default search action
Christopher A. Metzler
Person information
- affiliation: University of Maryland, College Park, Department of Computer Science, MD, USA
- affiliation (PhD 2019): Rice University, Houston, TX, USA
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2024
- [j7]Kevin Zhang, Sakshum Kulshrestha, Christopher A. Metzler:
A Scalable Training Strategy for Blind Multi-Distribution Noise Removal. IEEE Trans. Image Process. 33: 6216-6226 (2024) - [c27]Hadi Alzayer, Kevin Zhang, Brandon Y. Feng, Christopher A. Metzler, Jia-Bin Huang:
Seeing the World through Your Eyes. CVPR 2024: 4864-4873 - [c26]Sachin Shah, Matthew A. Chan, Haoming Cai, Jingxi Chen, Sakshum Kulshrestha, Chahat Deep Singh, Yiannis Aloimonos, Christopher A. Metzler:
CodedEvents: Optimal Point-Spread-Function Engineering for 3D-Tracking with Event Cameras. CVPR 2024: 25265-25275 - [c25]Mingyang Xie, Haiyun Guo, Brandon Y. Feng, Lingbo Jin, Ashok Veeraraghavan, Christopher A. Metzler:
WaveMo: Learning Wavefront Modulations to See Through Scattering. CVPR 2024: 25276-25285 - [c24]Mingyang Xie, Haoming Cai, Sachin Shah, Yiran Xu, Brandon Y. Feng, Jiabin Huang, Christopher A. Metzler:
Flash-Splat: 3D Reflection Removal with Flash Cues and Gaussian Splats. ECCV (82) 2024: 122-139 - [c23]Xi Chen, Zhewen Hou, Christopher A. Metzler, Arian Maleki, Shirin Jalali:
Bagged Deep Image Prior for Recovering Images in the Presence of Speckle Noise. ICML 2024 - [c22]Mohamad Qadri, Kevin Zhang, Akshay Hinduja, Michael Kaess, Adithya Pediredla, Christopher A. Metzler:
AONeuS: A Neural Rendering Framework for Acoustic-Optical Sensor Fusion. SIGGRAPH (Conference Paper Track) 2024: 127 - [i33]Mohamad Qadri, Kevin Zhang, Akshay Hinduja, Michael Kaess, Adithya Pediredla, Christopher A. Metzler:
AONeuS: A Neural Rendering Framework for Acoustic-Optical Sensor Fusion. CoRR abs/2402.03309 (2024) - [i32]Matthew A. Chan, Maria J. Molina, Christopher A. Metzler:
Hyper-Diffusion: Estimating Epistemic and Aleatoric Uncertainty with a Single Model. CoRR abs/2402.03478 (2024) - [i31]Xi Chen, Zhewen Hou, Christopher A. Metzler, Arian Maleki, Shirin Jalali:
Bagged Deep Image Prior for Recovering Images in the Presence of Speckle Noise. CoRR abs/2402.15635 (2024) - [i30]Matthew R. Ziemann, Christopher A. Metzler:
Adaptive LPD Radar Waveform Design with Generative Deep Learning. CoRR abs/2403.12254 (2024) - [i29]Jingxi Chen, Brandon Y. Feng, Haoming Cai, Mingyang Xie, Christopher A. Metzler, Cornelia Fermüller, Yiannis Aloimonos:
TimeRewind: Rewinding Time with Image-and-Events Video Diffusion. CoRR abs/2403.13800 (2024) - [i28]Ziyuan Qu, Omkar Vengurlekar, Mohamad Qadri, Kevin Zhang, Michael Kaess, Christopher A. Metzler, Suren Jayasuriya, Adithya Pediredla:
Z-Splat: Z-Axis Gaussian Splatting for Camera-Sonar Fusion. CoRR abs/2404.04687 (2024) - [i27]Mingyang Xie, Haiyun Guo, Brandon Y. Feng, Lingbo Jin, Ashok Veeraraghavan, Christopher A. Metzler:
WaveMo: Learning Wavefront Modulations to See Through Scattering. CoRR abs/2404.07985 (2024) - [i26]Tianyi Xiong, Jiayi Wu, Botao He, Cornelia Fermüller, Yiannis Aloimonos, Heng Huang, Christopher A. Metzler:
Event3DGS: Event-Based 3D Gaussian Splatting for High-Speed Robot Egomotion. CoRR abs/2406.02972 (2024) - [i25]Sachin Shah, Matthew Albert Chan, Haoming Cai, Jingxi Chen, Sakshum Kulshrestha, Chahat Deep Singh, Yiannis Aloimonos, Christopher A. Metzler:
CodedEvents: Optimal Point-Spread-Function Engineering for 3D-Tracking with Event Cameras. CoRR abs/2406.09409 (2024) - [i24]Sachin Shah, Naitri Rajyaguru, Chahat Deep Singh, Christopher A. Metzler, Yiannis Aloimonos:
CodedVO: Coded Visual Odometry. CoRR abs/2407.18240 (2024) - [i23]Mingyang Xie, Haoming Cai, Sachin Shah, Yiran Xu, Brandon Y. Feng, Jia-Bin Huang, Christopher A. Metzler:
