ELECTRO-OPTICS  LABORATORY

Department of Electrical and Computer Engineering

Optical sectioning in 3D interferenceless coded aperture correlation holography by projecting images onto complex space and computational reconstruction

Sai Deepika Sure, Vijayakumar Anand, Joseph Rosen

Imaging thick and complex objects remains a significant challenge because out-of-focus information produces blurred background noise. Traditionally, particularly in biological studies, physical sectioning has been the gold standard for depth-resolved imaging; however, it irreversibly damages the sample. Confocal imaging offers a fully noninvasive alternative, enabling the acquisition of high-contrast 2D image stacks from 3D specimens with minimal background noise. However, current state-of-the-art confocal systems depend on pixel-by-pixel mechanical or electronic scanning, which substantially increases both imaging time and system cost. In this study, we introduce a new non-scanning optical sectioning and background noise suppression method based on the well-known technique of interferenceless coded aperture correlation holography. In the proposed method, three camera recordings are digitally projected onto the complex space; each camera recording is a system's response to the appearance of a multi-plane object at the system's input. The three camera recordings are different from each other since the object light is modulated by three different coded phase aperture masks. The image reconstruction is achieved through deconvolution between two complex-valued functions, the above-mentioned system-to-object response and computational point spread function. The phase distribution of the deconvolution serves as a filter enabling reconstruction of images in the desired z-slice only, excluding out-of-focus images and minimizing background noise. The proposed method is verified through experimental validation with two and three depth planes. The experimental results are characterized by enhanced axial selectivity, reduced background noise, and high-quality reconstruction.

Publication language English
Journal Optics and Laser Technology
Volume 202
Publication status Published - 01.10.2026
115351

Keywords

Coded phase mask
Complex correlation
Computational reconstruction
Depth of field
Optical sectioning
and deconvolution

ASJC Scopus subject areas

Electronic, Optical and Magnetic Materials
Atomic and Molecular Physics, and Optics
Electrical and Electronic Engineering