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Low-Dose CT Using Denoising Diffusion Probabilistic Model for 20$\times$ Speedup

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arxiv 2209.15136 v1 pith:GLCG2R2W submitted 2022-09-29 eess.IV cs.LGeess.SPphysics.med-ph

classification eess.IVcs.LGeess.SPphysics.med-ph
keywords ddpmdenoisingldctmodeldiffusionefficiencyhighlow-dose
verification ladder T0 review T1 audit T2 compute T3 formal
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Low-dose computed tomography (LDCT) is an important topic in the field of radiology over the past decades. LDCT reduces ionizing radiation-induced patient health risks but it also results in a low signal-to-noise ratio (SNR) and a potential compromise in the diagnostic performance. In this paper, to improve the LDCT denoising performance, we introduce the conditional denoising diffusion probabilistic model (DDPM) and show encouraging results with a high computational efficiency. Specifically, given the high sampling cost of the original DDPM model, we adapt the fast ordinary differential equation (ODE) solver for a much-improved sampling efficiency. The experiments show that the accelerated DDPM can achieve 20x speedup without compromising image quality.

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  1. Tomographic Foundation Model -- FORCE: Flow-Oriented Reconstruction Conditioning Engine

    eess.IV 2025-06 conditional novelty 5.0 of 10

    FORCE, a PFGM++-based reconstruction framework with data-fidelity conditioning, outperforms several unsupervised CT reconstruction baselines on low-dose and sparse-view benchmarks, but its metal-artifact results are o...

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