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heidelberg engineering rnfl export software
Measurement of the circumpapillary retinal nerve fiber layer thickness (cpRNFL thickness, or cpRNFLT) using the Spectralis follow-up mode. ( A ) Measurement at baseline. The infrared (IR) image of the disc at the upper left of the window, the original optical coherence tomography (OCT) image of the cpRNFL at the upper right, the global and sectorial thickness at the lower left, and the profile of the cpRNFL for comparison with the normative database at the lower right. ( B ) Measurement at follow-up. ( C ) Magnified IR image of the disc in ( B ). To examine the same location, the IR image was rotated slightly (see the upper right corner of the image). ( D ) The magnified image of the cpRNFL profile from the temporal to the superior sector. The gray line indicates the profile at the baseline; the black line at follow-up. The change of the profile at approximately 45 degrees supports the development of the NFLD observed in ( C ). ( E ) Magnified image of the cpRNFL profile from the inferior to the temporal sector. A comparison of the gray line (baseline cpRNFL) and the black line (follow-up cpRNFL) indicates the widening and deepening of the NFLD, which is not clearly visible in ( C ).
Rnfl Export Software, supplied by heidelberg engineering, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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rnfl export software - by Bioz Stars, 2026-09
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1) Product Images from "Evaluation of Structure-Function Relationships in Longitudinal Changes of Glaucoma using the Spectralis OCT Follow-Up Mode"

Article Title: Evaluation of Structure-Function Relationships in Longitudinal Changes of Glaucoma using the Spectralis OCT Follow-Up Mode

Journal: Scientific Reports

doi: 10.1038/s41598-018-35419-y

Measurement of the circumpapillary retinal nerve fiber layer thickness (cpRNFL thickness, or cpRNFLT) using the Spectralis follow-up mode. ( A ) Measurement at baseline. The infrared (IR) image of the disc at the upper left of the window, the original optical coherence tomography (OCT) image of the cpRNFL at the upper right, the global and sectorial thickness at the lower left, and the profile of the cpRNFL for comparison with the normative database at the lower right. ( B ) Measurement at follow-up. ( C ) Magnified IR image of the disc in ( B ). To examine the same location, the IR image was rotated slightly (see the upper right corner of the image). ( D ) The magnified image of the cpRNFL profile from the temporal to the superior sector. The gray line indicates the profile at the baseline; the black line at follow-up. The change of the profile at approximately 45 degrees supports the development of the NFLD observed in ( C ). ( E ) Magnified image of the cpRNFL profile from the inferior to the temporal sector. A comparison of the gray line (baseline cpRNFL) and the black line (follow-up cpRNFL) indicates the widening and deepening of the NFLD, which is not clearly visible in ( C ).
Figure Legend Snippet: Measurement of the circumpapillary retinal nerve fiber layer thickness (cpRNFL thickness, or cpRNFLT) using the Spectralis follow-up mode. ( A ) Measurement at baseline. The infrared (IR) image of the disc at the upper left of the window, the original optical coherence tomography (OCT) image of the cpRNFL at the upper right, the global and sectorial thickness at the lower left, and the profile of the cpRNFL for comparison with the normative database at the lower right. ( B ) Measurement at follow-up. ( C ) Magnified IR image of the disc in ( B ). To examine the same location, the IR image was rotated slightly (see the upper right corner of the image). ( D ) The magnified image of the cpRNFL profile from the temporal to the superior sector. The gray line indicates the profile at the baseline; the black line at follow-up. The change of the profile at approximately 45 degrees supports the development of the NFLD observed in ( C ). ( E ) Magnified image of the cpRNFL profile from the inferior to the temporal sector. A comparison of the gray line (baseline cpRNFL) and the black line (follow-up cpRNFL) indicates the widening and deepening of the NFLD, which is not clearly visible in ( C ).

Techniques Used: Tomography, Comparison

Complicated relationships between structure and function in glaucoma. ( A ) Structure-function relationship map; sectors with the same color correspond to each other. ( B ) Calculation of sectorial sensitivity of the visual field (VF). ( C ) Nonlinear relationship between the VF and the retinal nerve fiber layer thickness (RNFLT). If the VF values are converted to anti-log values (or if the RNFLT is converted to a logarithmic scale), the relationship becomes linear.
Figure Legend Snippet: Complicated relationships between structure and function in glaucoma. ( A ) Structure-function relationship map; sectors with the same color correspond to each other. ( B ) Calculation of sectorial sensitivity of the visual field (VF). ( C ) Nonlinear relationship between the VF and the retinal nerve fiber layer thickness (RNFLT). If the VF values are converted to anti-log values (or if the RNFLT is converted to a logarithmic scale), the relationship becomes linear.

