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June 3, 2026Journal of Marine Science and Engineering0 citationsOpen Access

A Training-Free Selective-Processing Workflow for In Situ Marine Particle Fields Using Parallel Phase-Shifting Digital Holography

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XLXinran LiuHMHaoran Meng

Key Points

  • This research aims to develop a training-free workflow for efficient processing of in situ marine particle fields captured through digital holography.
  • Conducted a PPSDH campaign over 9521 frames in the coastal South China Sea.
  • Implemented a two-stage selective-processing workflow involving contrast metric pruning and ROI-restricted reconstruction.
  • Evaluated workflow efficiency using a balanced 120-frame benchmark.
  • Stage 1 retained 6970 frames, achieving a 73.2% retention rate of the original sequence.
  • Stage 2 achieved a spatial-support reduction ratio of 49.9% ± 12.0%.
  • The complete workflow produced a 5.66-fold speedup compared to traditional full-frame processing.

Abstract

In situ marine particle-field observation by parallel phase-shifting digital holography (PPSDH) produces long image sequences under real deployment conditions, but exhaustive full-frame reconstruction and segmentation are computationally expensive when many frames are low contrast and particle-like targets occupy sparse regions. This paper presents a training-free two-stage selective-processing workflow for a 9521-frame coastal South China Sea PPSDH campaign. Stage 1 uses an amplitude-derived contrast metric as a campaign-specific pruning rule to form a retained-frame pool, and Stage 2 combines coarse reconstruction, candidate filtering, valid-field gating, and ROI merging for ROI-restricted reconstruction and segmentation. Stage 1 retained 6970 frames, corresponding to 73.2% of the full sequence. On a balanced 120-frame benchmark, Stage 2 achieved a spatial-support reduction ratio of 49.9% ± 12.0%, and the complete workflow provided a 5.66-fold end-to-end speedup relative to a matched full-frame baseline. The efficiency gain was accompanied by a measurable fidelity cost, with a baseline-matched correspondence rate of 0.612 and a count-based yield gap of 0.287, mainly associated with small or weak targets within the selected ROI support. These results show that the proposed workflow can support computation-aware review of real marine PPSDH particle fields by efficiently prioritizing informative frames and particle-like regions for downstream visual assessment.

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Cite This Study

Liu et al. (2026) studied this question.

synapsesocial.com/papers/6a1fc6f7dee9eb8c0dce7d9dhttps://doi.org/10.3390/jmse14111030
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