A New Wearable That Aims to Read Your Mind Get ready for the next frontier in wearables. A startup called Neurosity has started shipping its "Crown" device—a wearable that looks like a high-tech headband and is designed to translate your brainwave activity into commands. Using EEG sensors, the Crown can detect your focus levels and allow you to control music, apps, and smart home devices with your thoughts. The initial focus is on boosting productivity by helping users stay in a "flow state," but the potential applications are huge. My take: We are officially in sci-fi territory, and I'm here for it. While it's still very early-stage technology, the idea of a seamless brain-computer interface moving from the lab into a consumer product is incredibly exciting. This is one to watch. #WearableTech #BCI #FutureTech #Neuroscience #Innovation
Neurosity's Crown wearable translates brainwaves into commands
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Wearable Devices Ltd Secures U.S. Patent for Breakthrough Voice and Gesture Control Technology, Enhancing Leadership in AI Wearables Market https://ow.ly/FaRQ50WV3PK #MachineLearning #AdversarialAI #SmartAI #AI #EnterpriseAI #GenerativeAI #GenAI #MLAlgorithms #DeepLearning #AIResearch #AIRevolution
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How can wearable neurotech support recovery from Long COVID at home? A new 180-day peer-reviewed study put Muse S to the test. Participants used Muse S for just 10 minutes a day. The result? ✅ Improved cognitive performance (measured by both self-report and digital tests) ✅ Better sleep quality and reduced fatigue ✅ Lower anxiety and stress ✅ Greater confidence in managing symptoms Muse’s platform combines wearable EEG and AI-powered insights—analyzing brain activity in real time to deliver personalized feedback and metrics. This is how decentralized care becomes data-driven. The long COVID study adds to a growing body of research: wearable neurofeedback may play a key role in the future of scalable, at-home recovery. 🧠 Read the full study results here: https://lnkd.in/gjSpszze #neurotech #longcovid #wearables #digitalhealth #brainfog #mentalfitness #muses #EEG #choosemuse
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M-Enabling Summit 2025 Parallel Session Spotlight: New Frontiers for Wearables Wearable technologies are advancing quickly, with innovations in AI-driven analytics, augmented reality, real-time diagnostics, miniaturization, and multisensory haptics. These features are changing the way users interact with devices, transforming industries such as healthcare, fitness, public spaces, and the Internet of Things (IoT). At #mEnabling25, experts from industry, advocacy, and policy will explore how wearable devices can bridge accessibility gaps and create inclusive opportunities for individuals with disabilities. Moderated by Fred Moltz (Verizon), join: 1. Jacklyn Doig-Keys (Meta) 2. Jonathan Mosen, MNZM (National Federation of the Blind) 3. Barbara Kelley (Hearing Loss Association of America (HLAA)) 4. Brian Scarpelli (ACT | The App Association) as they explore: 1. How wearable tech is shaping accessibility innovation 2. The impact across healthcare, fitness, and public spaces 3. New opportunities to design inclusive user experiences Register today: https://shorturl.at/ntrXB #AccessibleTech #Wearables #DigitalAccessibility #InclusiveInnovation #GlobalAccessibility
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The landscape of human-technology interaction is rapidly evolving with the emergence of AI-enabled gesture-control wearables. Traditional touchscreens and voice assistants are increasingly viewed as limiting in our fast-paced, multitasking world. Wearable Devices Ltd. has positioned itself at the forefront of this technological revolution, developing innovative neural input platforms that intuitively sense and interpret user intent. Their flagship products, the Mudra Band and Mudra Link, represent significant advancements in seamless device interaction. The neural interface market is experiencing substantial growth, driven by sectors including extended reality, augmented reality, and enterprise computing. These gesture-based systems offer users more fluid and intuitive ways to engage with technology. Companies like Vuzix, Nvidia, Qualcomm, and Roblox are also contributing to this transformative technology, signaling a broader industry shift toward more natural, responsive human-device interfaces. As wearable technology continues to advance, we can expect increasingly sophisticated methods of digital interaction that prioritize user experience and technological efficiency.
