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◆ Optics Continuum2026-04-30· Optical coherence tomography

Theoretical analysis of performance limitations of computational refocusing in optical coherence tomography

Yue Zhu, Shuichi Makita, Naoki Fukutake, Yoshiaki Yasuno

原始摘要(英文原文)· Original abstract
High-numerical-aperture optical coherence tomography (OCT) enables sub-cellular imaging but faces a trade-off between lateral resolution and depth of focus. Computational refocusing can correct defocus in Fourier-domain OCT, but its limitations have not been well compared and discussed across OCT modalities. We formulate the lateral imaging process of OCT by using pupil-based imaging theory, and the constraints of the computational refocusing in point-scanning OCT and spatially-coherent full-field OCT (FFOCT) are analyzed. The constraints in lateral sampling density and the confocality are considered, and it is shown that the maximum correctable defocus (MCD) is primarily limited by confocality in point-scanning OCT, while spatially-coherent FFOCT has no such constraint and can achieve virtually infinite MCD with a proper and reasonable sampling density. This makes spatially-coherent FFOCT particularly suitable for optical coherence microscopy.
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