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Artifacts in Photoacoustic Imaging: Origins and Mitigations

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arxiv 2504.12772 v1 pith:225L3ROJ submitted 2025-04-17 physics.med-ph

classification physics.med-ph
keywords artifactscausesclinicaldescribeimagingphotoacousticprovidingsystems
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Photoacoustic imaging (PAI) is rapidly moving from the laboratory to the clinic, increasing the need to understand confounders which might adversely affect patient care. Over the past five years, landmark studies have shown the clinical utility of PAI, leading to regulatory approval of several devices. In this article, we describe the various causes of artifacts in PAI, providing schematic overviews and practical examples, simulated as well as experimental. This work serves two purposes: (1) educating clinical users to identify artifacts, understand their causes, and assess whether their impact, and (2) providing a reference of the limitations of current systems for those working to improve them. We explain how two aspects of PAI systems lead to artifacts: their inability to measure complete data sets, and embedded assumptions during reconstruction. We describe the physics underlying PAI, and propose a classification of the artifacts. The paper concludes by discussing possible advanced mitigation strategies.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Digital twins enable full-reference quality assessment of photoacoustic image reconstructions

    physics.med-ph 2025-05 conditional novelty 6.0 of 10

    Digital twins provide a simulated reference that enables full-reference quality comparison of photoacoustic image reconstructions on experimental data.

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