3D Microscope Imaging System based on the Transport of Intensity Equation

Authors

  • Tianqi Hu Manlius Pebble Hill School, Syracuse, USA

DOI:

https://doi.org/10.62051/vnxzjq61

Keywords:

TIE; microscopy; 3D imaging.

Abstract

This study aims to develop and implement a low-cost, high-resolution three-dimensional biological sample imaging system based on the light intensity transmission equation (TIE) technology to obtain the three-dimensional phase information of biological samples in a non-destructive way. The system can provide non-staining, real-time three-dimensional reconstruction images through a common optical path design, combined with a standard LED light source, CMOS sensor and optical components. The goal of this study is to provide a simpler and lower-cost imaging technology for biology, medicine and other related fields, especially for cell imaging, pathological analysis and other aspects.

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References

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[3] Hell, S. W., & Wichmann, J. (1994). Breaking the diffraction resolution limit by stimulated emission: stimulated-emission-depletion fluorescence microscopy. Optics Letters, 19 (11), 780 – 782. DOI: https://doi.org/10.1364/OL.19.000780

[4] Teague, M. R. (1983). Deterministic phase retrieval: a green’s function solution. JOSA, 73 (11), 1434 – 1441. DOI: https://doi.org/10.1364/JOSA.73.001434

[5] Popescu, G. (2011). Quantitative Phase Imaging of Cells and Tissues. McGraw-Hill Education.

[6] Situ, G., et al. (2004). Image reconstruction using the transport of intensity equation. Optics Express, 12 (20), 4929 – 4934.

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Published

25-12-2025

How to Cite

Hu, T. (2025). 3D Microscope Imaging System based on the Transport of Intensity Equation. Transactions on Computer Science and Intelligent Systems Research, 11, 134-140. https://doi.org/10.62051/vnxzjq61