 oz of saline water. 2. Transfer this mix to a glass dropper bottle. 3. Use about 2-3 mL or (1/2 tsp) of this mix for each nebulizing session. 4. You can keep this solution refrigerated for a long time and continue to reuse it. Praying for your health and abundance of goodness 🙌🏼
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Is Using a Nebulizer with Food Grade Hydrogen Peroxide preventive and healing for upper respiratory symptoms? The earlier you get this in the better, so if you start feeling run down or stuffy take action sooner. ***THIS IS NOT MEDICAL ADVICE. Not only can nebulizing save you money, but also time from healing and potentially from the damage/side effects that antibiotics can have. I used a nasal mist sprayer with a 50/50 mix of 3% HP to distilled water and ate raw chopped garlic too when I had pneumonia and I relieved congestion, coughing or anything chest related. Just aches and pains. I’m all about prevention and using natural medicines first! “The inhalation of HP by nebulization has been shown to be extremely effective for the rapid elimination of any pathogen presence in the sinuses, nose, throat, and deep into the lungs.” -Dr. Levy HOW TO PREPARE HYDROGEN PEROXIDE FOR NEBULIZING 1. Add 2 tsp of 3% food grade hydrogen peroxide to 8 oz of saline water (this makes.1% dilution), if you are starting with 12% hydrogen peroxide, add 1/2 tsp to 8 oz of saline water. 2. Transfer this mix to a glass dropper bottle. 3. Use about 2-3 mL or (1/2 tsp) of this mix for each nebulizing session. 4. You can keep this solution refrigerated for a long time and continue to reuse it. Praying for your health and abundance of goodness 🙌🏼

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