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Titlebook: Vitreous; in Health and Diseas J. Sebag Book 2014 Springer Science+Business Media New York 2014 biochemistry.ophthalmology.pathology.pharma

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II.E. Vitreoretinal Interface and Inner Limiting Membranelex formed by the internal limiting lamina of the retina, commonly called the internal limiting membrane (ILM), the posterior vitreous cortex, and an intervening extracellular matrix that is thought to be responsible for vitreoretinal adhesion (Figure II.E-1). Changes in each of these three componen
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II.F. To See the Invisible: The Quest of Imaging Vitreous understanding of its normal structure and function, its role in ocular health, and how things change in aging and disease. As described by Duke-Elder [1], the theories of human anatomy that were prevalent during the mid-eighteenth century proposed that the vitreous is composed of “loose and delicat
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III.D. Vitreo-Macular Adhesion/Traction and Macular Holes: Pseudo, Lamellar, and Full-Thicknessincluding the internal limiting membrane (ILM) of the retina. The ILM is primarily composed of type IV collagen. The interface between the ILM and posterior vitreous cortex contains a macromolecular attachment complex, which is composed of fibronectin, laminin, and other extracellular components suc
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Book 2014 sustained efforts to unravel the mysteries of how vitreous is composed and what role it plays in normal physiology as well as pathology. Over the years, however, many studies have produced important findings concerning vitreous biochemistry, structure,  physiology, and pathobiology. Published on th
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II.A. Development and Developmental Disorders of Vitreouslopment are often associated with severe congenital disorders that are reflected in the vitreous. In this chapter we provide a brief overview of the embryology of the eye and explore in detail vitreous development and its anomalies.
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III.D. Vitreo-Macular Adhesion/Traction and Macular Holes: Pseudo, Lamellar, and Full-Thickness plays a major role in vitreo-retinal adhesion [see chapter II.E. Vitreo-retinal interface and ILM]. Chondroitin sulfate may also play a role in mediating hyaluronan-collagen interaction in the gel vitreous [6, 7].
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