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Light micrograph of an unstained iris showing the localisation of pigment cells in the iris pupillary border The pigment melanin is located in the po
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Ciliary body pigment light micrograph Unstained ciliary body (pars plicata) showing the location of pigment in the folds or ciliary processes (inne
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Ciliary body epithelium light micrograph The ciliary body is lined by a double-layered epithelium This unstained ciliary body epithelium clearly sh
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Light micrograph of the rear surface of an unstained iris showing the localisation of pigment cells The melanin pigment is concentrated in the rear s
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Light micrograph of the inner layers of the eyeball showing from bottom the choroid stroma with blood vessels and pigment cells the choriocapillari
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Light micrograph of the posterior surface of the iris showing the strongly pigmented anterior and posterior epithelia This section is near the iris p
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Light micrograph of the anterior surface of the iris lined by stromal fibroblasts and melanocytes It is one of the few body surfaces not lined by an
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Light micrograph of the layers of the eyeball showing from bottom the sclera the choroid with blood vessels and many pigment cells the choriocapil
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Human Iris light micrograph
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Embryonic stem cells Confocal light micrograph of dividing stem cells from the ventricular zone of the retina of a developing embryo The ventricular
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Light micrograph of a human retina From top to bottom the retina layers are nerve fibre layer ganglion cell layer inner plexiform layer inner nuc
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Light micrograph of the layers of the eyeball showing from bottom the sclera the choroid stroma with blood vessels and many pigment cells the chor
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Light micrograph of the inner layers of the eyeball showing from bottom the sclera the choroid stroma with blood vessels and pigment cells the cho
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Light micrograph of an iris showing from left anterior non-epithelia surface bordered by stromal fibroblasts and melanocytes iris stroma with str
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Light micrograph of eyeball showing its three layers separated by a retraction during sample processing From left bottom are the sclera pigmented ch
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Light micrograph of the eye showing from top the choroid stroma with blood vessels and pigment cells the choriocapillaris (a single layer of blood
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Light micrograph of the eye of an early albino rat embryo showing from left to right the optic cup with an outer layer (pigment epithelium without p
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Computer illustration of retinitis pigmentosa a genetic eye disease showing a retina with attenuated blood vessels pigmentary bone spicules and the
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Computer illustration of retinitis pigmentosa a genetic eye disease showing a retina with attenuated blood vessels pigmentary bone spicules and the
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Embryonic stem cells Computer-enhanced confocal light micrograph of dividing stem cells from the ventricular zone of the retina of a developing embry
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Computer illustration of an ophthalmoscope view of a retina with accumulation of lipofuscin deposits around and beyond the macula leading to progressi
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Illustration of a fluorescein angiography view of a retina with the accumulation of lipofuscin deposits around and beyond the macula leading to progre
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Computer illustration of an ophthalmoscope view of a retina with accumulation of lipofuscin deposits around and beyond the macula leading to progressi
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Computer illustration showing a circular band of hyperpigmentation in the retina in a case of autosomal dominant vitreoretinochoroidopathy This is a
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Computer illustration showing a circular band of hyperpigmentation in the retina in a case of autosomal dominant vitreoretinochoroidopathy This is a
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Illustration of a fluorescein angiography view of a retina with hyperfluorescent lesions windows defects and leakage of lipofuscin in a case of autos
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Computer illustration of retinitis pigmentosa a genetic eye disease At left is a normal retina and at right a retina with attenuated blood vessels
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Computer illustration of retinitis pigmentosa a genetic eye disease At left is a normal retina and at right a retina with attenuated blood vessels
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Best disease Computer illustration of an ophthalmoscope view of a normal retina (left) and the atrophic stage of Best vitelliform macular dystrophy w
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Treated diabetic retinopathy Ophthalmoscope view of the retina of the eye of a diabetic patient who suffered retinopathy after laser treatment Norm
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Best disease Computer illustration of an ophthalmoscope view of a normal retina (left) and the atrophic stage of Best vitelliform macular dystrophy w
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Best disease Illustration of a fluorescein angiography view of normal retina (left) and the atrophic stage of Best vitelliform macular dystrophy with
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Best disease Computer illustration of an ophthalmoscope view of a normal retina (left) and the vitelleruptive stage of Best vitelliform macular dystr
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Best disease Computer illustration of an ophthalmoscope view of a normal retina (left) and the vitelleruptive stage of Best vitelliform macular dystr
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Best disease Illustration of a fluorescein angiography view of a normal retina (left) and the vitelleruptive stage of Best vitelliform macular dystro
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Best disease Illustration of an ophthalmoscope view of a normal retina (right) and the pseudohypopyon stage of Best vitelliform macular dystrophy wit
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Best disease Illustration of a fluorescein angiography view of a normal retina (left) and the pseudohypopyon stage of Best vitelliform macular dystro
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Best disease Computer illustration of an ophthalmoscope view of a normal retina (left) and the pseudohypopyon stage of Best vitelliform macular dystr
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Best disease Computer illustration of an ophthalmoscope view of a normal retina (left) and the vitelliform stage of Best vitelliform macular dystroph
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Eye anatomy computer artwork At the front of the eye is the cornea (grey) a transparent coating Behind this is the lens (brown and pink) which is
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Best disease Illustration of an ophthalmoscope view of a normal retina and the vitelliform stage of Best vitelliform macular dystrophy with a classic
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Best disease Illustration of a fluorescein angiography view of a normal retina (left) and the vitelliform stage of Best vitelliform macular dystrophy
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Autosomal recessive bestrophinopathy Illustration showing a normal retina (left) and the accumulation of lipofuscin deposits around and beyond the ma
