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Stabilizing deep tomographic reconstruction: Part A. Hybrid framework and experimental results.


ABSTRACT: A recent PNAS paper reveals that several popular deep reconstruction networks are unstable. Specifically, three kinds of instabilities were reported: (1) strong image artefacts from tiny perturbations, (2) small features missed in a deeply reconstructed image, and (3) decreased imaging performance with increased input data. Here, we propose an analytic compressed iterative deep (ACID) framework to address this challenge. ACID synergizes a deep network trained on big data, kernel awareness from compressed sensing (CS)-inspired processing, and iterative refinement to minimize the data residual relative to real measurement. Our study demonstrates that the ACID reconstruction is accurate, is stable, and sheds light on the converging mechanism of the ACID iteration under a bounded relative error norm assumption. ACID not only stabilizes an unstable deep reconstruction network but also is resilient against adversarial attacks to the whole ACID workflow, being superior to classic sparsity-regularized reconstruction and eliminating the three kinds of instabilities.

SUBMITTER: Wu W 

PROVIDER: S-EPMC9122961 | biostudies-literature | 2022 May

REPOSITORIES: biostudies-literature

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Stabilizing deep tomographic reconstruction: Part A. Hybrid framework and experimental results.

Wu Weiwen W   Hu Dianlin D   Cong Wenxiang W   Shan Hongming H   Wang Shaoyu S   Niu Chuang C   Yan Pingkun P   Yu Hengyong H   Vardhanabhuti Varut V   Wang Ge G  

Patterns (New York, N.Y.) 20220406 5


A recent PNAS paper reveals that several popular deep reconstruction networks are unstable. Specifically, three kinds of instabilities were reported: (1) strong image artefacts from tiny perturbations, (2) small features missed in a deeply reconstructed image, and (3) decreased imaging performance with increased input data. Here, we propose an analytic compressed iterative deep (ACID) framework to address this challenge. ACID synergizes a deep network trained on big data, kernel awareness from c  ...[more]

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