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Compact Linnik-type hyperspectral quantitative phase microscope for advanced classification of cellular components

Permanent link
https://hdl.handle.net/10037/36740
DOI
https://doi.org/10.1002/jbio.202400088
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Date
2024-06-20
Type
Journal article
Tidsskriftartikkel
Peer reviewed

Author
Joshi, Himanshu; Singh, Bhanu Pratap; Butola, Ankit; Surya, Varun; Mishra, Deepika; Agarwal, Krishna; Mehta, Dalip Singh
Abstract
Hyperspectral quantitative phase microscopy (HS-QPM) involves the acquisition of phase images across narrow spectral bands, which enables wavelength-dependent study of different biological samples. In the present work, a compact Linnik-type HS-QPM system is developed to reduce the instability and complexity associated with conventional HS-QPM techniques. The use of a single objective lens for both reference and sample arms makes the setup compact. The capabilities of the system are demonstrated by evaluating the HS phase map of both industrial and biological specimens. Phase maps of exfoliated cheek cells at different wavelengths are stacked to form a HS phase cube, adding spectral dimensionality to spatial phase distribution. Analysis of wavelength response of different cellular components are performed using principal component analysis to identify dominant spectral features present in the HS phase dataset. Findings of the study emphasize on the efficiency and effectiveness of HS-QPM for advancing cellular characterization in biomedical research and clinical applications.
Publisher
Wiley
Citation
Joshi, Singh, Butola, Surya, Mishra, Agarwal, Mehta. Compact Linnik-type hyperspectral quantitative phase microscope for advanced classification of cellular components. Journal of Biophotonics. 2024;17
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