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OCT assets: Heidelberg Engineering's clinical programme manager, Chris Mody, describes how the 13 retinal layers can assist with the management and referral of patients.

Two decades since its introduction, optical coherence tomography (OCT) has become indispensable for research, screening, diagnosing and monitoring diseases of the macula and optic nerve head.

In a high quality, high resolution OCT scan, at least 13 retinal layers can be identified, the names of which are now widely accepted clinically (see Figure 1). The inner retina consists of the internal limiting membrane through to the external limiting membrane, and the outer retina consists of the photoreceptor layers through to the choroid. The various layers appear as either bright (hyperreflective) or dark (hyporeflective) bands depending on whether "Practitioners can be more confident in their management and referral of patients with eye disease" the layer is reflecting or absorbing light.


It is important to be able to identify and distinguish the different layers of the retina when interpreting OCT scans, as identifying an abnormality in a specific layer of the retina can assist the clinician in refining their differential diagnosis. For example, exudates and drusen often look similar with an ophthalmoscope or in fundus photos, but can be differentiated easily based on their location in the retinal layers. Exudates are usually located in or adjacent to the outer plexiform layer because they are lipid residues that originate from damaged capillaries found in the inner retina, whereas drusen are deposits located between the retinal pigment epithelium (RPE) and Bruch's membrane because the RPE is not functioning correctly.

With a heightened appreciation of retinal anatomy and physiology, combined with an understanding of a multimodality imaging approach, practitioners can be more confident in their management and referral of patients with eye disease.

To claim a free Retinal Layers Atlas, visit

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Title Annotation:Tools of the trade; optical coherence tomography
Author:Mody, Chris
Publication:Optometry Today
Article Type:Brief article
Geographic Code:4EUUK
Date:Feb 1, 2016
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