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Matthew O’Toole

6 accepted papers

2023

Analyzing Physical Impacts Using Transient Surface Wave Imaging

CVPR 2023poster

The subtle vibrations on an object's surface contain information about the object's physical properties and its interaction with the environment. Prior works imaged surface vibration to recover the object's material properties via modal analysis, which discards the transient vibrations propagating i…

Cited by 1SourcePDFScholar
2023

Azimuth Super-Resolution for FMCW Radar in Autonomous Driving

CVPR 2023poster

We tackle the task of Azimuth (angular dimension) super-resolution for Frequency Modulated Continuous Wave (FMCW) multiple-input multiple-output (MIMO) radar. FMCW MIMO radar is widely used in autonomous driving alongside Lidar and RGB cameras. However, compared to Lidar, MIMO radar is usually of lo…

2023

HyperReel: High-Fidelity 6-DoF Video With Ray-Conditioned Sampling

CVPR 2023highlight

Volumetric scene representations enable photorealistic view synthesis for static scenes and form the basis of several existing 6-DoF video techniques. However, the volume rendering procedures that drive these representations necessitate careful trade-offs in terms of quality, rendering speed, and me…

2023

Implicit Neural Head Synthesis via Controllable Local Deformation Fields

CVPR 2023poster

High-quality reconstruction of controllable 3D head avatars from 2D videos is highly desirable for virtual human applications in movies, games, and telepresence. Neural implicit fields provide a powerful representation to model 3D head avatars with personalized shape, expressions, and facial parts,…

Cited by 12SourcePDFScholar
2020

Efficient Non-Line-of-Sight Imaging from Transient Sinograms

ECCV 2020poster

Non-line-of-sight (NLOS) imaging techniques use light that diffusely reflects off of visible surfaces (e.g., walls) to see around corners. One approach involves using pulsed lasers and ultrafast sensors to measure the travel time of multiply scattered light. Unlike existing NLOS techniques that gene…

Cited by 48SourcePDFScholar