GE HealthCare Unveils New LOGIQ Ultrasound Systems with Enhanced AI and Liver Assessment Tools
The next-generation portfolio features automated abdominal imaging capabilities and expanded integration platform for third-party applications.
The next-generation portfolio features automated abdominal imaging capabilities and expanded integration platform for third-party applications.
The new system features a clamshell design, all-touch interface, and wipe-clean surfaces to support mobility, infection control, and usability in demanding care environments.
The trophon3 and trophon2 Plus are designed to automate high-level disinfection, improve workflow efficiency, and enhance digital traceability for healthcare facilities.
The next-generation portfolio features automated abdominal imaging capabilities and expanded integration platform for third-party applications.
The partnership adds Vivid, LOGIQ, Versana, Venue, and Vscan Air ultrasound lines to Probo’s offerings.
Read MoreThe AI-powered 3D ultrasound is designed to enhance cancer detection in dense breast tissue by providing clearer imaging, faster scanning, and improved diagnostic confidence.
Read MoreFlexible ultrasound transducers introduce the ability to conform to curved surfaces like the human body.
Read MoreGE HealthCare’s newly FDA-cleared Voluson Expert ultrasound systems integrate AI automation and the Lyric Architecture for enhanced imaging.
Read MoreEngineers at the University of California, San Diego have developed a wearable, wireless ultrasound device for non-invasive muscle monitoring, showing potential in healthcare and human-machine interfaces by tracking muscle activity and supporting respiratory health.
Read MoreMatt Tomory, vice president of sales and marketing at Innovatus Imaging, discusses common failures in ultrasound transducers and systems, highlighting strategies to improve equipment reliability and performance through effective repairs and preventive maintenance.
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NASA is using Echolight's REMS technology in a bedrest study to monitor bone density and microarchitecture without radiation, with potential for real-time astronaut bone health monitoring in future space missions.