A bedside interface device enables direct physician control of electro-anatomic mapping systems via touch and gesture inputs.
A bioimpedance measuring device with multiple electrodes detects cervical tissue electrical impedance for diagnostic information.
A motor function estimating system captures finger tapping motion waveforms to generate objective severity values.
Electromagnetic sensors detect finger bending and stretching movements to generate time-series waveform data for quantitative motor function analysis.
A digit gauge tab with a circular opening matches patient finger size to the correct optical sensor, resolving measurement inaccuracies from improper sizing.
A mobile safety monitor detects acceleration and gravity gradients using a G-sensor to trigger SMS reports with GPS location data.
Multi-antenna signal correlation identifies living bodies regardless of orientation, resolving accuracy versus complexity trade-offs.
A pupillary response biomarker detects colour perception through luminance variation analysis.
A minimally invasive device uses negative pressure to draw tissue across embedded electrodes for biomechanical assessment.
Electromagnetic sensors capture pitch, yaw, and translational jaw movement data to resolve accuracy versus complexity trade-offs in dental recording.
Slope sign changes in displacement data determine extrema types, resolving registration accuracy issues caused by periodic tissue movements.
Polymeric optical reflector transmits infrared light while reflecting visible wavelengths to enable accurate oxygen saturation sensing behind the screen.
Navigation system calculates pelvic main plane orientation using accessible anatomical landmarks attached to a marker device.
A controller obtains a garment identifier to retrieve biometric identity and determine operational modes.
A wearable socio-biosensor device detects bio-behavioral, social, and environmental data using integrated sensors.
Magnetic field-based tracking replaces rigid bone fixation to enable accurate surgical navigation on moving soft tissue organs.
A wearable movement monitoring apparatus integrates low-power solid state kinematics sensors with wireless communication modules.