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Labsphere Inc gray spectralon standard srs-05
(a) Average reflectance image of a <t>spectralon</t> standard (b) histogram of the average reflectance image showing no banding effects or patterns. Coefficient of variation is about 0.1 (c) Relative standard deviation spectra of two sequential, 15-minute, single spot measurement sequences. (d) Results from repeating the same set of measurements in (c) on a different day. (e) Reflectance spectra from a matrix of intralipid-blood phantoms, each group represents data from one particular intralipid concentration. Background hemoglobin concentrations for each group varied from 0 to 60 μM. Only the spectral waveband from 610 to 700nm was used to extract the scatter parameters. (f-h) Plots of average reflectance, logarithm of relative scatter amplitude and relative scatter power respectively, as a function of intralipid concentration. Error bars show variations in estimates due to change in background hemoglobin concentration.
Gray Spectralon Standard Srs 05, supplied by Labsphere Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/gray spectralon standard srs-05/product/Labsphere Inc
Average 90 stars, based on 1 article reviews
gray spectralon standard srs-05 - by Bioz Stars, 2026-05
90/100 stars

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1) Product Images from "Scanning in situ Spectroscopy platform for imaging surgical breast tissue specimens"

Article Title: Scanning in situ Spectroscopy platform for imaging surgical breast tissue specimens

Journal: Optics Express

doi: 10.1364/OE.21.002185

(a) Average reflectance image of a spectralon standard (b) histogram of the average reflectance image showing no banding effects or patterns. Coefficient of variation is about 0.1 (c) Relative standard deviation spectra of two sequential, 15-minute, single spot measurement sequences. (d) Results from repeating the same set of measurements in (c) on a different day. (e) Reflectance spectra from a matrix of intralipid-blood phantoms, each group represents data from one particular intralipid concentration. Background hemoglobin concentrations for each group varied from 0 to 60 μM. Only the spectral waveband from 610 to 700nm was used to extract the scatter parameters. (f-h) Plots of average reflectance, logarithm of relative scatter amplitude and relative scatter power respectively, as a function of intralipid concentration. Error bars show variations in estimates due to change in background hemoglobin concentration.
Figure Legend Snippet: (a) Average reflectance image of a spectralon standard (b) histogram of the average reflectance image showing no banding effects or patterns. Coefficient of variation is about 0.1 (c) Relative standard deviation spectra of two sequential, 15-minute, single spot measurement sequences. (d) Results from repeating the same set of measurements in (c) on a different day. (e) Reflectance spectra from a matrix of intralipid-blood phantoms, each group represents data from one particular intralipid concentration. Background hemoglobin concentrations for each group varied from 0 to 60 μM. Only the spectral waveband from 610 to 700nm was used to extract the scatter parameters. (f-h) Plots of average reflectance, logarithm of relative scatter amplitude and relative scatter power respectively, as a function of intralipid concentration. Error bars show variations in estimates due to change in background hemoglobin concentration.

Techniques Used: Standard Deviation, Concentration Assay



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Labsphere Inc gray spectralon standard srs-05
(a) Average reflectance image of a <t>spectralon</t> standard (b) histogram of the average reflectance image showing no banding effects or patterns. Coefficient of variation is about 0.1 (c) Relative standard deviation spectra of two sequential, 15-minute, single spot measurement sequences. (d) Results from repeating the same set of measurements in (c) on a different day. (e) Reflectance spectra from a matrix of intralipid-blood phantoms, each group represents data from one particular intralipid concentration. Background hemoglobin concentrations for each group varied from 0 to 60 μM. Only the spectral waveband from 610 to 700nm was used to extract the scatter parameters. (f-h) Plots of average reflectance, logarithm of relative scatter amplitude and relative scatter power respectively, as a function of intralipid concentration. Error bars show variations in estimates due to change in background hemoglobin concentration.
Gray Spectralon Standard Srs 05, supplied by Labsphere Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/gray spectralon standard srs-05/product/Labsphere Inc
Average 90 stars, based on 1 article reviews
gray spectralon standard srs-05 - by Bioz Stars, 2026-05
90/100 stars
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(a) Average reflectance image of a spectralon standard (b) histogram of the average reflectance image showing no banding effects or patterns. Coefficient of variation is about 0.1 (c) Relative standard deviation spectra of two sequential, 15-minute, single spot measurement sequences. (d) Results from repeating the same set of measurements in (c) on a different day. (e) Reflectance spectra from a matrix of intralipid-blood phantoms, each group represents data from one particular intralipid concentration. Background hemoglobin concentrations for each group varied from 0 to 60 μM. Only the spectral waveband from 610 to 700nm was used to extract the scatter parameters. (f-h) Plots of average reflectance, logarithm of relative scatter amplitude and relative scatter power respectively, as a function of intralipid concentration. Error bars show variations in estimates due to change in background hemoglobin concentration.

Journal: Optics Express

Article Title: Scanning in situ Spectroscopy platform for imaging surgical breast tissue specimens

doi: 10.1364/OE.21.002185

Figure Lengend Snippet: (a) Average reflectance image of a spectralon standard (b) histogram of the average reflectance image showing no banding effects or patterns. Coefficient of variation is about 0.1 (c) Relative standard deviation spectra of two sequential, 15-minute, single spot measurement sequences. (d) Results from repeating the same set of measurements in (c) on a different day. (e) Reflectance spectra from a matrix of intralipid-blood phantoms, each group represents data from one particular intralipid concentration. Background hemoglobin concentrations for each group varied from 0 to 60 μM. Only the spectral waveband from 610 to 700nm was used to extract the scatter parameters. (f-h) Plots of average reflectance, logarithm of relative scatter amplitude and relative scatter power respectively, as a function of intralipid concentration. Error bars show variations in estimates due to change in background hemoglobin concentration.

Article Snippet: The measured spectra at each pixel position were background subtracted and normalized relative to measurements from a gray Spectralon standard (SRS-05, LabSphere Inc., NH, nominal albedo = 0.05).

Techniques: Standard Deviation, Concentration Assay