Flash-Splat: 3D Reflection Removal with Flash Cues and Gaussian Splats. CoRR abs/2410.02764 (2024) - [i22]Jingxi Chen, Brandon Y. Feng, Haoming Cai, Tianfu Wang, Levi Burner, Dehao Yuan, Cornelia Fermüller, Christopher A. Metzler, Yiannis Aloimonos:
Repurposing Pre-trained Video Diffusion Models for Event-based Video Interpolation. CoRR abs/2412.07761 (2024) - 2023
- [c21]Matthew R. Ziemann, Christopher A. Metzler:
Adaptive LPD Radar Waveform Design with Generative Adversarial Neural Networks. ACSSC 2023: 1039-1043 - [c20]Sachin Shah, Sakshum Kulshrestha, Christopher A. Metzler:
TiDy-PSFs: Computational Imaging with Time-Averaged Dynamic Point-Spread-Functions. ICCV 2023: 10623-10633 - [i21]Matthew A. Chan, Sean I. Young, Christopher A. Metzler:
SUD2: Supervision by Denoising Diffusion Models for Image Reconstruction. CoRR abs/2303.09642 (2023) - [i20]Sachin Shah, Sakshum Kulshrestha, Christopher A. Metzler:
TiDy-PSFs: Computational Imaging with Time-Averaged Dynamic Point-Spread-Functions. CoRR abs/2303.17583 (2023) - [i19]Hadi Alzayer, Kevin Zhang, Brandon Y. Feng, Christopher A. Metzler, Jia-Bin Huang:
Seeing the World through Your Eyes. CoRR abs/2306.09348 (2023) - [i18]Mingyang Xie, Matthew A. Chan, Christopher A. Metzler:
Snapshot High Dynamic Range Imaging with a Polarization Camera. CoRR abs/2308.08094 (2023) - [i17]Kevin Zhang, Sakshum Kulshrestha, Christopher A. Metzler:
A Scalable Training Strategy for Blind Multi-Distribution Noise Removal. CoRR abs/2310.20064 (2023) - [i16]Haoming Cai, Jingxi Chen, Brandon Y. Feng, Weiyun Jiang, Mingyang Xie, Kevin Zhang, Ashok Veeraraghavan, Christopher A. Metzler:
ConVRT: Consistent Video Restoration Through Turbulence with Test-time Optimization of Neural Video Representations. CoRR abs/2312.04679 (2023) - 2022
- [j6]Saurav K. Shastri, Rizwan Ahmad, Christopher A. Metzler, Philip Schniter:
Denoising Generalized Expectation-Consistent Approximation for MR Image Recovery. IEEE J. Sel. Areas Inf. Theory 3(3): 528-542 (2022) - [j5]Brandon Y. Feng, Mingyang Xie, Christopher A. Metzler:
TurbuGAN: An Adversarial Learning Approach to Spatially-Varying Multiframe Blind Deconvolution With Applications to Imaging Through Turbulence. IEEE J. Sel. Areas Inf. Theory 3(3): 543-556 (2022) - [c19]Brandon Y. Feng, Mingyang Xie, Christopher A. Metzler:
Imaging Through Turbulence with GANs. IEEECONF 2022: 509-513 - [c18]Matthew R. Ziemann, Christopher A. Metzler:
Transformers for Robust Radar Waveform Classification. IEEECONF 2022: 759-763 - [c17]Saurav K. Shastri, Rizwan Ahmad, Christopher A. Metzler, Philip Schniter:
Expectation Consistent Plug-and-Play for MRI. ICASSP 2022: 8667-8671 - [i15]Saurav K. Shastri, Rizwan Ahmad, Christopher A. Metzler, Philip Schniter:
Expectation Consistent Plug-and-Play for MRI. CoRR abs/2202.05820 (2022) - [i14]Brandon Y. Feng, Mingyang Xie, Christopher A. Metzler:
TurbuGAN: An Adversarial Learning Approach to Spatially-Varying Multiframe Blind Deconvolution with Applications to Imaging Through Turbulence. CoRR abs/2203.06764 (2022) - [i13]Saurav K. Shastri, Rizwan Ahmad, Christopher A. Metzler, Philip Schniter:
Denoising Generalized Expectation-Consistent Approximation for MRI Image Recovery. CoRR abs/2206.05049 (2022) - [i12]Kevin Zhang, Mingyang Xie, Maharshi Gor, Yi-Ting Chen, Yvonne Zhou, Christopher A. Metzler:
MetaDIP: Accelerating Deep Image Prior with Meta Learning. CoRR abs/2209.08452 (2022) - [i11]Rushil Joshi, Ethan Adams, Matthew R. Ziemann, Christopher A. Metzler:
Weakly-Supervised Semantic Segmentation of Ships Using Thermal Imagery. CoRR abs/2212.13170 (2022) - 2021
- [j4]Christopher A. Metzler, David B. Lindell, Gordon Wetzstein:
Keyhole Imaging: Non-Line-of-Sight Imaging and Tracking of Moving Objects Along a Single Optical Path. IEEE Trans. Computational Imaging 7: 1-12 (2021) - [c16]Christopher A. Metzler, Gordon Wetzstein:
