4.6 Article

In Vitro and In Vivo Multispectral Photoacoustic Imaging for the Evaluation of Chromophore Concentration

期刊

SENSORS
卷 21, 期 10, 页码 -

出版社

MDPI
DOI: 10.3390/s21103366

关键词

photoacoustic imaging; spectral unmixing; blood oxygen concentration evaluation

资金

  1. LABEX PRIMES [ANR-10-LABX-0063]
  2. LABEX CELYA of Universite de Lyon, within the program Investissements d'Avenir [ANR-10-LABX-0060, ANR-11-IDEX-0007]
  3. Universite Franco-Italienne (VINCI 2016)
  4. Region Rhone-Alpes (EXPLORA DOC)

向作者/读者索取更多资源

This study introduces a set of methods for estimating chromophore concentration using multispectral photoacoustic imaging and validates their effectiveness. By applying unmixing techniques from the hyperspectral remote sensing field, the study evaluates chromophore concentrations and demonstrates the feasibility of incorporating hyperspectral remote sensing algorithms into multispectral photoacoustic imaging.
Multispectral photoacoustic imaging is a powerful noninvasive medical imaging technique that provides access to functional information. In this study, a set of methods is proposed and validated, with experimental multispectral photoacoustic images used to estimate the concentration of chromophores. The unmixing techniques used in this paper consist of two steps: (1) automatic extraction of the reference spectrum of each pure chromophore; and (2) abundance calculation of each pure chromophore from the estimated reference spectra. The compared strategies bring positivity and sum-to-one constraints, from the hyperspectral remote sensing field to multispectral photoacoustic, to evaluate chromophore concentration. Particularly, the study extracts the endmembers and compares the algorithms from the hyperspectral remote sensing domain and a dedicated algorithm for segmentation of multispectral photoacoustic data to this end. First, these strategies are tested with dilution and mixing of chromophores on colored 4% agar phantom data. Then, some preliminary in vivo experiments are performed. These consist of estimations of the oxygen saturation rate (sO(2)) in mouse tumors. This article proposes then a proof-of-concept of the interest to bring hyperspectral remote sensing algorithms to multispectral photoacoustic imaging for the estimation of chromophore concentration.

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