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📱 How Wearable Tech is Transforming Physical Therapy From smartwatches to motion sensors, wearable technology is changing the way we track recovery. Here’s why we’re excited about it: ✅ Better Data: Step counts, range of motion, and activity levels give real-time insight into progress ✅ Personalized Plans: We can adjust exercises based on actual movement data — not just patient recall ✅ Higher Engagement: Patients stay motivated when they can see their progress on a screen The future of PT is connected. We’re already using digital tools to keep patients on track between sessions — and it’s leading to faster, more consistent results. Would you use wearable data to track your rehab progress — or share it with your care team? #PhysicalTherapy #optimumrehab #DigitalHealth #WearableTech #HealthTech #RehabInnovation #ConnectedCare #FutureOfHealthcare
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Wearable Devices Ltd. Advances Touchless Control with Neural Input Tech 🧠 Israeli company Wearable Devices Ltd. has gained significant industry recognition this week through editorials emphasizing the role of AI-powered wearables in evolving human-computer interaction. - The company's neural input technology allows subtle hand gestures to control digital devices without touch. - Flagship products include the Mudra Band for Apple Watch and the universal Mudra Link platform. - These use proprietary Surface Nerve Conductance sensors to detect electromyography signals from finger movements. - The signals are converted into digital commands, bypassing touchscreens and voice inputs. ♦️Why it matters: This technology could simplify device interactions and expand accessibility, influencing design trends in wearables and consumer electronics. #WearableTech #NeuralInterface #AI #HumanComputerInteraction #Innovation #Gadgets #TechNews Asher Dahan
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The landscape of consumer technology is undergoing a dramatic transformation as AI-driven wearables redefine human-device interaction. Traditional input methods like touchscreens and voice commands are rapidly giving way to more intuitive, gesture-based technologies. Wearable Devices Ltd. is emerging as a key player in this technological revolution, introducing innovative products that promise seamless device control. Their Mudra Band for Apple Watch and Mudra Link platform represent significant advancements in neural input technology. The market for touchless interfaces is expanding rapidly, driven by consumer demands for more natural and efficient interactions. Major tech giants like Meta, Apple, Microsoft, and Alphabet are also investing heavily in this emerging field, signaling a broader industry shift. As multitasking and mobility become increasingly important, these AI-powered wearables offer a glimpse into a future where technology adapts more intuitively to human behavior. The potential applications span consumer electronics, augmented reality, and enterprise computing. With neural interfaces poised to reshape how we interact with technology, companies like Wearable Devices are at the forefront of this transformative wave.
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When I was in medical college, certain questions always puzzled me “Can an ECG only be captured within hospital walls?” And when we read about ambulatory blood pressure monitoring, it felt like an abstract concept - how could someone realistically wear a device 24 hours a day to record blood pressure? Fast forward to today at #ESC2025 in Madrid, and I find myself looking at those very theories turned into reality. On the floor, I came across: - PulseOn – a wearable arrhythmia monitoring system, giving real-time ECG signals on the wrist. - Huawei Watch 5 – with multi-sensing X-Tap technology, enabling practical, continuous ambulatory BP monitoring. It’s astonishing and exciting to see how innovations that once lived only in textbooks are now available as sleek, wearable devices. But this also makes me pause and reflect: In a world where devices already measure steps, sleep, stress, SpO₂, heart rate, ECG, and now blood pressure - how many variables can (or should) we realistically track at once? Are we entering an era of “too many wearables,” or is this the natural path toward integrated, proactive health? Would love to hear your thoughts!
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Using a WBM (Wearable Health Behaviour Foundation Model): The most accurate predictions were achieved when combined the insights from both the behavioural data and the raw sensor data. In this case, being trained on over 2.5 billion hours of behavioural data from 162,000 individuals using wearable devices. Not bad. https://lnkd.in/gXcjCes8
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A wearable can have all the newest sensors and smartest design, but if it isn’t comfortable, it won’t be worn. The competitive edge in wearable tech isn’t only “more features”—it’s also mastering comfort and wearability through measurable, real-world tactile data. In our latest blog post, BOHLD explores how quantifying how materials feel to the human skin can significantly improve both the comfort and functionality of wearables. 👉 Read here: https://wix.to/mLhp4fB #WearableTech #MedicalDevices #Innovation #ComfortByDesign #UserExperience https://wix.to/RxFVKjo
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