Deep S3PR: Simultaneous Source Separation and Phase Retrieval Using Deep Generative Models. ICASSP 2021: 1370-1374 - [c15]Ruangrawee Kitichotkul, Christopher A. Metzler, Frank Ong, Gordon Wetzstein:
Suremap: Predicting Uncertainty in Cnn-Based Image Reconstructions Using Stein's Unbiased Risk Estimate. ICASSP 2021: 1385-1389 - [c14]Christopher A. Metzler, Gordon Wetzstein:
D-VDAMP: Denoising-Based Approximate Message Passing for Compressive MRI. ICASSP 2021: 1410-1414 - [c13]Hayato Ikoma, Cindy M. Nguyen, Christopher A. Metzler, Yifan Peng, Gordon Wetzstein:
Depth from Defocus with Learned Optics for Imaging and Occlusion-aware Depth Estimation. ICCP 2021: 1-12 - 2020
- [j3]Gregory Ongie, Ajil Jalal, Christopher A. Metzler, Richard G. Baraniuk, Alexandros G. Dimakis, Rebecca Willett:
Deep Learning Techniques for Inverse Problems in Imaging. IEEE J. Sel. Areas Inf. Theory 1(1): 39-56 (2020) - [j2]Manoj Kumar Sharma, Christopher A. Metzler, Sudarshan Nagesh, Richard G. Baraniuk, Oliver Cossairt, Ashok Veeraraghavan:
Inverse Scattering via Transmission Matrices: Broadband Illumination and Fast Phase Retrieval Algorithms. IEEE Trans. Computational Imaging 6: 95-108 (2020) - [c12]Gordon Wetzstein, Hayato Ikoma, Christopher A. Metzler, Yifan Peng:
Deep Optics: Learning Cameras and Optical Computing Systems. ACSSC 2020: 1313-1315 - [c11]Christopher A. Metzler, Hayato Ikoma, Yifan Peng, Gordon Wetzstein:
Deep Optics for Single-Shot High-Dynamic-Range Imaging. CVPR 2020: 1372-1382 - [c10]Mark Nishimura, David B. Lindell, Christopher A. Metzler, Gordon Wetzstein:
Disambiguating Monocular Depth Estimation with a Single Transient. ECCV (21) 2020: 139-155 - [i10]Christopher A. Metzler, Gordon Wetzstein:
Deep S3PR: Simultaneous Source Separation and Phase Retrieval Using Deep Generative Models. CoRR abs/2002.05856 (2020) - [i9]Gregory Ongie, Ajil Jalal, Christopher A. Metzler, Richard G. Baraniuk, Alexandros G. Dimakis, Rebecca Willett:
Deep Learning Techniques for Inverse Problems in Imaging. CoRR abs/2005.06001 (2020) - [i8]Ruangrawee Kitichotkul, Christopher A. Metzler, Frank Ong, Gordon Wetzstein:
SUREMap: Predicting Uncertainty in CNN-based Image Reconstruction Using Stein's Unbiased Risk Estimate. CoRR abs/2010.13214 (2020)
2010 – 2019
- 2019
- [i7]Christopher A. Metzler, Hayato Ikoma, Yifan Peng, Gordon Wetzstein:
Deep Optics for Single-shot High-dynamic-range Imaging. CoRR abs/1908.00620 (2019) - [i6]Christopher A. Metzler, David B. Lindell, Gordon Wetzstein:
Keyhole Imaging: Non-Line-of-Sight Imaging and Tracking of Moving Objects Along a Single Optical Path at Long Standoff Distances. CoRR abs/1912.06727 (2019) - 2018
- [c9]Christopher A. Metzler, Philip Schniter, Richard G. Baraniuk:
An Expectation-Maximization Approach to Tuning Generalized Vector Approximate Message Passing. LVA/ICA 2018: 395-406 - [c8]Christopher A. Metzler, Philip Schniter, Ashok Veeraraghavan, Richard G. Baraniuk:
prDeep: Robust Phase Retrieval with a Flexible Deep Network. ICML 2018: 3498-3507 - [i5]Christopher A. Metzler, Philip Schniter, Ashok Veeraraghavan, Richard G. Baraniuk:
prDeep: Robust Phase Retrieval with Flexible Deep Neural Networks. CoRR abs/1803.00212 (2018) - [i4]Christopher A. Metzler, Ali Mousavi, Reinhard Heckel, Richard G. Baraniuk:
Unsupervised Learning with Stein's Unbiased Risk Estimator. CoRR abs/1805.10531 (2018) - [i3]Christopher A. Metzler, Philip Schniter, Richard G. Baraniuk:
An Expectation-Maximization Approach to Tuning Generalized Vector Approximate Message Passing. CoRR abs/1806.10079 (2018) - 2017
- [c7]Christopher A. Metzler, Manoj Kumar Sharma, Sudarshan Nagesh, Richard G. Baraniuk, Oliver Cossairt, Ashok Veeraraghavan:
Coherent inverse scattering via transmission matrices: Efficient phase retrieval algorithms and a public dataset. ICCP 2017: 51-66 - [c6]Christopher A. Metzler, Ali Mousavi, Richard G. Baraniuk:
