The Uveal Tract

OPTOMETRY · SEMESTER 2

The Uveal Tract

Ocular Anatomy and Physiology

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The Uveal Tract

CHAPTER 9.

THE UVEAL TRACT

THE FOLLOWING TOPICS WILL BE COVERED BY THE END OF THIS

CHAPTER:

DEFINITION AND STRUCTURE OF THE UVEA

THE IRIS

THE CILIARY BODY

THE CHOROID

SOME DISORDERS AFFECTING THE UVEA

A RWONS

  • 1. DEFINITION AND STRUCTURE.
  • The uvea is the vascular middle layer of the eye ball.
  • When the outer layer , the sclera ,is removed the eye ball appears like a black
  • grape hanging on its stalk( the optic nerve), hence the name.
  • The uvea is made up of three structures:
  • The iris.
  • The ciliary body.
  • The choroid
  • The is no clear demarcation between these three parts, they are continuous
  • with each other , lining the sclera from the anterior opening to the posterior
  • aperture for the optic nerve.
  • 2. THE IRIS.
  • This is the most anterior part of the uvea, measuring about 12mm in
  • diameter.. The iris is a thin, circular structure located anterior to
  • the lens, often compared to a diaphragm of an optical
  • ‘system. The center aperture
  • It is a thin, contractile, SdoUghnUt/shaped” structure that is found in the
  • anterior segment of the eye between the cornea and the lens.
  • It in turn divides the anterior segment into anterior and posterior chambers.
  • The anterior chamber is the space between the cornea and the iris, while
  • the posterior chamber is the space between the iris and the lens.
  • This division of the anterior segment is important for the Cataract/surgeons!)
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  • The central opening of the “doughnut” is called the pupil.
  • By varying the size of the pupil, the iris muscles ( sphincter and dilator) ,
  • control the amount of light entering the eye.
  • All light that enters the eye, passes through the pupil.
  • The aqueous humour , formed by the ciliary processes in the posterior
  • chamber , circulates through the pupil into the anterior chamber.
  • The iris is made up of : connective'tissue;muscles)/pigmented|cells
  • (melanocytes), nerves, blood vessels.
  • The colour of the iris varies from one individual to another, depending on the
  • amount of pigment contained by the melanocytes.
  • 2.1. Surface anatomy of the iris.
  • a. The anterior surface.
  • The anterior surface of the iris contains crypts and crevices in contact with
  • the aqueous
  • in the anterior chamber.
  • The aqueous humour thus has direct communication with the tissue spaces
  • of the iris.
  • The center is the pupil, a black aperture with a varying diameteffrom=8
  • mm.
  • The pupil appears black because the interior of the eye is dark.
  • The anterior surface is divided into:
  • e acentral, pupillary zone and
  • e aperipheral , ciliary zone.
  • The iris is thickest at the demarcation zone between the pupillary and the
  • ciliary zones called collarette, which lies about 2mm from the pupillary zone.
  • At the pupillary margin , a darker zone is seen surrounding the pupil. This is
  • the so called pupillary ruff, representing the posterior pigmented layer of
  • the iris curving around the pupillary margin.
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  • b. The posterior surface.
  • The posterior surface of the iris is markedly pigmented and shows a
  • number of contraction folds.
  • 2.2. Microscopic anatomy of the iris.
  • The iris consists of two layers:
  • a. the stroma;
  • b. the pigmented epithelial layers;
  • a. The iris stroma.
  • The stroma devoid of epithelium, represents the anterior border of the iris.
  • Embryologically itforiginates frommesenchymey)
  • It is composed of a highly vascular connective tissue containing collagen
  • fibres, fibroblasts, melanocytes, nerve fibres and the smooth muscles that
  • control the pupillary movements (the sphincter and the dilator pupillae)
  • Blood vessels form the bulk of the iris stroma.
  • Their course is mostly radial, arising from the major arterial circle passing
  • towards the centre.
  • The major arterial circle is located in the ciliary body, not the iris.
  • At the level of the collarette , anastomoses occur between arteries and veins,
  • to form the minor vascular circle , which is often incomplete.
  • The sphincter pupillae muscle is an 1mm wide circular band of smooth
