Corneal Scleral Divide

The corneal scleral divide, commonly called the limbus or corneoscleral junction, is the boundary where the transparent cornea meets the opaque, collagen-rich sclera and adjacent conjunctiva. Its specialized tissue architecture forms a transition zone: limbal epithelial stem cells continually replenish the corneal surface, while nearby vascular and neural networks support tissue maintenance around the normally avascular central cornea. In neuroscience and vision research, this region provides an anatomical landmark for studying corneal innervation, ocular injury, inflammation, and sensory signaling. Damage to the limbus can disrupt epithelial renewal and corneal clarity, making it important in eye disease research, surgery, and regenerative approaches.

Corneal Scleral Divide - Related Videos

Research

JoVE Journal - Neuroscience

Ex Vivo Organotypic Corneal Model of Acute Epithelial Herpes Simplex Virus Type I Infection

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Cited by 27 •

2012

In this video article we describe the use of a new ex vivo model of acute herpes simplex virus type I corneal epithelial infection.

Education

JoVE Core - Electrical Engineering

Voltage Dividers

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2024

In electrical circuits, resistors can be connected in series, sequentially linked one after the other. In a series configuration, the same current flows through each resistor. Ohm's law is a fundamental principle to understand the behavior of resistors in series. It expresses the voltage across these resistors in terms of the current and resistance. Kirchhoff's voltage law implies that the sum of the voltages across the resistors in series equals the source voltage. This means that the current...

Current Dividers

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2025

In parallel electrical connections, resistors are linked between the same pair of nodes, creating an equal voltage across each resistor. Kirchhoff's current law is applied to these connections, establishing that the sum of currents through these resistors equals the source current. Utilizing Ohm's law, the source current is determined as the product of the source voltage and the sum of the reciprocals of individual resistances. This relationship simplifies the process of finding the current...

An Alkali-burn Injury Model of Corneal Neovascularization in the Mouse

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Cited by 75 •

2014

Neovascularization (NV) of the cornea can complicate multiple visual pathologies. Utilizing a controlled, alkali-burn injury model, a quantifiable level of corneal NV can be produced for mechanistic study of corneal NV and evaluation of potential therapies for neovascular disorders.

Scleral Cross-linking Using Riboflavin and Ultraviolet-A Radiation for Prevention of Axial Myopia in a Rabbit Model

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Cited by 27 •

2016

We demonstrate the effect of scleral crosslinking with riboflavin and UVA on an axial elongation rabbit eye. Axial elongation was induced in 13 day-old New Zealand rabbits (male and female) by suturing their right eye eyelids (tarsorrhaphy).

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