A supervised learning system estimates depth from monocular images using feature vectors and global optimization.
iQC system detects stain fading and aging in whole slide images, reducing manual review time while maintaining diagnostic accuracy.
Real-time head position analysis via facial landmarks reduces manual adjustment time and human error in dental imaging workflows.
A fisheye camera parameter estimation device generates multiple projection images to determine internal parameters.
A projection apparatus generates a mask pattern matching a non-planar region contour to render content accurately.
Image processing systems infer internal damage from external photos, replacing manual inspections to streamline claims processing.
Camera array generates extended depth of field via inverse point spread function deconvolution, reducing computing power requirements.
Binarizes reference and planning images to generate a tracking template, resolving occlusion issues during radiotherapy.
Local feature extraction and global descriptor generation resolve the trade-off between localization accuracy and map registration time.
A front-end scaler circuit processes demosaiced image data in multiple modes to handle varying memory requirements.
A SLAM framework segments the environment map into discrete 3D regions and models depth using low-order polynomials.
Segmenting scan data for parallel processing reduces reconstruction delays while maintaining diagnostic image quality.
Automated key point detection replaces manual annotation processes, enabling rapid animation figure generation while maintaining precise pose and size matching.
Integrates candidate positions to resolve occlusion bottlenecks, maintaining high accuracy when objects overlap.
A 360-degree video post-production system applies rectilinear editing to segmented points of view.
A data processing apparatus divides images into areas and generates segments with playlist URLs.
Structured light 3D camera captures point cloud data for automated propeller blade parameter extraction.
Graph analysis of 3D vascular skeletons detects bifurcations and calculates angles, resolving low precision in aneurysm diagnosis.
Smartphone ear images match pre-stored 3D shapes, eliminating costly scanning equipment while maintaining measurement precision.
A time-lapse image processing method calculates positional correction values using a correlation function weighted by object features.
Noise injection masks banding in dark regions while backward reshaping modification prevents artifacts in highlights.
A messaging system applies 3D effects to image data using depth maps and segmentation masks for background inpainting.
Dynamic light source adjustment maintains image quality in watch sensors.
Segmented color mapping models correct traffic light artifacts without global look-up table complexity.
Optical waveguide assesses skinprint quality without complex mechanical mass measurement systems.
A vacuum-release substrate bonds to thin wafers using air pressure-sensitive force, enabling precise warpage detection during semiconductor manufacturing.
Depth recognition camera acquires 3D depth data and image data for automatic surface registration of medical images.
A topology normalization system maps anomaly scores to structured neighborhoods for reliable defect identification.
Automated X-ray imaging system analyzes container scans to detect contraband anomalies while reducing operator fatigue.
A machine learning system computes coronary calcification scores using standard computed tomography images without requiring additional angiography scans.
Camera unit captures user face images to detect pupils and calculate screen distance using optical geometry.
Dynamic regularization adjustment aligns spatial resolution across spectral components, eliminating artifacts caused by inconsistent noise reduction.
Segmented Fisher projection optimizes multispectral image contrast for distinct target areas within an analysis window.
Structured light illumination extracts Z height values from image stacks, improving measurement speed and accuracy over traditional interferometry methods.
An image processing apparatus extracts edge pixels to identify line candidates via Hough transformation.
Generating location graphs from video tracking metadata determines activity types, reducing computational costs and improving classification accuracy.
Iterative fluid dynamics simulation corrects presence distributions using angiography feedback to resolve spatial and temporal resolution contradictions.
A virtual pit structure anchors augmented reality overlays to ground level, providing precise depth references for underground assets.
Non-linear wavelet decomposition isolates noise from x-ray signals, improving image quality without increasing radiation exposure.
Vents on the rivet head relieve pressure to prevent porosity while adhesive bonding enhances joint strength in resistance welding.
A virtual reality apparatus aligns RGBD point clouds with mean-shape models to generate accurate 3D face geometry.
Time-division illumination isolates fiducial marker fluorescence from specimen signals, eliminating interference that degrades displacement detection accuracy.
Histogram equalization adjusts pixel intensity distributions in color images to enhance object visibility in fog, haze, or smoke.
This device segments measurement tasks using dual projectors and cameras to resolve the trade-off between fine deformation resolution and coarse deformation coverage.
A segmentation method applies noise-dependent weights to guide model adaptation during image processing.
A medical image segmentation method generates range images from coordinate and gray-level distances to refine target regions.
A camera and controller classify plant growth stages to adjust lighting, reducing labor intensity.
A medical image processing apparatus switches between fractional flow reserve and wall shear stress indices based on extracted disease severity.
A system quantifies image sharpness across distinct regions to generate numeric focus metrics for rapid visual assessment.