Optical Imaging and Spectroscopy Techniques Open access

Spectral characterisation of short-wave infrared (SWIR) tissue chromophores and tissue-mimicking phantom optical properties

Morgan R. Watt, Layla Malouf, Ran Tao, Isabelle Racicot and 3 more

bioRxiv (Cold Spring Harbor Laboratory) | Jul 7, 2026

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What this paper is about

This work characterises and evaluates the optical properties of the dominant chromophores in tissue and tissue-mimicking phantoms, from visible to SWIR wavelengths, and provides a consistent dataset of absorption and reduced scattering coefficients that characterise the dominant tissue chromophores from 450 nm out to 1600 nm.

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Short-wave infrared (SWIR) sensors promise to expand the capabilities of optical sensing technologies but the lack of robust data characterising tissue-constituent optical properties in the SWIR makes instrument design challenging. We characterise and evaluate the optical properties of the dominant chromophores in tissue and tissue-mimicking phantoms, from visible to SWIR wavelengths. Using single-integrating sphere systems, we measured the optical properties of single-component chromophores (H2O, haemoglobin, corn oil, synthetic melanin) and multi-component tissues (whole blood, lard), to decouple contributions from optical scattering, H2O absorption and other contributing chromophores; we also characterised commonly-used phantom materials and investigated their potential to mimic soft tissues in the SWIR range using simulations. We provide a consistent dataset of absorption and reduced scattering coefficients that characterise the dominant tissue chromophores from 450 nm out to 1600 nm. These results were shown to be consistent with literature data, where available. We integrate these data into an open-source Python toolkit, SIMPA, for optical modelling and demonstrate soft tissue simulations that can be probed continuously from visible to SWIR wavelengths. Our findings are compared with tissue-mimicking phantoms, highlighting a need for additives for polymer-based phantoms that mimic SWIR water absorption. By providing this open-source dataset, we aim to enable future studies exploring SWIR light-tissue interactions that facilitate rapid assessment and prototyping of next-generation spectroscopy and imaging techniques.

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Authors

Researchers on this paper

Morgan R. Watt

first | University of Cambridge

Layla Malouf

middle | University of Cambridge | ORCID 0009-0008-5358-3306

Ran Tao

middle | University of Cambridge | ORCID 0009-0000-1217-1219

Isabelle Racicot

middle | University of Cambridge | ORCID 0000-0001-5972-9793

Thomas R. Else

middle | University of Cambridge | ORCID 0000-0002-2652-4190

Janek Gröhl

middle | RWTH Aachen University | ORCID 0000-0002-5332-4856

Sarah E. Bohndiek

last | University of Cambridge | ORCID 0000-0003-0371-8635

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Citation

BibTeX

@article{Watt2026Spectral,
  title = {Spectral characterisation of short-wave infrared (SWIR) tissue chromophores and tissue-mimicking phantom optical properties},
  author = {Morgan R. Watt and Layla Malouf and Ran Tao and Isabelle Racicot and Thomas R. Else and Janek Gröhl and Sarah E. Bohndiek},
  journal = {bioRxiv (Cold Spring Harbor Laboratory)},
  year = {2026},
  doi = {10.64898/2026.07.07.736740},
  url = {https://doi.org/10.64898/2026.07.07.736740}
}

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