Techniques Used:

Correlation in sectorial longitudinal changes between standard automated perimetry (SAP) indices (total deviation) and circumpapillary retinal nerve fiber layer thickness (cpRNFLT) in the Garway-Heath map. The values of each sector were calculated considering the complex relationship between structure and function. The color of the points in the scatter plots indicates the strength of the correlation. Abbreviations: NI, nasal inferior; N, nasal; NS, nasal superior; TI, temporal inferior; T, temporal; TS, temporal superior.
Figure Legend Snippet: Correlation in sectorial longitudinal changes between standard automated perimetry (SAP) indices (total deviation) and circumpapillary retinal nerve fiber layer thickness (cpRNFLT) in the Garway-Heath map. The values of each sector were calculated considering the complex relationship between structure and function. The color of the points in the scatter plots indicates the strength of the correlation. Abbreviations: NI, nasal inferior; N, nasal; NS, nasal superior; TI, temporal inferior; T, temporal; TS, temporal superior.

Techniques Used:

The scatter plots with the strongest correlation between the sectorial indices of standard automated perimetry (SAP) and circumpapillary retinal nerve fiber layer thickness (cpRNFLT) in each structure-function relationship map. ( A ) The scatter plot in the inferior sector of SAP (superior sector of cpRNFLT) in the Garway-Heath map. ( B ) The scatter plot in the inferior sector of SAP (superior sector of cpRNFLT) in the Nakanishi map. ( C ) The scatter plot in the superior sector of SAP (inferior sector of the cpRNFLT) in the Garway-Heath map. ( D ) The scatter plot in the superior sector of SAP (inferior sector of cpRNFLT) in the Nakanishi map.
Figure Legend Snippet: The scatter plots with the strongest correlation between the sectorial indices of standard automated perimetry (SAP) and circumpapillary retinal nerve fiber layer thickness (cpRNFLT) in each structure-function relationship map. ( A ) The scatter plot in the inferior sector of SAP (superior sector of cpRNFLT) in the Garway-Heath map. ( B ) The scatter plot in the inferior sector of SAP (superior sector of cpRNFLT) in the Nakanishi map. ( C ) The scatter plot in the superior sector of SAP (inferior sector of the cpRNFLT) in the Garway-Heath map. ( D ) The scatter plot in the superior sector of SAP (inferior sector of cpRNFLT) in the Nakanishi map.

Techniques Used:

Related Articles

Software:

Article Title: Evaluation of Structure-Function Relationships in Longitudinal Changes of Glaucoma using the Spectralis OCT Follow-Up Mode
Article Snippet: .. To calculate the sectorial cpRNFL thickness, we exported 768 values of the cpRNFLT along the 360-degree OCT scan using RNFL export software (Heidelberg Engineering). ..

Article Title: Association of Glaucoma-Susceptible Genes to Regional Circumpapillary Retinal Nerve Fiber Layer Thickness and Visual Field Defects.
Article Snippet: .. The RNFL thickness values at 768 points along the 3608 OCT circle scan were obtained by the RNFL Export software (Heidelberg Engineering GmbH). ..