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Autosomal recessive bestrophinopathy Computer illustration showing a normal retina (left) and the accumulation of lipofuscin deposits around and beyo
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Illustration of a fluorescein angiography view of autosomal recessive bestrophinopathy A normal retina is at left and at right is a retina with an ac
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Computer illustration of autosomal dominant vitreoretinochoroidopathy a rare genetic disorder that affects the retina At left is a normal retina and
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Computer illustration of autosomal dominant vitreoretinochoroidopathy a rare genetic disorder that affects the retina At left is a normal retina and
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Illustration of a fluorescein angiography view of autosomal dominant vitreoretinochoroidopathy At left is a normal retina and at right a retina with
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Computer illustration of an ophthalmoscope view of the atrophic stage of Best vitelliform macular dystrophy showing macular atrophy by KATERYNA KON
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Retinal structure artwork Light falling on the retina passes from bottom to top At top is the choroid layer (red) which lines the inside of the ey
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Illustration of a fluorescein angiography view of the atrophic stage of Best vitelliform macular dystrophy showing macular atrophy by KATERYNA KONS
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Computer illustration of an ophthalmoscope view of the atrophic stage of Best vitelliform macular dystrophy showing macular atrophy by KATERYNA KON
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Computer illustration of an ophthalmoscope view of the vitelleruptive stage of Best vitelliform macular dystrophy showing its scrambled egg appearance
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Computer illustration of an ophthalmoscope view of the vitelleruptive stage of Best vitelliform macular dystrophy showing its scrambled egg appearance
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Illustration of a fluorescein angiography view of the vitelleruptive stage of Best vitelliform macular dystrophy showing its scrambled egg appearance
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Computer illustration of an ophthalmoscope view of the pseudohypopyon stage of Best vitelliform macular dystrophy showing layering of lipofuscin by
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Computer illustration of an ophthalmoscope view of the pseudohypopyon stage of Best vitelliform macular dystrophy showing layering of lipofuscin by
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Illustration of a fluorescein angiography view of the pseudohypopyon stage of Best vitelliform macular dystrophy showing layering of lipofuscin by K
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Illustration of a fluorescein angiography view of the vitelliform stage of Best vitelliform macular dystrophy showing the classic egg-yolk lesion by
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Computer illustration of an ophthalmoscope view of the vitelliform stage of Best vitelliform macular dystrophy showing the classic egg-yolk lesion b
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Computer illustration of an ophthalmoscope view of the vitelliform stage of Best vitelliform macular dystrophy showing the classic egg-yolk lesion b
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Bestrophinopathies computer illustration Bestrophinopathies are inherited retinal disorders caused by mutations in the BEST1 gene They include Best
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Bestrophinopathies computer illustration Bestrophinopathies are inherited retinal disorders caused by mutations in the BEST1 gene They include Best
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Normal eye and an eye affected by Best disease Illustration showing desaturated colours in the central vision blurring distortion and a black spot
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Normal eye and an eye affected by Best disease Illustration showing desaturated colours in the central vision blurring distortion and a black spot
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Normal eye and an eye affected by Best disease Illustration showing desaturated colours in the central vision blurring distortion and a black spot
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Stages of Best disease Computer illustration of the stages of Best vitelliform macular dystrophy with ophthalmoscope views by KATERYNA KONSCIENCE
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Stages of Best disease Computer illustration of the stages of Best vitelliform macular dystrophy with ophthalmoscope views by KATERYNA KONSCIENCE
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Best vitelliform macular dystrophy Computer illustration showing the Best1 protein the classic fundoscopic egg-yolk lesion on a retina and distorted
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Best vitelliform macular dystrophy Computer illustration showing the Best1 protein the classic fundoscopic egg-yolk lesion on a retina and distorted
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Choroid and retina light micrograph
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Retina photoreceptors TEM
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Retina photoreceptors TEM
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Retina TEM
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Human scalp light micrograph
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Human nipple light micrograph
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Human nipple light micrograph
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Human nipple light micrograph
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Human scalp light micrograph
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Human scalp light micrograph
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Apocrine sweat glands light micrograph
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Pigmentary retinopathy angiogram
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Pigmentary retinopathy angiogram
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Eye damage due to diabetes angiogram
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Eye damage due to diabetes fundoscopy
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Malignant melanoma LM
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Retina light micrograph
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Retina light micrograph
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Retina light micrograph
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Retina light micrograph
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Retina light micrograph
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Simple columnar epithelium light micrograph
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Simple columnar epithelium light micrograph
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Simple columnar epithelium light micrograph
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Simple columnar epithelium light micrograph
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Light micrograph of an unstained iris showing the localisation of pigment cells in the iris pupillary border The pigment melanin is located in the po
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Ciliary body pigment light micrograph Unstained ciliary body (pars plicata) showing the location of pigment in the folds or ciliary processes (inne
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Ciliary body epithelium light micrograph The ciliary body is lined by a double-layered epithelium This unstained ciliary body epithelium clearly sh
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Light micrograph of the rear surface of an unstained iris showing the localisation of pigment cells The melanin pigment is concentrated in the rear s
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Light micrograph of the inner layers of the eyeball showing from bottom the choroid stroma with blood vessels and pigment cells the choriocapillari
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