Axonal Shearing

Axonal shearing is a form of mechanical damage in which nerve fibers are stretched, disrupted, or torn, impairing communication between neurons and their targets. It commonly occurs when rapid acceleration, deceleration, or rotational forces cause brain tissue to move unevenly, placing strain on axonal membranes and cytoskeletal structures; this can interrupt axonal transport and lead to swelling, disconnection, and degeneration. In biology and neuroscience, studying axonal shearing helps explain diffuse traumatic brain injury, its delayed cellular effects, and associated neurological deficits. The process also informs research into biomarkers, injury severity, neural repair, and strategies for protecting or restoring axonal function.

Axonal Shearing - Related Videos

Research

JoVE Journal - Medicine
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A Novel Capsulorhexis Technique Using Shearing Forces with Cystotome

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Cited by 5 •

2010

This video demonstrates a novel capsulorhexis technique in modern cataract surgery. Capsulorhexis is the most difficult and important part of phacoemulsification surgery.

Research

JoVE Journal - Biology

The Assembly and Application of 'Shear Rings': A Novel Endothelial Model for Orbital, Unidirectional and Periodic Fluid Flow and Shear Stress

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Cited by 10 •

2016

Different levels and patterns of fluid shear are known to modulate endothelial gene expression, phenotype and susceptibility to disease. We discuss the assembly and use of 'shear rings': a model that produces unidirectional, periodic shear stress patterns. Shear rings are simple to assemble, economical and can produce high cell yields.

Two-Photon Laser Axotomy: A Method to Injure Axons in Zebrafish Embryos and Observe Axonal Recovery

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2023

This video describes the method to injure axons in zebrafish embryos using two photon laser axotomy and observing axonal recovery from injury.

Education

JoVE Core - Mechanical Engineering

Shearing Stress

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2026

Shearing stress, denoted by the Greek letter tau (τ), is stress caused by forces acting transversely on an object. These forces create internal ones within the entity in the plane where the external forces are applied. The resultant of these internal forces is the shear in the section. The average shearing stress can be calculated by dividing the shear by the area of the cross-section. However, this is an average value as the distribution of shearing stress across a section varies. It can...

Shearing Strain

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2024

The shearing strain represents a cubic element's angular change when subjected to shearing stress. This type of stress can transform a cube into an oblique parallelepiped without influencing normal strains. The cubic element experiences a significant transformation when exposed solely to shearing stress. Its shape alters from a perfect cube into a rhomboid, clearly demonstrating the effect of shearing strain. The degree of this strain is considered positive if it reduces the angle between the...

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