Dc-EEMF: Decision-level constrained multi-focus image fusion for multi-modality photoacoustic microscopy.
basic_science · Level V
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- Record sourced from PubMed, PMID 42224312.
- Also identified by DOI 10.1109/TBME.2026.3697753.
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Abstract
Multi-modality photoacoustic microscopy (mPAM) is a powerful technique for revealing disease pathology, yet its optical-resolution mode is fundamentally limited by the shallow depth-of-field (DoF) of Gaussian beams. Here, we proposed a decision-level constrained end-to-end multi-focus image fusion (Dc-EEMF) powered mPAM for extension of DoF. By integrating a lightweight siamese network with an artifact-resistant channel-wise spatial frequency fusion rule and a U-Net-based decision level focus perceptual loss, Dc-EEMF effectively combines the advantages of spatial and transform domain fusion strategies. It not only achieves superior fusion performance within a single modality, outperforming existing fusion techniques, but also demonstrates strong generalizability across diverse microscopy platforms.