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Richard Shaw

5 accepted papers

2026

CHROMA: Consistent Harmonization of Multi-View Appearance via Bilateral Grid Prediction

ICLR 2026poster

Modern camera pipelines apply extensive on-device processing, such as exposure adjustment, white balance, and color correction, which, while beneficial individually, often introduce photometric inconsistencies across views. These appearance variations violate multi-view consistency and degrade novel…

Cited by 0SourceScholar
2026

Off The Grid: Detection of Primitives for Feed-Forward 3D Gaussian Splatting

CVPR 2026

Feed-forward 3D Gaussian Splatting (3DGS) models enable real-time scene generation but are hindered by suboptimal pixel-aligned primitive placement, which relies on a dense, rigid grid that limits both quality and efficiency. We introduce a new feed-forward architecture that detects 3D Gaussian prim

Cited by 0SourceScholar
2024

HeadGaS: Real-Time Animatable Head Avatars via 3D Gaussian Splatting

ECCV 2024poster

"3D head animation has seen major quality and runtime improvements over the last few years, particularly empowered by the advances in differentiable rendering and neural radiance fields. Real-time rendering is a highly desirable goal for real-world applications. We propose HeadGaS, a model that uses…

Cited by 35SourcePDFScholar
2024

Human Gaussian Splatting: Real-time Rendering of Animatable Avatars

CVPR 2024poster

This work addresses the problem of real-time rendering of photorealistic human body avatars learned from multi-view videos. While the classical approaches to model and render virtual humans generally use a textured mesh recent research has developed neural body representations that achieve impressiv…

2024

RoGUENeRF: A Robust Geometry-Consistent Universal Enhancer for NeRF

ECCV 2024poster

"Recent advances in neural rendering have enabled highly photorealistic 3D scene reconstruction and novel view synthesis. Despite this progress, current state-of-the-art methods struggle to reconstruct high frequency detail, due to factors such as a low-frequency bias of radiance fields and inaccura…