Spatial frequency domain tomography of protoporphyrin IX fluorescence in preclinical glioma models

  • Konecky S
  • Owen C
  • Rice T
  • et al.
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Abstract

Multifrequency (0 to 0.3  mm(-1)), multiwavelength (633, 680, 720, 800, and 820 nm) spatial frequency domain imaging (SFDI) of 5-aminolevulinic acid-induced protoporphyrin IX (PpIX) was used to recover absorption, scattering, and fluorescence properties of glioblastoma multiforme spheroids in tissue-simulating phantoms and in vivo in a mouse model. Three-dimensional tomographic reconstructions of the frequency-dependent remitted light localized the depths of the spheroids within 500 μm, and the total amount of PpIX in the reconstructed images was constant to within 30% when spheroid depth was varied. In vivo tumor-to-normal contrast was greater than ∼1.5 in reduced scattering coefficient for all wavelengths and was ∼1.3 for the tissue concentration of deoxyhemoglobin (ctHb). The study demonstrates the feasibility of SFDI for providing enhanced image guidance during surgical resection of brain tumors.

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APA

Konecky, S. D., Owen, C. M., Rice, T., Valdés, P. A., Kolste, K., Wilson, B. C., … Tromberg, B. J. (2012). Spatial frequency domain tomography of protoporphyrin IX fluorescence in preclinical glioma models. Journal of Biomedical Optics, 17(5), 056008. https://doi.org/10.1117/1.jbo.17.5.056008

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