Objective. To assess the intrasession repeatability and intersession reproducibility of peripapillary retinal nerve fiber layer (RNFL) thickness parameters measured by scanning laser polarimetry (SLP) with enhanced corneal compensation (ECC) in healthy and glaucomatous eyes. Methods. One randomly selected eye of 82 healthy individuals and 60 glaucoma subjects was evaluated. Three scans were acquired during the first visit to evaluate intravisit repeatability. A different operator obtained two additional scans within 2 months after the first session to determine intervisit reproducibility. The intraclass correlation coefficient (ICC), coefficient of variation (COV), and test-retest variability (TRT) were calculated for all SLP parameters in ...
Background: To detect differences in retinal nerve fiber layer (RNFL) measurements in absolute, adva...
Purpose: To compare the abilities of peripapillary retinal nerve fiber layer (RNFL) parameters of sp...
Phase retardation of in vivo human retinal nerve fiber layer (RNFL) is quantitatively measured by tw...
Objective. To assess the intrasession repeatability and intersession reproducibility of peripapillar...
Objective. To assess the intrasession repeatability and intersession reproducibility of peripapillar...
Objective. To assess the intrasession repeatability and intersession reproducibility of peripapillar...
Objective. To assess the intrasession repeatability and intersession reproducibility of peripapillar...
Objective. To assess the intrasession repeatability and intersession reproducibility of peripapillar...
Objective. To assess the intrasession repeatability and intersession reproducibility of peripapillar...
Objective. To assess the intrasession repeatability and intersession reproducibility of peripapillar...
which permits unrestricted use, distribution, and reproduction in any medium, provided the original ...
Objective: To investigate the longitudinal cortical birefringence (corneal polarization axis [CPA] a...
Objective: To investigate the longitudinal cortical birefringence (corneal polarization axis [CPA] a...
Objective: To investigate the longitudinal cortical birefringence (corneal polarization axis [CPA] a...
AbstractPurposeTo study the capability of scanning laser polarimetry with variable corneal compensat...
Background: To detect differences in retinal nerve fiber layer (RNFL) measurements in absolute, adva...
Purpose: To compare the abilities of peripapillary retinal nerve fiber layer (RNFL) parameters of sp...
Phase retardation of in vivo human retinal nerve fiber layer (RNFL) is quantitatively measured by tw...
Objective. To assess the intrasession repeatability and intersession reproducibility of peripapillar...
Objective. To assess the intrasession repeatability and intersession reproducibility of peripapillar...
Objective. To assess the intrasession repeatability and intersession reproducibility of peripapillar...
Objective. To assess the intrasession repeatability and intersession reproducibility of peripapillar...
Objective. To assess the intrasession repeatability and intersession reproducibility of peripapillar...
Objective. To assess the intrasession repeatability and intersession reproducibility of peripapillar...
Objective. To assess the intrasession repeatability and intersession reproducibility of peripapillar...
which permits unrestricted use, distribution, and reproduction in any medium, provided the original ...
Objective: To investigate the longitudinal cortical birefringence (corneal polarization axis [CPA] a...
Objective: To investigate the longitudinal cortical birefringence (corneal polarization axis [CPA] a...
Objective: To investigate the longitudinal cortical birefringence (corneal polarization axis [CPA] a...
AbstractPurposeTo study the capability of scanning laser polarimetry with variable corneal compensat...
Background: To detect differences in retinal nerve fiber layer (RNFL) measurements in absolute, adva...
Purpose: To compare the abilities of peripapillary retinal nerve fiber layer (RNFL) parameters of sp...
Phase retardation of in vivo human retinal nerve fiber layer (RNFL) is quantitatively measured by tw...