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Medición automática de la zona avascular foveal de ojos sanos en angiografía por tomografía de coherencia óptica de dominio espectral Heidelberg
Institution:1. Departamento de Oftalmología, Consorci Sanitari de Terrassa, Terrassa, Barcelona, España;2. Universidad Politécnica de Catalunya, Barcelona, España;1. Servicio de Oftalmología, Hospital Universitario del Henares, Madrid, España;2. Facultad de Medicina, Universidad Francisco de Vitoria, Madrid, España;1. IOBA (Instituto de Oftalmobiología Aplicada), Universidad Valladolid, Valladolid, España;2. IOBA (Instituto de Oftalmobiología Aplicada), Universidad Valladolid, Hospital Universitario de Valladolid, Valladolid, España;1. Servicio de Oftalmología, Hospital Universitario Infanta Leonor, Madrid, España;2. Servicio de Oftalmología, Hospital Universitario La Princesa, Madrid, España;3. Servicio de Oftalmología, Hospital Universitario Fundación Alcorcón, Universidad Rey Juan Carlos, Alcorcón, Madrid, España;1. Departamento de Medicina Interna, Hospital Marqués de Valdecilla, IDIVAL, Santander, España;2. División de Hematología, Hospital Marqués de Valdecilla, Santander, España;3. Departamento de Oftalmología, Hospital Marqués de Valdecilla, IDIVAL, Santander, España
Abstract:PurposeTo develop and evaluate an automated method to measure the foveal avascular zone (FAZ) area in healthy eyes on Heidelberg Spectralis Optical Coherence Tomography Angiography (HS-OCTA). This method is referred to as the modified Kanno-Saitama macro (mKSM) which is an evolution of the Kanno-Saitama macro (KSM) approach.MethodsThis cross-sectional study included 29 eyes of 25 healthy volunteers who underwent HS-OCTA at the macular area twice at the same time. Regardless of the quality of the images, all of them were included. Macular data on the superficial vascular plexus, intermediate capillary plexus (ICP) and deep capillary plexus were processed by mKSM. The FAZ area was measured twice automatically using the mKSM and KSM and twice manually by two independent examiners.ResultsFrom 174 images, KSM could not measure correctly 31% while mKSM could successfully measure all of them. Intrascan intraclass coefficient ranged from 0.948 to 0.993 for manual measurements and was 1 for mKSM method. Despite that the difference between human examiners is smaller than between human examiners and mKSM according to Bland-Altman plots, the scatterplots show a strong correlation between human and automatic measurements. The best results are obtained in ICP.ConclusionsWith mKSM, the automated determination of the FAZ area in HS-OCTA is feasible and less human-dependent. It solves the inability of KSM to measure the FAZ area in suboptimal quality images which are frequent in daily clinical practice. Therefore, the mKSM processing could contribute to our understanding of the three vascular plexuses.
Keywords:Heidelberg Spectralis  Optical coherence tomography angiography  Automated measurement  Foveal avascular zone  Intermediate capillary plexus
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