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A Review on Low-Dose Emission Tomography Post-Reconstruction Denoising with Neural Network Approaches

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arxiv 2401.00232 v2 pith:QK5FMBUG submitted 2023-12-30 physics.med-ph

A Review on Low-Dose Emission Tomography Post-Reconstruction Denoising with Neural Network Approaches

classification physics.med-ph
keywords low-doseapproachesdeepemissionfieldimagingmedicalnetwork
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Low-dose emission tomography (ET) plays a crucial role in medical imaging, enabling the acquisition of functional information for various biological processes while minimizing the patient dose. However, the inherent randomness in the photon counting process is a source of noise which is amplified in low-dose ET. This review article provides an overview of existing post-processing techniques, with an emphasis on deep neural network (NN) approaches. Furthermore, we explore future directions in the field of NN-based low-dose ET. This comprehensive examination sheds light on the potential of deep learning in enhancing the quality and resolution of low-dose ET images, ultimately advancing the field of medical imaging.

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