Learned D-AMP: Principled Neural Network based Compressive Image Recovery. NIPS 2017: 1772-1783 - [i2]Christopher A. Metzler, Ali Mousavi, Richard G. Baraniuk:
Learned D-AMP: A Principled CNN-based Compressive Image Recovery Algorithm. CoRR abs/1704.06625 (2017) - 2016
- [j1]Christopher A. Metzler, Arian Maleki, Richard G. Baraniuk:
From Denoising to Compressed Sensing. IEEE Trans. Inf. Theory 62(9): 5117-5144 (2016) - [c5]Christopher A. Metzler, Arian Maleki, Richard G. Baraniuk:
BM3D-PRGAMP: Compressive phase retrieval based on BM3D denoising. ICIP 2016: 2504-2508 - [c4]Christopher A. Metzler, Arian Maleki, Richard G. Baraniuk:
BM3D-PRGAMP: Compressive phase retrieval based on BM3D denoising. ICME Workshops 2016: 1-2 - 2015
- [c3]Sally L. Wood, Ernesto Fontenla, Christopher A. Metzler, Wah Chiu, Richard G. Baraniuk:
Iterative reconstruction from limited angle, limited view projections for cryo-electron tomography. ACSSC 2015: 760-764 - [c2]Sally L. Wood, Ernesto Fontenla, Christopher A. Metzler, Wah Chiu, Richard G. Baraniuk:
Dynamic model generation for application of compressed sensing to cryo-electron tomography reconstruction. SP/SPE 2015: 226-231 - [c1]Christopher A. Metzler, Arian Maleki, Richard G. Baraniuk:
BM3D-AMP: A new image recovery algorithm based on BM3D denoising. ICIP 2015: 3116-3120 - 2014
- [i1]Christopher A. Metzler, Arian Maleki, Richard G. Baraniuk:
From Denoising to Compressed Sensing. CoRR abs/1406.4175 (2014)
Coauthor Index
aka: Brandon Y. Feng
manage site settings
To protect your privacy, all features that rely on external API calls from your browser are turned off by default. You need to opt-in for them to become active. All settings here will be stored as cookies with your web browser. For more information see our F.A.Q.
Unpaywalled article links
Add open access links from to the list of external document links (if available).
Privacy notice: By enabling the option above, your browser will contact the API of unpaywall.org to load hyperlinks to open access articles. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Unpaywall privacy policy.
Archived links via Wayback Machine
For web page which are no longer available, try to retrieve content from the of the Internet Archive (if available).
Privacy notice: By enabling the option above, your browser will contact the API of archive.org to check for archived content of web pages that are no longer available. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Internet Archive privacy policy.
Reference lists
Add a list of references from , , and to record detail pages.
load references from crossref.org and opencitations.net
Privacy notice: By enabling the option above, your browser will contact the APIs of crossref.org, opencitations.net, and semanticscholar.org to load article reference information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Crossref privacy policy and the OpenCitations privacy policy, as well as the AI2 Privacy Policy covering Semantic Scholar.
Citation data
Add a list of citing articles from and to record detail pages.
load citations from opencitations.net
Privacy notice: By enabling the option above, your browser will contact the API of opencitations.net and semanticscholar.org to load citation information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the OpenCitations privacy policy as well as the AI2 Privacy Policy covering Semantic Scholar.
OpenAlex data
Load additional information about publications from .
Privacy notice: By enabling the option above, your browser will contact the API of openalex.org to load additional information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the information given by OpenAlex.
last updated on 2025-01-22 20:31 CET by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint