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CenterVue faf color segmentation tool
Comparison of birdshot chorioretinopathy, ocular sarcoidosis, punctate inner choroidopathy (PIC), and acute posterior multifocal placoid pigment epitheliopathy (APMPPE) on spectrally resolved autofluorescence <t>(Color-FAF)</t> imaging. An exemplary eye with birdshot chorioretinopathy (first row), ocular sarcoidosis (second row), PIC (third row), and APMPPE (fourth row) are illustrated. From left to right: color fundus photography (CFP), grayscale <t>fundus</t> <t>autofluorescence</t> image (grayscale FAF), spectrally resolved fundus autofluorescence (Color-FAF) image, intensity-normalized Color-FAF. Lesions of eyes affected by ocular sarcoidosis were more apparent than in eyes with birdshot chorioretinopathy on grayscale FAF, Color-FAF, and intensity-normalized Color-FAF. Lesions of eyes with PIC were clearly apparent in all four modalities. Lesions of eyes affected by APMPPE were hardly visible on CFP and on intensity-normalized Color-FAF, whereas they were easily definable on Color-FAF and grayscale FAF.
Faf Color Segmentation Tool, supplied by CenterVue, 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/product/faf+color+segmentation+tool/faf+color+segmentation+tool/pmc09424200-51-8-12
Average 90 stars, based on 1 article reviews
faf color segmentation tool - by Bioz Stars, 2026-10
90/100 stars

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1) Product Images from "Spectrally resolved autofluorescence imaging in posterior uveitis"

Article Title: Spectrally resolved autofluorescence imaging in posterior uveitis

Journal: Scientific Reports

doi: 10.1038/s41598-022-18048-4

Comparison of birdshot chorioretinopathy, ocular sarcoidosis, punctate inner choroidopathy (PIC), and acute posterior multifocal placoid pigment epitheliopathy (APMPPE) on spectrally resolved autofluorescence (Color-FAF) imaging. An exemplary eye with birdshot chorioretinopathy (first row), ocular sarcoidosis (second row), PIC (third row), and APMPPE (fourth row) are illustrated. From left to right: color fundus photography (CFP), grayscale fundus autofluorescence image (grayscale FAF), spectrally resolved fundus autofluorescence (Color-FAF) image, intensity-normalized Color-FAF. Lesions of eyes affected by ocular sarcoidosis were more apparent than in eyes with birdshot chorioretinopathy on grayscale FAF, Color-FAF, and intensity-normalized Color-FAF. Lesions of eyes with PIC were clearly apparent in all four modalities. Lesions of eyes affected by APMPPE were hardly visible on CFP and on intensity-normalized Color-FAF, whereas they were easily definable on Color-FAF and grayscale FAF.
Figure Legend Snippet: Comparison of birdshot chorioretinopathy, ocular sarcoidosis, punctate inner choroidopathy (PIC), and acute posterior multifocal placoid pigment epitheliopathy (APMPPE) on spectrally resolved autofluorescence (Color-FAF) imaging. An exemplary eye with birdshot chorioretinopathy (first row), ocular sarcoidosis (second row), PIC (third row), and APMPPE (fourth row) are illustrated. From left to right: color fundus photography (CFP), grayscale fundus autofluorescence image (grayscale FAF), spectrally resolved fundus autofluorescence (Color-FAF) image, intensity-normalized Color-FAF. Lesions of eyes affected by ocular sarcoidosis were more apparent than in eyes with birdshot chorioretinopathy on grayscale FAF, Color-FAF, and intensity-normalized Color-FAF. Lesions of eyes with PIC were clearly apparent in all four modalities. Lesions of eyes affected by APMPPE were hardly visible on CFP and on intensity-normalized Color-FAF, whereas they were easily definable on Color-FAF and grayscale FAF.

Techniques Used: Imaging

Sources of green and red emission fluorescent components in posterior uveitis. Exemplary eyes with a pigmented scar in toxoplasmosis chorioretinitis (top row) and with macular neovascularization (MNV) in multifocal choroiditis and panuveitis (MCP; bottom row). From left to right: color fundus photography (CFP), grayscale fundus autofluorescence (grayscale FAF), spectrally resolved fundus autofluorescence (Color-FAF) image, intensity-normalized Color-FAF. Pigmented parts of the toxoplasmosis lesion features predominantly red emission fluorescent components (REFC) on intensity-normalized Color-FAF. On grayscale FAF and Color-FAF the pigmented parts were hypoautofluorescent and indistinguishable from parts of the lesion without pigmentation. The MNV in the eye with MCP featured mainly GEFC on Color-FAF and intensity-normalized Color-FAF.
Figure Legend Snippet: Sources of green and red emission fluorescent components in posterior uveitis. Exemplary eyes with a pigmented scar in toxoplasmosis chorioretinitis (top row) and with macular neovascularization (MNV) in multifocal choroiditis and panuveitis (MCP; bottom row). From left to right: color fundus photography (CFP), grayscale fundus autofluorescence (grayscale FAF), spectrally resolved fundus autofluorescence (Color-FAF) image, intensity-normalized Color-FAF. Pigmented parts of the toxoplasmosis lesion features predominantly red emission fluorescent components (REFC) on intensity-normalized Color-FAF. On grayscale FAF and Color-FAF the pigmented parts were hypoautofluorescent and indistinguishable from parts of the lesion without pigmentation. The MNV in the eye with MCP featured mainly GEFC on Color-FAF and intensity-normalized Color-FAF.

Techniques Used:

Related Articles

Software:

Article Title: Inter-Device Comparison of Blue-Light Autofluorescence in Optic Disc Drusen.
Article Snippet: Purpose: Monochromatic blue-light fundus autofluorescence has proven to be particularly useful for the detection of optic disc drusen (ODD).. The aim of this study was to investigate how accurately novel confocal scanners can detect ODD by means of color fundus and autofluorescence images.. Methods: Images were taken in 20 consecutive patients’ eyes with funduscopically visible ODD using the TrueColor Eidon AF (60 × 55°) and the spectral domain Spectralis HRA+OCT (30 × 30°).

Article Title: Spectrally resolved autofluorescence imaging in posterior uveitis
Article Snippet: .. Color-FAF images were imported into the analysis software “FAF Color Segmentation Tool” (CenterVue, Padova, Italy) for analysis of the predominant wavelength component of the Color-FAF, as described in previous studies , . ..

Article Title: Spectrally Resolved Fundus Autofluorescence in ABCA4-Related Retinopathy.
Article Snippet: .. Finally, color-FAF images were imported in the custom-made analysis software ‘‘FAF Color Segmentation Tool’’ developed by CenterVue that allows for display of fluorescence intensity and emission wavelengths (GEFC to REFC) as a two-dimensional graph (see Fig. 6). ..

Article Title: Spectrally Resolved Fundus Autofluorescence in Healthy Eyes: Repeatability and Topographical Analysis of the Green-Emitting Fluorophores
Article Snippet: .. The area occupied by green-emitting fluorophores was investigated by importing the color-coded FAF image in the software called “FAF Color Segmentation Tool” and developed by CenterVue. ..

Fluorescence:

Article Title: Spectrally Resolved Fundus Autofluorescence in ABCA4-Related Retinopathy.
Article Snippet: .. Finally, color-FAF images were imported in the custom-made analysis software ‘‘FAF Color Segmentation Tool’’ developed by CenterVue that allows for display of fluorescence intensity and emission wavelengths (GEFC to REFC) as a two-dimensional graph (see Fig. 6). ..



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CenterVue faf color segmentation tool
Comparison of birdshot chorioretinopathy, ocular sarcoidosis, punctate inner choroidopathy (PIC), and acute posterior multifocal placoid pigment epitheliopathy (APMPPE) on spectrally resolved autofluorescence <t>(Color-FAF)</t> imaging. An exemplary eye with birdshot chorioretinopathy (first row), ocular sarcoidosis (second row), PIC (third row), and APMPPE (fourth row) are illustrated. From left to right: color fundus photography (CFP), grayscale <t>fundus</t> <t>autofluorescence</t> image (grayscale FAF), spectrally resolved fundus autofluorescence (Color-FAF) image, intensity-normalized Color-FAF. Lesions of eyes affected by ocular sarcoidosis were more apparent than in eyes with birdshot chorioretinopathy on grayscale FAF, Color-FAF, and intensity-normalized Color-FAF. Lesions of eyes with PIC were clearly apparent in all four modalities. Lesions of eyes affected by APMPPE were hardly visible on CFP and on intensity-normalized Color-FAF, whereas they were easily definable on Color-FAF and grayscale FAF.
Faf Color Segmentation Tool, supplied by CenterVue, 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/product/faf+color+segmentation+tool/faf+color+segmentation+tool/pmc09424200-51-8-12
Average 90 stars, based on 1 article reviews
faf color segmentation tool - by Bioz Stars, 2026-10
90/100 stars
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Comparison of birdshot chorioretinopathy, ocular sarcoidosis, punctate inner choroidopathy (PIC), and acute posterior multifocal placoid pigment epitheliopathy (APMPPE) on spectrally resolved autofluorescence (Color-FAF) imaging. An exemplary eye with birdshot chorioretinopathy (first row), ocular sarcoidosis (second row), PIC (third row), and APMPPE (fourth row) are illustrated. From left to right: color fundus photography (CFP), grayscale fundus autofluorescence image (grayscale FAF), spectrally resolved fundus autofluorescence (Color-FAF) image, intensity-normalized Color-FAF. Lesions of eyes affected by ocular sarcoidosis were more apparent than in eyes with birdshot chorioretinopathy on grayscale FAF, Color-FAF, and intensity-normalized Color-FAF. Lesions of eyes with PIC were clearly apparent in all four modalities. Lesions of eyes affected by APMPPE were hardly visible on CFP and on intensity-normalized Color-FAF, whereas they were easily definable on Color-FAF and grayscale FAF.