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Measurement of the circumpapillary retinal nerve fiber layer thickness (cpRNFL thickness, or cpRNFLT) using the Spectralis follow-up mode. ( A ) Measurement at baseline. The infrared (IR) image of the disc at the upper left of the window, the original optical coherence tomography (OCT) image of the cpRNFL at the upper right, the global and sectorial thickness at the lower left, and the profile of the cpRNFL for comparison with the normative database at the lower right. ( B ) Measurement at follow-up. ( C ) Magnified IR image of the disc in ( B ). To examine the same location, the IR image was rotated slightly (see the upper right corner of the image). ( D ) The magnified image of the cpRNFL profile from the temporal to the superior sector. The gray line indicates the profile at the baseline; the black line at follow-up. The change of the profile at approximately 45 degrees supports the development of the NFLD observed in ( C ). ( E ) Magnified image of the cpRNFL profile from the inferior to the temporal sector. A comparison of the gray line (baseline cpRNFL) and the black line (follow-up cpRNFL) indicates the widening and deepening of the NFLD, which is not clearly visible in ( C ).
Rnfl Export Software, supplied by heidelberg engineering, 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/rnfl+export+software/rnfl+export+software/pmc06249277-168-19-22
Average 90 stars, based on 1 article reviews
rnfl export software - by Bioz Stars, 2026-09
90/100 stars
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Measurement of the circumpapillary retinal nerve fiber layer thickness (cpRNFL thickness, or cpRNFLT) using the Spectralis follow-up mode. ( A ) Measurement at baseline. The infrared (IR) image of the disc at the upper left of the window, the original optical coherence tomography (OCT) image of the cpRNFL at the upper right, the global and sectorial thickness at the lower left, and the profile of the cpRNFL for comparison with the normative database at the lower right. ( B ) Measurement at follow-up. ( C ) Magnified IR image of the disc in ( B ). To examine the same location, the IR image was rotated slightly (see the upper right corner of the image). ( D ) The magnified image of the cpRNFL profile from the temporal to the superior sector. The gray line indicates the profile at the baseline; the black line at follow-up. The change of the profile at approximately 45 degrees supports the development of the NFLD observed in ( C ). ( E ) Magnified image of the cpRNFL profile from the inferior to the temporal sector. A comparison of the gray line (baseline cpRNFL) and the black line (follow-up cpRNFL) indicates the widening and deepening of the NFLD, which is not clearly visible in ( C ).
Licensed Software Of 'Rnfl Export, supplied by heidelberg engineering, 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/rnfl+export+software/rnfl+export+software/pm27309624-61-5-7
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Measurement of the circumpapillary retinal nerve fiber layer thickness (cpRNFL thickness, or cpRNFLT) using the Spectralis follow-up mode. ( A ) Measurement at baseline. The infrared (IR) image of the disc at the upper left of the window, the original optical coherence tomography (OCT) image of the cpRNFL at the upper right, the global and sectorial thickness at the lower left, and the profile of the cpRNFL for comparison with the normative database at the lower right. ( B ) Measurement at follow-up. ( C ) Magnified IR image of the disc in ( B ). To examine the same location, the IR image was rotated slightly (see the upper right corner of the image). ( D ) The magnified image of the cpRNFL profile from the temporal to the superior sector. The gray line indicates the profile at the baseline; the black line at follow-up. The change of the profile at approximately 45 degrees supports the development of the NFLD observed in ( C ). ( E ) Magnified image of the cpRNFL profile from the inferior to the temporal sector. A comparison of the gray line (baseline cpRNFL) and the black line (follow-up cpRNFL) indicates the widening and deepening of the NFLD, which is not clearly visible in ( C ).

Journal: Scientific Reports

Article Title: Evaluation of Structure-Function Relationships in Longitudinal Changes of Glaucoma using the Spectralis OCT Follow-Up Mode

doi: 10.1038/s41598-018-35419-y

Figure Lengend Snippet: Measurement of the circumpapillary retinal nerve fiber layer thickness (cpRNFL thickness, or cpRNFLT) using the Spectralis follow-up mode. ( A ) Measurement at baseline. The infrared (IR) image of the disc at the upper left of the window, the original optical coherence tomography (OCT) image of the cpRNFL at the upper right, the global and sectorial thickness at the lower left, and the profile of the cpRNFL for comparison with the normative database at the lower right. ( B ) Measurement at follow-up. ( C ) Magnified IR image of the disc in ( B ). To examine the same location, the IR image was rotated slightly (see the upper right corner of the image). ( D ) The magnified image of the cpRNFL profile from the temporal to the superior sector. The gray line indicates the profile at the baseline; the black line at follow-up. The change of the profile at approximately 45 degrees supports the development of the NFLD observed in ( C ). ( E ) Magnified image of the cpRNFL profile from the inferior to the temporal sector. A comparison of the gray line (baseline cpRNFL) and the black line (follow-up cpRNFL) indicates the widening and deepening of the NFLD, which is not clearly visible in ( C ).

Article Snippet: To calculate the sectorial cpRNFL thickness, we exported 768 values of the cpRNFLT along the 360-degree OCT scan using RNFL export software (Heidelberg Engineering).

