Optical characterization of porcine tissues from various organs in the 650–1100 nm range using time-domain diffuse spectroscopy
We present a systematic characterization of the optical properties (µ_a and µ_s') of nine
representative ex vivo porcine tissues over a broadband spectrum (650-1100 nm). We
applied time-resolved diffuse optical spectroscopy measurements for recovering the optical
properties of porcine tissues depicting a realistic representation of the tissue heterogeneity
and morphology likely to be found in different ex vivo tissues. The results demonstrate a
large spectral and inter-tissue variation of optical properties. The data can be exploited for …
representative ex vivo porcine tissues over a broadband spectrum (650-1100 nm). We
applied time-resolved diffuse optical spectroscopy measurements for recovering the optical
properties of porcine tissues depicting a realistic representation of the tissue heterogeneity
and morphology likely to be found in different ex vivo tissues. The results demonstrate a
large spectral and inter-tissue variation of optical properties. The data can be exploited for …
Optical characterization of porcine tissues from various organs in the 650-1100 nm range using time-domain diffuse spectroscopy
N Stone - 2020 - rde.dspace-express.com
We present a systematic characterization of the optical properties (µa and µs') of nine
representative ex vivo porcine tissues over a broadband spectrum (650-1100 nm). We
applied time-resolved diffuse optical spectroscopy measurements for recovering the optical
properties of porcine tissues depicting a realistic representation of the tissue heterogeneity
and morphology likely to be found in different ex vivo tissues. The results demonstrate a
large spectral and inter-tissue variation of optical properties. The data can be exploited for …
representative ex vivo porcine tissues over a broadband spectrum (650-1100 nm). We
applied time-resolved diffuse optical spectroscopy measurements for recovering the optical
properties of porcine tissues depicting a realistic representation of the tissue heterogeneity
and morphology likely to be found in different ex vivo tissues. The results demonstrate a
large spectral and inter-tissue variation of optical properties. The data can be exploited for …
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