| Literature DB >> 27807933 |
David M McClatchy1, P Jack Hoopes1,2, Brian W Pogue1,2, Stephen Chad Kanick1,2.
Abstract
For the first time, spatially resolved quantitative metrics of light scattering recovered with sub-diffusive spatial frequency domain imaging (sd-SFDI) are shown to be sensitive to changes in intratumoral morphology and viability by direct comparison to histopathological analysis. Two freshly excised subcutaneous murine tumor cross-sections were measured with sd-SFDI, and recovered optical scatter parameter maps were co-registered to whole mount histology. Unique clustering of the optical scatter parameters μs' vs. γ (i.e. diffuse scattering vs. relative backscattering) evaluated at a single wavelength showed complete separation between regions of viable tumor, aggresive tumor with stromal growth, varying levels of necrotic tumor, and also peritumor muscle. The results suggest that with further technical development, sd-SFDI may represent a non-destructive screening tool for analysis of excised tissue or a non-invasive approach to investigate suspicious lesions without the need for exogenous labels or spectrally resolved imaging.Entities:
Keywords: SFDI; scatter imaging; tissue characterization
Mesh:
Year: 2016 PMID: 27807933 PMCID: PMC5292082 DOI: 10.1002/jbio.201600181
Source DB: PubMed Journal: J Biophotonics ISSN: 1864-063X Impact factor: 3.207