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A General Framework for Inverse Problem Solving using Self-Supervised Deep Learning: Validations in Ultrasound and Photoacoustic Image Reconstruction

Authors :
Congzhi Wang
Jianwen Luo
Jingke Zhang
Qiong He
Hongen Liao
Source :
2021 IEEE International Ultrasonics Symposium (IUS).
Publication Year :
2021
Publisher :
IEEE, 2021.

Abstract

The image reconstruction process in medical imaging can be treated as solving an inverse problem. The inverse problem is usually solved using time-consuming iterative algorithms with sparsity or other constraints. Recently, deep neural network (DNN)-based methods have been developed to accelerate the inverse-problem-solving process. However, these methods typically adopt supervised learning scheme, which requires ground truths, or labels of the solutions, for training. In many applications, it would be challenging or even impossible to obtain the ground truth, such as the tissue reflectivity function in ultrasound beamforming. In this study, a general framework based on self-supervised learning (SSL) scheme is proposed to train a DNN to solve the inverse problems. In this way, the measurements can be used as both the inputs and the labels during the training of DNN. The proposed SSL method is applied to four typical linear inverse problems for validation, i.e., plane wave ultrasound and photoacoustic image reconstructions, compressed sensing-based synthetic transmit aperture dataset recovery and deconvolution in ultrasound localization microscopy. Results show that, using the proposed framework, the trained DNN can achieve improved reconstruction accuracy with reduced computational time, compared with conventional methods.<br />Comment: to be published in Proceedings of IEEE IUS 2021

Details

Database :
OpenAIRE
Journal :
2021 IEEE International Ultrasonics Symposium (IUS)
Accession number :
edsair.doi.dedup.....2f8315e392fa7e1dcd04c65dbbc5249b