Generating extended focal planes from focus stack images reduces disocclusions and holes during large viewpoint changes while maintaining image quality.
Movable optical modules adjust light paths to eliminate fixed alignment costs and boost transmittance in two-dimensional modes.
A head mounted display adjusts image resolution based on detected sightline direction to optimize visual output.
Segmenting pixels into main and auxiliary sections maintains aperture ratio while improving vertical viewing angle without reducing luminance.
Liquid crystal panels orient light polarization to modulate emission from scanning aperture arrays in autostereoscopic displays.
Direct bonding of the grating to the display panel eliminates pad layers, reducing thickness and weight while maintaining 3D viewing effects.
A stereoscopic display adjusts left and right image disparities based on detected viewer head roll to maintain comfortable viewing.
Electromagnetic radiation drives alternating lens transparency to deliver stereoscopic imaging without electronic shutter components.
Segmented lenticular lenses prevent black matrix magnification, resolving readability trade-offs in autostereoscopic displays.
Adaptive support windows upsample low resolution depth data using nearest neighbor interpolation and integral data for high precision.
Synchronizing surface light pulses with shutter-opened periods allows color temperature adjustment without restricting luminance, preserving video vividness.
A vehicle display apparatus adjusts output modes based on driver eye position to maintain stereoscopic image clarity.
A single camera lens captures multi-angle views through a lenticular screen, with an image processor rearranging pixel data for stereoscopic display.
Segmented electrodes generate vertical fields to eliminate horizontal distortion and reduce liquid crystal volume.
Segmenting sub-pixel columns into staggered arrangements isolates viewing angles, preventing interference between different viewpoint images.
A binocular stereo camera system constructs three-dimensional grid maps using disparity images and spatial geometry processing.
A stereo-aware image editing system builds a three-dimensional scene model from input images to enable flexible manipulation of visual content.
Dynamic liquid crystal adjustment aligns image beams with varying display polarizers, eliminating dark images and reducing production costs.
Dextrorotatory and levorotatory lines on a spherical surface enable full surface touch sensing without internal lead wires, eliminating device complexity.
A centralized production system segments and multiplexes 3D video signals for dynamic stream generation across diverse devices.
A bump on strip electrodes positions beads away from active areas, preventing lens distortion and reducing crosstalk in 3D displays.