İnterpretation of optic coherence tomography images

27
B. Jeroen Klevering University Medical Centre Nijmegen - The Netherlands Interpretation of the OCT Image (and some new developments)

description

 

Transcript of İnterpretation of optic coherence tomography images

Page 1: İnterpretation of optic coherence tomography images

B. Jeroen Klevering

University Medical Centre Nijmegen-

The Netherlands

Interpretation of the OCT Image(and some new developments)

Page 2: İnterpretation of optic coherence tomography images

Topics

• The OCT image

─ Normal retina and key retinal pathologies

a. outer retina

b. middle retina

c. vitreo-retinal interface

─ New developments

Page 3: İnterpretation of optic coherence tomography images

Optical Coherence Tomography

This is what we wanted…

Page 4: İnterpretation of optic coherence tomography images

Optical Coherence Tomography

…this is what we got…

Page 5: İnterpretation of optic coherence tomography images

Interpretation of OCT images

Outer retina

250 !m 500 !m

• The OCT image is expanded in the axial direction

Page 6: İnterpretation of optic coherence tomography images

Outer HRL

Inner HRL

• Inner HRL: junction between inner and outer photoreceptor segments

• Outer HRL: retinal pigment epithelium (probably with choriocapillaris)

• Fovea:

─ absence of inner retinal layers

─ increased thickness of the photoreceptor layer

Outer retina

Interpretation of OCT images

Page 7: İnterpretation of optic coherence tomography images

Outer retina

Interpretation of OCT images

High resolution

Spectral Domain

(Fourier

Domain OCT)

Page 8: İnterpretation of optic coherence tomography images

Key retinal pathologies – outer retina

Page 9: İnterpretation of optic coherence tomography images

Key retinal pathologies – outer retina

Page 10: İnterpretation of optic coherence tomography images

Key retinal pathologies – outer retina

Page 11: İnterpretation of optic coherence tomography images

choriocapillaris

retinal pigment epithelium

photoreceptor outer segments

photoreceptor inner segments

outer limiting membrane

outer nuclear layer

outer plexiform layer

inner nuclear layer

inner plexiform layer

ganglion cell layer

nerve fiber layer

internal limiting membrane

Page 12: İnterpretation of optic coherence tomography images

Layers of the retina

Interpretation of OCT images

RPE and choriocapillaris Outer

nuclear

layer

External limiting

membraneOuter and inner

photoreceptor

segments

Outer

plexiform

layer

Inner

nuclear

layer

Inner

plexiform

layer

Ganglion

cell layer

Nerve

fiber

layer

Page 13: İnterpretation of optic coherence tomography images

300 !m____

RPE

Larger choroidal vessels

Inner/outer segment junction

External limiting membrane

Outer nuclear layer

Inner Nuclear layer

Outer plexiform layer

Inner plexiform layer

Ganglion cell layer

Layers of the retina

Interpretation of OCT images

High resolution spectral OCT

Nerve fiber layer

Page 14: İnterpretation of optic coherence tomography images

Key retinal pathologies – middle retina

Page 15: İnterpretation of optic coherence tomography images

Key retinal pathologies – middle retina

Page 16: İnterpretation of optic coherence tomography images

Key retinal pathologies – middle retina

Page 17: İnterpretation of optic coherence tomography images

Key retinal pathologies – vitreo-retinal interface

VA 20/40 following

cataract surgery

Page 18: İnterpretation of optic coherence tomography images

Key retinal pathologies – vitreo-retinal interface

Page 19: İnterpretation of optic coherence tomography images

Key retinal pathologies – vitreo-retinal interface

Page 20: İnterpretation of optic coherence tomography images

Artefacts in OCT imaging

Image of good quality

Out of focus

Vignetted image

Fixation error

Page 21: İnterpretation of optic coherence tomography images

Kwalitative measurements

─ Retinal thickness measurement

─ Retinal nerve fiber layer thickness

─ Optic nerve head analysis

Page 22: İnterpretation of optic coherence tomography images

Arows = epithelialized drainage

channels

Arrowheads = non-epithelialized

drainage slits

E = conjunctival epithelium

L = lamina propria conjunctivae

T = tenons layer

S = sclera

Myopia claw lens

New developments – Anterior segment OCT

Page 23: İnterpretation of optic coherence tomography images

New developments – Spectral (Fourier) Domain Analysis

Page 24: İnterpretation of optic coherence tomography images

New developments – Heidelbergs Spectralis

Geographic atrophy and drusen

Infrared and OCT

Occult CNV with PED

Fluorescein angiography and OCT

Dry AMD

Autofluorescence and OCT

Page 25: İnterpretation of optic coherence tomography images

New developments – Zeiss Cirrus

Page 26: İnterpretation of optic coherence tomography images

New developments – Zeiss Cirrus

Page 27: İnterpretation of optic coherence tomography images

The End