  • muscle fibers, located in the posterior stroma near the pupillary margin.
  • Its innervation is by parasympathetic fibres fromthe Edinger Westphal
  • fiiclelis of cranial/nerve lll;ithese fibres synapse in the ciliary ganglion and
  • are distributed via the short posterior ciliary nerves to the sphincter muscle.
  • When the sphincter pupillae contracts , the pupil constricts ( miosis ).
  • The dilator pupillae is made up by myorpithelial cells that extend from the
  • iris root to the sphincter pupillae, lying parallel and anterior to the posterior
  • pigmented epithelium.
  • The nerve supply is from the sympathetic postganglionic fibres via the long
  • ciliary nerves.
  • When the dilator muscle contracts , the pupil enlarges ( mydriasis ).
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  • b. The pigmented epithelial layers.
  • There are 2 pigmented layers, the anterior and the posterior pigmented layer.
  • Embryologically derived from the neuroectoderm of the optic cup, the cells
  • of the two layers are apposed to each other apex to apex.
  • Between lies a potential space that can, under certain circumstances, fill _
  • with fluid and become real space.
  • The anterior epithelial layer , only slightly pigmented, lies in contact with the
  • iris stroma and is closely associated with the myoepithelial cells of the
  • dilator pupillae muscle.
  • It is continuous withithejouten layer of the ciliary epithelium:
  • The posterior epithelial layer , facing the posterior chamber, is made of cells
  • densely packed with melanin.
  • Anteriorly it extends to the pupillary ruff while posteriorly is continous with
  • the inner layer of the ciliary epithelium.
  • Anterior chamber angle
  • Trabecular meshwork Ciliary zone Pupillary zone
  • Schlemm's canal
  • SOS Collarette
  • [ — Pupil frill
  • Pupillary
  • 27 margin
  • Anterior border
  • Iris root layer Sphincter
  • papillae
  • __ Stroma with blood
  • vessels and nerves
  • Anterior epithelium—
  • radial myopepithelial
  • dilator papillae
  • muscle
  • Ciliary process Posterior
  • epithelium pigmented
  • epithelium
  • Fig. 9.1. Diagram of iris and ciliary body anatomy.
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  • 2. THE CILIARY BODY.
  • The ciliary body is aring shaped structuréthat bridges the iris'and! choroid.
  • It is 6mm wide extending from the scleral spur (anteriorly ) to the ora
  • serrata of the retina (posteriorly ).
  • Triangular in cross section , the apex is directed posteriorly to become
  • continuous with the choroid, while the base is anterior, giving rise to the iris.
  • 2.1. Macroscopic anatomy of the ciliary body.
  • The ciliary body consists of two parts:
  • a. pars plana;
  • b. pars plicata.
  • a. Pars plana.
  • The pars plana represents the posterior 4 mm of the ciliary body.
  • It has a smooth, flat surface. Some of the zonular fibres attach here.
  • The safest posterior surgical approach to the vitreous cavity is through the
  • pars plana, located 3-4 mm from the corneal limbus.
  • b. Pars plicata.
  • This is the richly vascularised anterior 2 mm of the ciliary body, consisting of
  • approximately 70 ciliary processes.
  • Each ciliary process contains a central vascular core of capillaries surrounded ©
  • The pars plicata is functionally the most important zone of the ciliary body ,
  • since aqueous humour is formed in the ciliary processes.
  • The majority of the zonular fibres which support the lens, arise from the
  • valleys between the ciliary processes.
  • 2.2. Microscopic anatomy of the ciliary body.
  • The ciliary body can be divided microscopically in three parts:
  • a. the ciliary epithelium;
  • b. the ciliary muscle;
  • c. the ciliary stroma.
  • a. The ciliary epithelium.
  • The ciliary body is lined by a double layer of epithelial cells lying apex to apex,
  • the nonpigmented and the pigmented epithelium.
  • Embryologically , they represent the two layers of the optic cup
  • (neuroectoderm ).
  • The inner, nonpigmented epithelium facing the posterior chamber,
  • constitutes the anterior continuation of the neurosensory retina.
  • The outer , pigmented epithelium facing the stroma, is continuous
  • posteriorly with the retinal pigment epithelium.
  • The cells packed with pigment, contain numerous organelles also, indicating
  • some metabolic activity.
