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  4. Inverse Rendering for PET Image Reconstruction
 
conference paper

Inverse Rendering for PET Image Reconstruction

Jakob, Wenzel  
•
Li, Yixin
•
Wang, Zipai
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October 26, 2024
2024 IEEE Nuclear Science Symposium (NSS), Medical Imaging Conference (MIC) and Room Temperature Semiconductor Detector Conference (RTSD)
2024 IEEE Symposium on Nuclear Science (NSS/MIC)

Differentiable rendering (DR) is an emerging field that facilitates the calculation and propagation of gradients of 3D objects through images. In contrast to deep neural networks (DNNs), which generally lack the understanding of 3D objects that form the image, DR mitigates the need for extensive 3D data collection and annotation, thereby offering a higher success rate across a range of applications. In this work, we introduce a new approach in positron emission tomography (PET) image reconstruction, leveraging inverse rendering (IR) techniques which aim to reconstruct the highest resolution image from the measured sinograms, outperforming other algorithms based on DNNs or maximum likelihood expectation maximization (MLEM).

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Type
conference paper
DOI
10.1109/NSS/MIC/RTSD57108.2024.10654967
Author(s)
Jakob, Wenzel  

EPFL

Li, Yixin
Wang, Zipai
Nicolet, Baptiste  

EPFL

Tan, Wanbin
Goldan, Amir
Date Issued

2024-10-26

Publisher

IEEE

Published in
2024 IEEE Nuclear Science Symposium (NSS), Medical Imaging Conference (MIC) and Room Temperature Semiconductor Detector Conference (RTSD)
DOI of the book
https://doi.org/10.1109/NSS/MIC/RTSD57108.2024
ISBN of the book

979-8-3503-8815-2

Published in
iconductor Detector Conference (RTSD)
Subjects

Inverse rendering

•

image reconstruction

•

positron emission tomography (PET)

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
RGL  
Event nameEvent acronymEvent placeEvent date
2024 IEEE Symposium on Nuclear Science (NSS/MIC)

Tampa, Florida

2024-10-26 - 2024-11-02

Available on Infoscience
April 22, 2025
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/249384
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