LeiaPix (Immersity AI)
Turn 2D images and videos into immersive 3D spatial content with advanced depth-mapping AI.
Real-time 3D holographic presence using a single camera for spatial communication.
Matsuko is a pioneer in the spatial computing sector, providing a software-only solution that transforms standard 2D video feeds into high-fidelity 3D holograms in real-time. Unlike traditional volumetric capture systems that require expensive multi-camera rigs and green screens, Matsuko utilizes advanced neural networks and deep learning models to reconstruct 3D human representations from a single iPhone or webcam stream. By 2026, Matsuko has positioned itself as the standard for 'Holographic Meetings,' filling the gap between flat video calls and cartoonish avatars used in legacy metaverses. Its technical architecture focuses on volumetric compression and low-latency transmission, ensuring that 3D data can be streamed over standard 5G and broadband connections. The platform is hardware-agnostic, supporting a wide array of XR devices including Meta Quest, Apple Vision Pro, and HoloLens, as well as providing 2D-viewable 3D for desktop users. This accessibility facilitates massive enterprise adoption for remote executive presence, high-stakes medical consultations, and immersive training environments where non-verbal cues and spatial depth are critical for success.
Uses deep convolutional neural networks to infer depth from RGB data without a LiDAR sensor.
Turn 2D images and videos into immersive 3D spatial content with advanced depth-mapping AI.
Photorealistic 3D customization and spatial visualization for bespoke furniture design.
Real-time neural rendering and 3D reconstruction in seconds using multi-resolution hash encoding.
The world's most advanced platform for high-performance spatial computing and augmented reality experiences.
Verified feedback from the global deployment network.
Post queries, share implementation strategies, and help other users.
A proprietary codec that reduces 3D point cloud data size by 90% for real-time streaming.
AI adjusts the lighting of the hologram to match the ambient light of the receiver's room.
Synchronizes spatial coordinate systems across different hardware (Quest vs. Apple Vision Pro).
Custom Real-Time Communication protocol optimized for high-throughput volumetric packets.
Advanced rotoscoping AI that isolates the human subject from complex backgrounds in 3D space.
Gaze correction algorithms that adjust the hologram's eyes to simulate direct eye contact with the camera.
Video fatigue and lack of presence in remote corporate leadership.
Registry Updated:2/7/2026
Difficulty for specialists to visualize patient posture and movement over 2D video.
Collaborating on physical goods from remote locations.