Ocular Biomechanics

Ocular biomechanics is the study of how the eye’s tissues and fluids respond to forces, pressures, and mechanical loading, providing a bioengineering framework for understanding vision and eye health. It examines how intraocular pressure, tissue stiffness, elasticity, geometry, and fluid-structure interactions produce deformation in structures such as the cornea, sclera, and optic nerve head. Researchers combine mechanical testing, medical imaging, and computational modeling to characterize these responses and predict changes over time. These approaches support glaucoma research, improve assessment of corneal behavior, guide refractive and ocular surgery, and inform the design of implants and diagnostic technologies.

Ocular Biomechanics - Related Videos

Research

JoVE Journal - Biology

The Mammalian Ocular Lens in Focus: Development, Anatomy, Physiology, Transparency, Biomechanics, and Age-Related Challenges

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2026

The function of the ocular lens to focus light onto the retina depends on tissue transparency, biomechanics, and refractive index. This review highlights the three-dimensional architecture of the lens and discusses the complex mechanisms that maintain tissue homeostasis.

In Vivo Biomechanical Testing of Nerve: A Procedure for Biomechanical Analysis of Brachial Plexus Nerve Injury in a Neonatal Pig Model

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2025

In this video, we demonstrate the biomechanical testing of the brachial plexus nerve in a pig model to measure the threshold tensile strength of the nerve when subjected to stretching. This technique helps in determining the structural and mechanical properties of the nerve.

Research

JoVE Journal - Medicine
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Experimental Glaucoma Induced by Ocular Injection of Magnetic Microspheres

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Cited by 25 •

2015

We present a method for inducing elevated intraocular pressure (IOP), by injecting magnetic microspheres into the rat eye, to model glaucoma. This leads to strong pressure rises, and extensive neuronal death. This protocol is easy to perform, does not require repeat injections, and produces stable long-lasting IOP rises.

A Method to Induce Ocular Surface Inflammation in a Murine Model

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2025

This video demonstrates a method to induce ocular surface inflammation and meibomian gland dysfunction in a murine model. Stimulation of the mouse's immune system using an immunogen and later restimulation with the same immunogen promotes ocular surface inflammation, which causes plugging of meibomian gland secretion through neutrophil-produced aggNETs and leads to dry eye disease.

Laser-Induced Chronic Ocular Hypertension Model on SD Rats

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Cited by 26 •

2007

Glaucoma is one of the major causes of blindness in the world. Elevated intraocular pressure is a major risk factor. Laser photocoagulation induced ocular hypertension is one of the well established animal models. This video demonstrates how to induce ocular hypertension by Argon laser photocoagulation in rat.

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