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Berthy T. Feng

5 accepted papers

2026

Dynamic Black-hole Emission Tomography with Physics-informed Neural Fields

CVPR 2026

With the success of static black-hole imaging, the next frontier is the dynamic and 3D imaging of black holes. Recovering the dynamic 3D gas near a black hole would reveal previously-unseen parts of the universe and inform new physics models. However, only sparse radio measurements from a single vie

Cited by 0SourcecodeScholar
2025

Visual Surface Wave Elastography: Revealing Subsurface Physical Properties via Visible Surface Waves

ICCV 2025poster

Wave propagation on the surface of a material contains information about physical properties beneath its surface. We propose a method for inferring the thickness and stiffness of a structure from just a video of waves on its surface. Our method works by extracting a dispersion relation from the vide…

Cited by 1SourcePDFScholar
2024

Score-based Diffusion Models for Photoacoustic Tomography Image Reconstruction

ICASSP 2024accepted

Photoacoustic tomography (PAT) is a rapidly-evolving medical imaging modality that combines optical absorption contrast with ultrasound imaging depth. One challenge in PAT is image reconstruction with inadequate acoustic signals due to limited sensor coverage or due to the density of the transducer…

Cited by 0SourceScholar
2023

Score-Based Diffusion Models as Principled Priors for Inverse Imaging

ICCV 2023poster

Priors are essential for reconstructing images from noisy and/or incomplete measurements. The choice of the prior determines both the quality and uncertainty of recovered images. We propose turning score-based diffusion models into principled image priors ("score-based priors") for analyzing a poste…

Cited by 85PDFScholar
2022

Visual Vibration Tomography: Estimating Interior Material Properties From Monocular Video

CVPR 2022oral

An object's interior material properties, while invisible to the human eye, determine motion observed on its surface. We propose an approach that estimates heterogeneous material properties of an object from a monocular video of its surface vibrations. Specifically, we show how to estimate Young's m…

Cited by 10PDFScholar