Techniques: Tomography, Comparison

Complicated relationships between structure and function in glaucoma. ( A ) Structure-function relationship map; sectors with the same color correspond to each other. ( B ) Calculation of sectorial sensitivity of the visual field (VF). ( C ) Nonlinear relationship between the VF and the retinal nerve fiber layer thickness (RNFLT). If the VF values are converted to anti-log values (or if the RNFLT is converted to a logarithmic scale), the relationship becomes linear.

Journal: Scientific Reports

Article Title: Evaluation of Structure-Function Relationships in Longitudinal Changes of Glaucoma using the Spectralis OCT Follow-Up Mode

doi: 10.1038/s41598-018-35419-y

Figure Lengend Snippet: Complicated relationships between structure and function in glaucoma. ( A ) Structure-function relationship map; sectors with the same color correspond to each other. ( B ) Calculation of sectorial sensitivity of the visual field (VF). ( C ) Nonlinear relationship between the VF and the retinal nerve fiber layer thickness (RNFLT). If the VF values are converted to anti-log values (or if the RNFLT is converted to a logarithmic scale), the relationship becomes linear.

Article Snippet: To calculate the sectorial cpRNFL thickness, we exported 768 values of the cpRNFLT along the 360-degree OCT scan using RNFL export software (Heidelberg Engineering).

Techniques:

Correlation in sectorial longitudinal changes between standard automated perimetry (SAP) indices (total deviation) and circumpapillary retinal nerve fiber layer thickness (cpRNFLT) in the Garway-Heath map. The values of each sector were calculated considering the complex relationship between structure and function. The color of the points in the scatter plots indicates the strength of the correlation. Abbreviations: NI, nasal inferior; N, nasal; NS, nasal superior; TI, temporal inferior; T, temporal; TS, temporal superior.

Journal: Scientific Reports

Article Title: Evaluation of Structure-Function Relationships in Longitudinal Changes of Glaucoma using the Spectralis OCT Follow-Up Mode

doi: 10.1038/s41598-018-35419-y

Figure Lengend Snippet: Correlation in sectorial longitudinal changes between standard automated perimetry (SAP) indices (total deviation) and circumpapillary retinal nerve fiber layer thickness (cpRNFLT) in the Garway-Heath map. The values of each sector were calculated considering the complex relationship between structure and function. The color of the points in the scatter plots indicates the strength of the correlation. Abbreviations: NI, nasal inferior; N, nasal; NS, nasal superior; TI, temporal inferior; T, temporal; TS, temporal superior.

Article Snippet: To calculate the sectorial cpRNFL thickness, we exported 768 values of the cpRNFLT along the 360-degree OCT scan using RNFL export software (Heidelberg Engineering).

Techniques:

The scatter plots with the strongest correlation between the sectorial indices of standard automated perimetry (SAP) and circumpapillary retinal nerve fiber layer thickness (cpRNFLT) in each structure-function relationship map. ( A ) The scatter plot in the inferior sector of SAP (superior sector of cpRNFLT) in the Garway-Heath map. ( B ) The scatter plot in the inferior sector of SAP (superior sector of cpRNFLT) in the Nakanishi map. ( C ) The scatter plot in the superior sector of SAP (inferior sector of the cpRNFLT) in the Garway-Heath map. ( D ) The scatter plot in the superior sector of SAP (inferior sector of cpRNFLT) in the Nakanishi map.

Journal: Scientific Reports

Article Title: Evaluation of Structure-Function Relationships in Longitudinal Changes of Glaucoma using the Spectralis OCT Follow-Up Mode

doi: 10.1038/s41598-018-35419-y

Figure Lengend Snippet: The scatter plots with the strongest correlation between the sectorial indices of standard automated perimetry (SAP) and circumpapillary retinal nerve fiber layer thickness (cpRNFLT) in each structure-function relationship map. ( A ) The scatter plot in the inferior sector of SAP (superior sector of cpRNFLT) in the Garway-Heath map. ( B ) The scatter plot in the inferior sector of SAP (superior sector of cpRNFLT) in the Nakanishi map. ( C ) The scatter plot in the superior sector of SAP (inferior sector of the cpRNFLT) in the Garway-Heath map. ( D ) The scatter plot in the superior sector of SAP (inferior sector of cpRNFLT) in the Nakanishi map.

Article Snippet: To calculate the sectorial cpRNFL thickness, we exported 768 values of the cpRNFLT along the 360-degree OCT scan using RNFL export software (Heidelberg Engineering).

Techniques: