Digital scanner twins predict cathode filament wear to allocate imaging interventions across scanners with less waste and fewer service visits.
Temperature-based beam adjustment compensates thermal focal spot shifts, reducing unnecessary x-ray exposure and incomplete imaging.
Digital scanner twins forecast cathode filament wear to allocate imaging interventions across scanners, reducing waste and clustered downtime.
An inward base-substrate edge clears heater access for FPC thermocompression repair while shortening routing to reduce signal noise.
Planned operating parameters drive preheating and precooling in X-ray components, reducing thermal overshoot, hysteresis, and cooling delays.
Mixed-performance crystal strips in a 3D PET detector cut cost while preserving high spatial resolution where imaging needs are highest.
3D camera overlays and transceiver-based distance sensing help align the source assembly and detector quickly for better images and lower operator exposure.
3D identifiers visualize touch panel to object distance in X-ray imaging, improving TOD interpretation, accuracy, and workflow efficiency.
Sensor-guided robotic correction helps medical objects pass vascular obstacles while reducing manual maneuvering, radiation exposure, and tissue injury.
A 3D image and AI key point recognition automate touch panel to object distance measurement in X-ray imaging, improving accuracy and saving time.
Offset signal variation from unexposed pixels detects electromagnetic interference in X-ray detectors before artifacts cause retakes.
A geometric reference tool lets x-ray scanners infer true source and detector positions, improving image quality without direct measurement.
Multiple optical images guide automatic tube repositioning, improving radiographic alignment precision without slow manual setup.
Anatomical landmark-based scout scan merging cuts repeat setup, overlap, and radiation exposure in complex CT and trauma workflows.
Haptic feedback in the compression control lets operators feel breast compression force without watching a display, improving focus and patient comfort.
A combined phantom aligns optical markers with radiation markers to automate isocenter finding, camera calibration, and coordinate registration.
AI scans post-exposure X-ray images to detect, correct, and insert lead markers, improving labeling accuracy and radiography workflow.
Variable x-ray dosing and additive correction preserve CT image quality outside the ROI while cutting unnecessary radiation exposure.
Transceiver distance sensing and 3D camera guidance help align the source assembly and detector quickly, improving image quality and reducing exposure.
A smart-actuated foldable arm positions a heavy X-ray source assembly accurately against the detector, easing setup and reducing user radiation exposure.
A gantry-mounted sensor measures organ height during table motion so CT table alignment can improve image quality and reduce radiation dose.
Using filament current correction factors, this case improves X-ray tube wear tracking and end-of-life prediction to reduce failures and downtime.
Multiple motion sensors are combined to lower gantry detection noise, helping CT systems catch imbalance early and avoid image degradation.
Weighted sub-chamber dose time-courses prevent premature X-ray cut-off, preserving image quality in high-attenuation regions.
Multiple motion sensors are combined to lower gantry detection noise, helping CT systems catch small imbalances and protect image quality.
By mapping surgeon position onto a 3D scattered-radiation distribution, the CT system makes invisible exposure visually recognizable.
Automated positioning and equivalent-thickness calculations pre-adjust scan parameters to stabilize brightness despite subject movement.
Parallel charge-sharing and non-sharing paths address pulse pile-up while preserving energy resolution across count rates.
Projection-angle dose compensation offsets head-holder and top-plate attenuation, preserving tomographic image quality without uniform exposure increases.
Tube-voltage switching can destabilize spectral CT feedback; synchronized filament-current control stabilizes tube current and image quality.
Pivoting shelf and rotating-part scans establish patient-support position for accurate Cephalometric imaging across modalities.
Switchable subject support enables flexible examinee entry while preserving X-ray alignment.
A detachable support part connects to either side of the column, easing shielded-room entry while keeping X-ray imaging parts fixed.