  • The structure of the two layers of ciliary epithelium appears to suggest that
  • both layers are involved in aqueous humour formation.
  • The presence of numerous cell attachments between the two layers
  • suggests that the activities of the two cell layers may be coordinated.
  • b. The ciliary muscle.
  • The ciliary muscle is a smooth muscle that has three layers of fibres:
  • e longitudinal;
  • e radial;
  • e circular.
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  • Innervation is by the postganglionic parasympathetic fibres derived from
  • c. The ciliary body stroma consists of loose connective tissue rich in blood
  • vessels and melanocytes.
  • 2.3. The functions of the ciliary body.
  • The ciliary body has three functions:
  • e aqueous formation by the ciliary epithelium;
  • e aqueous dranaige (trabecular and uveoscleral );
  • e accommodation: when the ciliary muscle contracts the zonules relax
  • and the lens becomes more spherical, increasing its refractive power
  • (accommodates).
  • 3. THE CHOROID.
  • The choroid , the posterior portion of the uveal tract, is athin, pigmented ,
  • extremely vascular layer, lining the inner surface of the sclera.
  • Between the sclera and choroid there is a potential space occupied by a thin,
  • pigmented connective tissue called suprachoroid.
  • 3.1. The structure of the choroid.
  • The choroid has three layers :
  • a. The vessel layer consists of a :
  • e outer, large vessel layer (Haller’s)
  • e inner, medium vessel layer (Sattler’s)
  • The vessels are embedded in a loose connective tissue which also contains
  • abundant melanocytes and many immune cells such as mast cells and
  • macrophages.
  • b. The capillary layer ( choriocapillaris ).
  • It consists of a single layer of wide diameter capillaries, supported by
  • delicate connective tissue containing melanocytes.
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  • It has a lobular pattern and is most dense at the macula.
  • c. Bruch’s membrane is a thin acellular membrane resulting from the fusion
  • of the basal laminae of the retinal pigment epithelium and of the
  • choriocapillaris; thus, the connection between the retinal pigment epithelium
  • and choroid is strong.
  • The function of this membrane is not exactly known, although it is believed
  • it plays a role in the passage of tissue fluid from the choroidal capillaries to
  • the retina.
  • 3.2. The blood supply and innervation of the choroid.
  • The choroid receives its blood mainly via the posterior ciliary arteries from
  • the ophthalmic artery. There is a minimal supply also, via the anterior ciliary
  • arteries.
  • Blood flow in the choroid is very high ( similar to the renal glomerular
  • capillaries) ; it is controlled by the sympathetic fibres of the short ciliary
  • nerves.
  • The 4 vortex veins drain the choroid into the ophthalmic veins.
  • The innervation is by the /ong and short ciliary nerves.
  • The long ciliary nerves origin is the trigeminal nerve (cranial nerve V ). They
  • carry sensory and sympathetic fibres.
  • The short ciliary nerves arise from the ciliary ganglion and carry
  • parasympathetic and sympathetic fibres.
  • 3.3. The functions of the choroid.
  • a. nutrition of the outer retina is the principal function of the choroid.
  • b. helps in heat dissipation from the retina.
  • c. assists in regulating intraocular pressure.
  • d. the large number of pigment cells absorb excess light .
  • e. has immunological role, as it contains many immune cells and as there is
  • no intraocular lymphatic system.
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  • 4. SOME DISORDERS AFFECTING THE UVEA.
  • Because of its extreme vascularity, the uveal tract is commonly involved in
  • general systemic diseases and may be a site for circulatory metastases.
  • From the uveal melanocytes malignant melanomas may arise; these are the
  • most common malignant intraocular tumours.
  • The iris, ciliary body and anterior part of the choroid share a common blood
  • supply , and as such, are often together involved in inflammatory processes.
  • Uveitis is broadly defined as inflammation of the uvea.
  • Lesions of the choroid may interfere with retinal nutrition and cause atrophy
  • of the retina.
  • With age, Bruch’s membrane may show thickened yellow patches, referred
  • to as drusen.

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