Journal: Scientific Reports

Article Title: Spectrally resolved autofluorescence imaging in posterior uveitis

doi: 10.1038/s41598-022-18048-4

Figure Lengend Snippet: Comparison of birdshot chorioretinopathy, ocular sarcoidosis, punctate inner choroidopathy (PIC), and acute posterior multifocal placoid pigment epitheliopathy (APMPPE) on spectrally resolved autofluorescence (Color-FAF) imaging. An exemplary eye with birdshot chorioretinopathy (first row), ocular sarcoidosis (second row), PIC (third row), and APMPPE (fourth row) are illustrated. From left to right: color fundus photography (CFP), grayscale fundus autofluorescence image (grayscale FAF), spectrally resolved fundus autofluorescence (Color-FAF) image, intensity-normalized Color-FAF. Lesions of eyes affected by ocular sarcoidosis were more apparent than in eyes with birdshot chorioretinopathy on grayscale FAF, Color-FAF, and intensity-normalized Color-FAF. Lesions of eyes with PIC were clearly apparent in all four modalities. Lesions of eyes affected by APMPPE were hardly visible on CFP and on intensity-normalized Color-FAF, whereas they were easily definable on Color-FAF and grayscale FAF.

Article Snippet: Color-FAF images were imported into the analysis software “FAF Color Segmentation Tool” (CenterVue, Padova, Italy) for analysis of the predominant wavelength component of the Color-FAF, as described in previous studies , .

Techniques: Imaging

Sources of green and red emission fluorescent components in posterior uveitis. Exemplary eyes with a pigmented scar in toxoplasmosis chorioretinitis (top row) and with macular neovascularization (MNV) in multifocal choroiditis and panuveitis (MCP; bottom row). From left to right: color fundus photography (CFP), grayscale fundus autofluorescence (grayscale FAF), spectrally resolved fundus autofluorescence (Color-FAF) image, intensity-normalized Color-FAF. Pigmented parts of the toxoplasmosis lesion features predominantly red emission fluorescent components (REFC) on intensity-normalized Color-FAF. On grayscale FAF and Color-FAF the pigmented parts were hypoautofluorescent and indistinguishable from parts of the lesion without pigmentation. The MNV in the eye with MCP featured mainly GEFC on Color-FAF and intensity-normalized Color-FAF.

Journal: Scientific Reports

Article Title: Spectrally resolved autofluorescence imaging in posterior uveitis

doi: 10.1038/s41598-022-18048-4

Figure Lengend Snippet: Sources of green and red emission fluorescent components in posterior uveitis. Exemplary eyes with a pigmented scar in toxoplasmosis chorioretinitis (top row) and with macular neovascularization (MNV) in multifocal choroiditis and panuveitis (MCP; bottom row). From left to right: color fundus photography (CFP), grayscale fundus autofluorescence (grayscale FAF), spectrally resolved fundus autofluorescence (Color-FAF) image, intensity-normalized Color-FAF. Pigmented parts of the toxoplasmosis lesion features predominantly red emission fluorescent components (REFC) on intensity-normalized Color-FAF. On grayscale FAF and Color-FAF the pigmented parts were hypoautofluorescent and indistinguishable from parts of the lesion without pigmentation. The MNV in the eye with MCP featured mainly GEFC on Color-FAF and intensity-normalized Color-FAF.

Article Snippet: Color-FAF images were imported into the analysis software “FAF Color Segmentation Tool” (CenterVue, Padova, Italy) for analysis of the predominant wavelength component of the Color-FAF, as described in previous studies , .

Techniques: