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In vivo quantitative analysis of anterior chamber white blood cell mixture composition using spectroscopic optical coherence tomography.

Publication ,  Journal Article
Qian, R; McNabb, RP; Zhou, KC; Mousa, HM; Saban, DR; Perez, VL; Kuo, AN; Izatt, JA
Published in: Biomed Opt Express
April 1, 2021

Anterior uveitis is the most common form of intraocular inflammation, and one of its main signs is the presence of white blood cells (WBCs) in the anterior chamber (AC). Clinically, the true composition of cells can currently only be obtained using AC paracentesis, an invasive procedure to obtain AC fluid requiring needle insertion into the AC. We previously developed a spectroscopic optical coherence tomography (SOCT) analysis method to differentiate between populations of RBCs and subtypes of WBCs, including granulocytes, lymphocytes and monocytes, both in vitro and in ACs of excised porcine eyes. We have shown that different types of WBCs have distinct characteristic size distributions, extracted from the backscattered reflectance spectrum of individual cells using Mie theory. Here, we further develop our method to estimate the composition of blood cell mixtures, both in vitro and in vivo. To do so, we estimate the size distribution of unknown cell mixtures by fitting the distribution observed using SOCT with a weighted combination of reference size distributions of each WBC type calculated using kernel density estimation. We validate the accuracy of our estimation in an in vitro study, by comparing our results for a given WBC sample mixture with the cellular concentrations measured by a hemocytometer and SOCT images before mixing. We also conducted a small in vivo quantitative cell mixture validation pilot study which demonstrates congruence between our method and AC paracentesis in two patients with uveitis. The SOCT based method appears promising to provide quantitative diagnostic information of cellular responses in the ACs of patients with uveitis.

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Published In

Biomed Opt Express

DOI

ISSN

2156-7085

Publication Date

April 1, 2021

Volume

12

Issue

4

Start / End Page

2134 / 2148

Location

United States

Related Subject Headings

  • 5102 Atomic, molecular and optical physics
  • 4003 Biomedical engineering
  • 3212 Ophthalmology and optometry
  • 0912 Materials Engineering
  • 0205 Optical Physics
 

Citation

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Qian, R., McNabb, R. P., Zhou, K. C., Mousa, H. M., Saban, D. R., Perez, V. L., … Izatt, J. A. (2021). In vivo quantitative analysis of anterior chamber white blood cell mixture composition using spectroscopic optical coherence tomography. Biomed Opt Express, 12(4), 2134–2148. https://doi.org/10.1364/BOE.419063
Qian, Ruobing, Ryan P. McNabb, Kevin C. Zhou, Hazem M. Mousa, Daniel R. Saban, Victor L. Perez, Anthony N. Kuo, and Joseph A. Izatt. “In vivo quantitative analysis of anterior chamber white blood cell mixture composition using spectroscopic optical coherence tomography.Biomed Opt Express 12, no. 4 (April 1, 2021): 2134–48. https://doi.org/10.1364/BOE.419063.
Qian R, McNabb RP, Zhou KC, Mousa HM, Saban DR, Perez VL, et al. In vivo quantitative analysis of anterior chamber white blood cell mixture composition using spectroscopic optical coherence tomography. Biomed Opt Express. 2021 Apr 1;12(4):2134–48.
Qian, Ruobing, et al. “In vivo quantitative analysis of anterior chamber white blood cell mixture composition using spectroscopic optical coherence tomography.Biomed Opt Express, vol. 12, no. 4, Apr. 2021, pp. 2134–48. Pubmed, doi:10.1364/BOE.419063.
Qian R, McNabb RP, Zhou KC, Mousa HM, Saban DR, Perez VL, Kuo AN, Izatt JA. In vivo quantitative analysis of anterior chamber white blood cell mixture composition using spectroscopic optical coherence tomography. Biomed Opt Express. 2021 Apr 1;12(4):2134–2148.
Journal cover image

Published In

Biomed Opt Express

DOI

ISSN

2156-7085

Publication Date

April 1, 2021

Volume

12

Issue

4

Start / End Page

2134 / 2148

Location

United States

Related Subject Headings

  • 5102 Atomic, molecular and optical physics
  • 4003 Biomedical engineering
  • 3212 Ophthalmology and optometry
  • 0912 Materials Engineering
  • 0205 Optical Physics