Axon Orientation Measurement

Axon orientation measurement is a quantitative approach for determining the direction and alignment of axons in neural tissue, cultures, or biomaterial scaffolds, helping characterize how neuronal architecture is organized. Typically, fluorescence or phase-contrast microscopy images are segmented to identify axonal processes, and computational analysis assigns each process an angle relative to a reference axis, then summarizes the angle distribution using measures such as alignment or dispersion. In neuroscience, these measurements support studies of axon guidance, neural development, injury and regeneration, and engineered neural interfaces by revealing whether experimental conditions promote organized growth, random outgrowth, or changes in network architecture.

Axon Orientation Measurement - Related Videos

Research

JoVE Journal - Bioengineering

Measurement of Tension Release During Laser Induced Axon Lesion to Evaluate Axonal Adhesion to the Substrate at Piconewton and Millisecond Resolution

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Cited by 1 •

2013

We measured the tension release in an axon that was partially lesioned with a laser dissector by simultaneous force spectroscopy measurement performed on an optically-trapped probe adhered to the membrane of the axon. The developed experimental protocol evaluates the axon adhesion to the culture substrate.

Methods for Measuring the Orientation and Rotation Rate of 3D-printed Particles in Turbulence

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Cited by 7 •

2016

We use 3D printing to fabricate anisotropic particles in the shapes of jacks, crosses, tetrads, and triads, whose alignments and rotations in turbulent fluid flow can be measured from multiple simultaneous video images.

In Vivo Electrophysiological Measurement of the Rat Ulnar Nerve with Axonal Excitability Testing

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Cited by 3 •

2018

Axonal excitability techniques provide a powerful tool to examine pathophysiology and biophysical changes that precede irreversible degenerative events. This manuscript demonstrates the use of these techniques on the ulnar nerve of anesthetized rats.

Research

JoVE Journal - Biology
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Modeling Biological Membranes with Circuit Boards and Measuring Electrical Signals in Axons: Student Laboratory Exercises

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Cited by 15 •

2011

This is a demonstration of how biological membranes can be understood using electrical models. We also demonstrate procedures for recording action potentials from the ventral nerve cord of the crayfish for student orientated laboratories.

Zebrafish Rheotaxis Assay: A Method for Measuring Orientation Behavior in Response to Different Water Flow Rates

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2023

This video describes the rheotaxis assay in zebrafish. The method involves the measurement of orientation behavior of zebrafish in response to different water flow rates under the influence of different magnetic fields.

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