Ultrasound imaging apparatus generates cervix and fetus images to calculate numeric delivery progression values.
A processor detects probe contact state to control tilting for optimal alignment.
A side-fire ultrasonic probe uses a cylindrical housing alignment feature to orient biopsy needles within the imaging plane.
Preliminary ultrasound scanning detects internal bleeding before strong indicators appear, reducing time to diagnosis.
A 3D ultrasound system estimates target imaging planes to guide probe positioning for accurate fetal biometry.
Multi-angle ultrasonic emission and transducer network processing determine surface movements by calculating delay or phase shifts between beam-forming signals.
A phased antenna array steers electromagnetic energy to shape an ablation field within targeted tissue.
Unique coded waveforms reduce signal transmission redundancy while maintaining high spatial resolution and contrast in medical ultrasound imaging.
A controller determines interventional device shape using a movable passive ultrasound sensor and fixed reference marker.
An ultrasonography apparatus applies position-based weights to reception signals for high-quality imaging.
Scan range modification unit adjusts detection area based on user identification for accurate target measurement.
A non-Hermitian complementary metamaterial coherently amplifies acoustic waves to restore energy lost during propagation.
A diagnostic apparatus superimposes ultrasonic catheter coordinates onto X-ray images for precise device tracking.
Rolling the flex circuit around a support member shelf minimizes outer diameter, resolving navigation constraints in small blood vessels.
Anatomical models mediate between raw ultrasound data and operator interpretation, reducing training time while enhancing diagnostic consistency.
A medical imaging system detects regions of interest during ultrasonic capture to guide immediate targeted image acquisition.
An ultrasonic fingerprint sensor captures subdermal reflections to detect physiological movements for biometric authentication.
A wireless ultrasound system synchronizes probe data with head-mounted display images for real-time operator guidance.
A tissue characterization system delivers periodic mechanical vibration to induce deformation while ultrasound tracks spatio-temporal changes for stiffness assessment.
A scan unit transmits ultrasonic waves to track control point velocities for cardiac motion analysis.
Exponentially swept ultrasound chirp pulses separate harmonic and fundamental responses to identify non-linear tissue properties.
A system synchronizes rotating volumetric ultrasound images with object oscillation frequency.
Integrating semiconductor detectors within an endocavity probe overcomes poor spatial resolution in small organs, enabling precise cancer localization.
A local ultrasound device displays low quality images to guide scanning while transmitting high quality images to a remote expert.
A bladder volume measuring device calculates urine amounts using ultrasound images and AI-derived shape coefficients.
Ultrasonic transducers detect chest movement reflections to extract heart rate and respiration data without physical contact.