Performance of 24-2C Visual Field Grid in Detecting Central Glaucomatous Defects: A Comparative Study with Microperimetry

Precis: Our study shows that the 24-2C VF test provides central functional information strongly correlated with 10-2 and MAIA measurements, with a shorter testing time. It may serve as a useful complementary tool in routine glaucoma assessment. Purpose: To compare performance of 24-2C visual field (VF) grid and microperimetry in detecting central defects in glaucoma patients, and to correlate perimetric parameters with anatomical alterations. Materials and Methods: This cross-sectional, single-center study included 214 eyes (118 glaucoma, 96 healthy). Participants underwent VF testing using 24-2C SITA-Faster, MAcular Integrity Assessment (MAIA) microperimetry, and 10-2 SITA-Standard grids. Macular imaging, including ganglion cell-inner plexiform layer complex (GC-IPL) analysis, was performed using Cirrus OCT. The primary outcome was a comparison of global indices between 24-2C grid and microperimetry. Secondary outcomes included comparisons with 10-2 grid, structure-function correlation, test duration, and 24-2C grid performance based on glaucoma severity. Results: 24-2C Mean Deviation (MD) correlated significantly ( P <0.001) with MAIA average threshold (R²=0.72) and CMS (R²=0.83). Significant correlations were also observed between 24-2C and 10-2 grids for MD (R²=0.77), PSD (R²=0.65), and CMS (R²=0.87). 24-2C grid required a shorter testing time ( P <0.001) than MAIA and 10-2 grids. GC-IPL analysis revealed a significant correlation with 24-2C grid ( P <0.001), particularly in the superior nasal sector (r=0.631). 24-2C grid demonstrated a stronger correlation with microperimetry for CMS, with r=0.674 in early-stage glaucoma and r=0.651 in advanced-stage glaucoma. Conclusion: 24-2C VF grid has a potential complementary role in glaucoma assessment for detecting central VF defects in glaucoma patients. Its structure-function correlation supports its use as a promising tool in routine clinical practice.

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Publication Details

Journal
Journal of Glaucoma
Published
2026-10-07
DOI
https://doi.org/10.1097/ijg.0000000000002789
Primary Topic
Glaucoma and retinal disorders
Type
article
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0.00
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OCT
article

Performance of 24-2C Visual Field Grid in Detecting Central Glaucomatous Defects: A Comparative Study with Microperimetry

Laurent Kodjikian, P. Denis, A. Barbarroux, Amina Rezkallah et al.
Journal of Glaucoma
Glaucoma and retinal disorders
article

Performance of 24-2C Visual Field Grid in Detecting Central Glaucomatous Defects: A Comparative Study with Microperimetry

Laurent Kodjikian, P. Denis, A. Barbarroux, Amina Rezkallah, Benoît Allignet, Sami Bounetta, Thibaud Mathis, Victor VERMOT-DESROCHES
article en

Abstract

Precis: Our study shows that the 24-2C VF test provides central functional information strongly correlated with 10-2 and MAIA measurements, with a shorter testing time. It may serve as a useful complementary tool in routine glaucoma assessment. Purpose: To compare performance of 24-2C visual field (VF) grid and microperimetry in detecting central defects in glaucoma patients, and to correlate perimetric parameters with anatomical alterations. Materials and Methods: This cross-sectional, single-center study included 214 eyes (118 glaucoma, 96 healthy). Participants underwent VF testing using 24-2C SITA-Faster, MAcular Integrity Assessment (MAIA) microperimetry, and 10-2 SITA-Standard grids. Macular imaging, including ganglion cell-inner plexiform layer complex (GC-IPL) analysis, was performed using Cirrus OCT. The primary outcome was a comparison of global indices between 24-2C grid and microperimetry. Secondary outcomes included comparisons with 10-2 grid, structure-function correlation, test duration, and 24-2C grid performance based on glaucoma severity. Results: 24-2C Mean Deviation (MD) correlated significantly ( P <0.001) with MAIA average threshold (R²=0.72) and CMS (R²=0.83). Significant correlations were also observed between 24-2C and 10-2 grids for MD (R²=0.77), PSD (R²=0.65), and CMS (R²=0.87). 24-2C grid required a shorter testing time ( P <0.001) than MAIA and 10-2 grids. GC-IPL analysis revealed a significant correlation with 24-2C grid ( P <0.001), particularly in the superior nasal sector (r=0.631). 24-2C grid demonstrated a stronger correlation with microperimetry for CMS, with r=0.674 in early-stage glaucoma and r=0.651 in advanced-stage glaucoma. Conclusion: 24-2C VF grid has a potential complementary role in glaucoma assessment for detecting central VF defects in glaucoma patients. Its structure-function correlation supports its use as a promising tool in routine clinical practice.

Journal of Glaucoma
Université Claude Bernard Lyon 1 (FR), Centre National de la Recherche Scientifique (FR), Inserm (FR), Hôpital de la Croix-Rousse (FR), Hospices Civils de Lyon (FR), Centre Léon Bérard (FR), Centre Ophtalmologique d'Imagerie et de Laser (FR), Centre de Recherche en Acquisition et Traitement de l'Image pour la Santé (FR), Institut National des Sciences Appliquées de Lyon (FR)
Openalex Percentile: Top 9%
Glaucoma and retinal disorders
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