The future of digital health may not be about collecting more physiological data—but learning from it better. A new study introduces ARISE, a multimodal AI framework that learns general physiological representations before specific tasks. A step toward foundation models for wearable health data.
Virgobit
@virgobit.bsky.social
Focusing on remote patient monitoring using wearable devices and smartphones! www.virgobit.com
🧬 Wearables are evolving beyond physiology toward continuous molecular sensing. A new Nature Sensors study reports a wearable platform for non-invasive sweat-based lipid profiling, combining cofactor-refreshing enzymatic chemistry with causal machine learning. #DigitalHealth #Wearables
📢 Virgobit at @saa2026.bsky.social in Vienna! We are connecting with researchers, clinicians, and innovators exploring the future of #DigitalBiomarkers, #Wearables, and remote research. 🎤 Join our presentation & poster sessions. 🤝 Meet our team at the booth!
🚀What if wearables could restore the sense of touch? A new @pnas.org study demonstrates wireless multimodal haptic arrays that convert plantar pressure into real-time thermal and vibrotactile feedback, improving balance and gait in early clinical studies.
🚀Your next remote research study could start with Spica Research Kit. Virgobit is introducing a Research Collaboration Opportunity at @saa2026.bsky.social. Explore remote multimodal data collection with wearables, EMA, and secure research workflows. Join the waiting list and connect with us.
🧠📱 From questionnaire design to real-world data collection. Meet Spica Questionnaire Builder—create, schedule, and manage flexible EMA protocols with online/offline deployment, all integrated with wearable data and remote monitoring. See it live at @saa2026.bsky.social. #EMA #DigitalHealth #Spica
🧬 A single wearable fiber that senses both your pulse and full-body motion? A new Advanced material study introduces a dual-gradient sensory fiber that dynamically adapts across strain regimes, boosting AI gesture decoding by >10% while enabling richer physiological monitoring. #Wearable
🚀#EMA is reshaping real-world clinical research through high-ecological-validity data collection. At #SAA2026, we’ll showcase how Spica integrates EMA, wearable sensing, gamified assessments, and our new Questionnaire Builder. Looking forward to meeting the @saa2026.bsky.social community.
🚀Wearable bioelectronics just got softer—and smarter. A new graphene-enabled hydrogel electrode achieves ~8000% stretchability, stable ECG, EEG, EMG, EOG & EDA sensing through hair, sweat, and motion. A major step toward reliable multimodal health monitoring and next-generation digital biomarkers.
🌙Can wearable sensor signals accurately reconstruct human sleep outside the lab? At Virgobit, we’re advancing AI-powered sleep staging with our Spica Platform using wearable physiological signals for real-world research. Join us at @saa2026.bsky.social to learn more. #SleepResearch #DigitalHealth
🚀Invisible #wearables may be the next leap in bioelectronics. A new @science.org study demonstrates fully invisible on-skin electrodes that capture #EEG, #EMG, and #EOG while reducing appearance-related psychological artifacts—bringing physiological monitoring closer to real-world behavior.
🚀 New in Spica: Questionnaire Builder! Design fully customized #EMA questionnaires with rich question types, live preview, and seamless deployment—all without coding. See it live at @saa2026.bsky.social or contact us at info@virgobit.com Video walkthrough coming next! #EMA #ClinicalResearch #Spica
Join us at #SAA2026 in Vienna! @saa2026.bsky.social Virgobit will present Spica, our multimodal remote research platform for digital phenotyping and decentralized clinical research.Visit our booth and join our scientific sessions. Looking forward to meeting the @ambulatory-assessment.org community!
🧠What if robots could sense and react without electronics or AI? A new @science.org study introduces a mechanical soft force sensor that directly links force sensing to fluidic actuation—eliminating processors and external power. A major step toward embodied intelligence in soft robotics. #Robotics
🧠 Excited to announce our partnership with Brain Products GmbH! X.on wearable EEG is now integrated with Virgobit's digital research ecosystem, enabling synchronized EEG, EMA, cognitive tasks, and multimodal wearable data for ecologically valid neuroscience research. #EEG #MoBI #DigitalHealth
🩹 Wearable innovation is moving beyond sensors. A new Science Advances study presents a porous skin interface for 3D bioelectronics that combines breathable long-term wear, multimodal sensing, thermal buffering, and on-demand drug delivery in a closed-loop wound patch. #Wearables
Wearables generate data—but data alone doesn’t guide clinical decisions. Context is what turns measurements into meaningful insights. Projects like DECIDE show why interoperability, AI transparency, and clinical expertise are just as important as the data itself. #DigitalHealth #Wearables
A new @science.org study introduces a soft, wearable NIRS system that continuously tracks brain water dynamics during natural sleep. The findings bring scalable, at-home monitoring of glymphatic-related physiology closer to reality, opening new opportunities for neuroscience and digital biomarkers.
🧠❤️ Introducing The Golden Pair—our multimodal framework combining Muse EEG, Polar 360, and Spica to capture synchronized brain, body, and behavioral data for AI-driven digital biomarker research. From sleep staging to women’s health, this is Brain–Body Intelligence in action. #DigitalHealth
🚀A remarkable advance in bioelectronics: researchers developed bio-integrated μBots with ultrawideband magnetoelectric antennas for wireless telemetry, combining miniaturization, biocompatibility, MRI compatibility, and real-time data transmission. #Bioelectronics #WirelessTelemetry
🚀 A new @natureportfolio.nature.com study introduces 3D PURE—a portable, real-time 3D ultrasound system for operator-independent #breast imaging. A major step toward AI-assisted, accessible, and longitudinal healthcare. #DigitalHealth #MedicalImaging
What if neuromodulation is limited not by where we stimulate, but when? A new Journal of Neuroscience study shows brief taVNS selectively enhances motor circuit excitability only during movement—not at rest. Timing may be the missing ingredient for precision neurorehabilitation. 🧠 #Neuroscience
A new study showcases a soft epidermal wearable that combines advanced materials engineering with bioelectronics for continuous cardiorespiratory monitoring. The patch detects subtle respiratory changes, records ECG, and shows promise for sleep apnea, asthma, and COPD monitoring beyond the clinic.
📍 Two insightful days at the Digital Biomarkers in Clinical Trials Summit in Basel. Key themes included digital biomarkers as clinical endpoints, the importance of high-quality real-world data for AI, and multimodal patient-centric trial design. #DigitalBiomarkers #ClinicalTrials #DigitalHealth
🚀SensoExo combines a soft robotic hand exoskeleton with transcutaneous neurostimulation and sensory feedback. it restored touch in complete sensory loss and improved grip, finger mobility and object handling. suggests pathways can be re-engaged, shifting rehab from compensation to neuro-augmentation
🧠 Great conversations, inspiring science, and exciting collaborations at #OHBM2026. We enjoyed presenting our work, connecting with researchers from around the world, and reconnecting with partners like Brain Products to discuss the future of neuroimaging, digital phenotyping, wearables, and AI.
🚀Monitoring prenatal folate status remains dependent on blood sampling and centralized laboratory testing. A new study demonstrates a wearable sweat-based platform integrating microfluidics, automated ELISA, and portable diagnostics for non-invasive folate monitoring. #BiomedicalEngineering
🚀Next week, the Virgobit team will be in Basel at the Digital Biomarkers in Clinical Trials Summit hosted by Roche. We’re excited to discuss digital endpoints in neuroscience, cardiometabolic research, and how AI +multimodal wearable data can advance clinical trials and real-world evidence.
A miniaturized ingestible temperature sensor (6 mm × 4 mm) achieving 0.1°C accuracy with just 10 nW power consumption could redefine continuous internal physiological monitoring. An exciting advance for ingestible bioelectronics, digital health, and precision medicine. #NatureElectronics #MedTech
🧠 Sleep happens every night. Why is measuring it still so difficult? Join us at OHBM 2026 for our poster on wearable-based sleep staging using a lightweight deep learning model evaluated across subjects and datasets. 📌 Poster #2232 📍 Bordeaux, France 🗓 June 17 (13:45–14:45) & 18 (14:45–15:45)