Fourier space aberration correction for high resolution refractive index imaging using incoherent light

Author:

Chung Yoonjae12ORCID,Hugonnet Herve12ORCID,Hong Seung-Mo3,Park YongKeun124ORCID

Affiliation:

1. Korea Advanced Institute of Science and Technology

2. KAIST

3. University of Ulsan College of Medicine

4. Tomocube Inc.

Abstract

An aberration correction method is introduced for 3D phase deconvolution microscopy. Our technique capitalizes on multiple illumination patterns to iteratively extract Fourier space aberrations, utilizing the overlapping information inherent in these patterns. By refining the point spread function based on the retrieved aberration data, we significantly improve the precision of refractive index deconvolution. We validate the effectiveness of our method on both synthetic and biological three-dimensional samples, achieving notable enhancements in resolution and measurement accuracy. The method's reliability in aberration retrieval is further confirmed through controlled experiments with intentionally induced spherical aberrations, underscoring its potential for wide-ranging applications in microscopy and biomedicine.

Funder

Institute for Information and Communications Technology Promotion

National Research Foundation of Korea

KAIST Institute of Technology Value Creation

Publisher

Optica Publishing Group

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