A tunable band-pass sigma-delta ADC converts only the target ultrasound band, improving SNR while cutting probe power use.
A tunable band-pass sigma-delta ADC captures only the needed ultrasound band, improving SNR while limiting probe power use.
Pivoting compression paddles with integrated transducers stabilize the breast for multi-angle ultrasound imaging with less scan time and discomfort.
Image registration and guided transducer sweeps turn 2D ultrasound frames into 3D volumes while reducing gaps, artifacts, and hardware cost.
An implantable inductive artery sensor paired with Doppler ultrasound enables continuous cardiac output monitoring without restricting patient mobility.
A stretchable ultrasound patch enables continuous heart imaging and automatic cardiac index extraction without invasive catheters or bulky scanners.
Bio-impedance sensing tracks bladder volume and total body water continuously, reducing catheter infection risk and manual measurement errors.
A spherical mount and lock hold an ultrasound probe hands-free for precise long-duration positioning with better wearer comfort.
Real-time IMU feedback guides probe position, pressure, and motion so non-skilled users can capture ultrasound images suitable for remote review.
On-probe control circuitry performs elevational beamforming with memory, decimation, and DDS phase offsets to cut extra circuitry and cost.
A shaped gel body with a transducer receptacle stabilizes TAU positioning and acoustic coupling on irregular jaw surfaces.
Real-time AI image analysis guides ultrasound probe movement so clinicians can capture better musculoskeletal images and diagnose pathologies faster.
Computer vision detects surgeon intent and target pose to simplify robotic handling of drop-in instruments in the surgical space.
IMU-based feedback on probe position and speed helps untrained users capture high-quality ultrasound images outside clinical settings.