Fiber Alignment Measurement

Fiber alignment measurement is the quantitative assessment of how consistently fibrous structures share a common orientation, a key feature of engineered and biological tissues. In bioengineering, microscopy or imaging data are analyzed to identify individual fiber directions and calculate metrics such as orientation distributions, alignment angles, or anisotropy, which indicate whether fibers are randomly arranged or organized along a preferred axis. These measurements help evaluate electrospun scaffolds, collagen matrices, muscle and tendon models, and other anisotropic biomaterials. By linking fiber organization to mechanical behavior, cell alignment, and tissue function, the method supports scaffold optimization, quality control, and studies of structure-function relationships.

Fiber Alignment Measurement - Related Videos

Research

JoVE Journal - Bioengineering

Microengineering 3D Collagen Hydrogels with Long-Range Fiber Alignment

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Cited by 3 •

2022

This protocol demonstrates the use of a microfluidic channel with changing geometry along the fluid flow direction to generate extensional strain (stretching) to align fibers in a 3D collagen hydrogel (<250 µm in thickness). The resulting alignment extends across several millimeters and is influenced by the extensional strain rate.

Research

JoVE Journal - Bioengineering
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Measurement of Maximum Isometric Force Generated by Permeabilized Skeletal Muscle Fibers

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Cited by 49 •

2015

Analysis of the contractile properties of chemically skinned, or permeabilized, skeletal muscle fibers offers a powerful means by which to assess muscle function at the level of the single muscle cell. In this article we outline a valid and reliable technique to prepare and test permeabilized skeletal muscle fibers in vitro.

Preparation of Aligned Steel Fiber Reinforced Cementitious Composite and Its Flexural Behavior

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Cited by 19 •

2018

This protocol describes an approach for manufacturing aligned steel fiber reinforced cementitious composite by applying a uniform electromagnetic field. Aligned steel fiber reinforced cementitious composite exhibits superior mechanical properties to ordinary fiber reinforced concrete.

Microfluidic Dry-spinning and Characterization of Regenerated Silk Fibroin Fibers

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Cited by 6 •

2017

A protocol for the microfluidic spinning and microstructure characterization of regenerated silk fibroin monofilament is presented.

Epidural Intracranial Pressure Measurement in Rats Using a Fiber-optic Pressure Transducer

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Cited by 30 •

2012

A novel technique to record the pressures within the skull is described. The minimally invasive method uses a fibre-optic pressure sensing system to accurately measure intracranial pressure (ICP) in anaesthetized rats without causing significant brain trauma. The technique may be used in a wide range of experimental models.

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