Fiber Diameter Analysis

Fiber diameter analysis is a quantitative method for measuring the width and size distribution of fibers, a key property for evaluating fibrous materials in bioengineering. It typically combines microscopy with calibrated image analysis to identify fiber boundaries, convert pixel dimensions to physical units, and calculate metrics such as mean diameter, range, and variability. These measurements help researchers assess fabrication consistency and relate fiber geometry to scaffold porosity, surface area, mechanical behavior, and cell interactions, particularly in engineered matrices and other fibrous biomaterials. Standardized analysis also supports comparison among processing conditions and guides the design of materials for tissue engineering and regenerative applications.

Fiber Diameter Analysis - Related Videos

Research

JoVE Journal - Chemistry

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.

Semi-automated Analysis of Mouse Skeletal Muscle Morphology and Fiber-type Composition

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Cited by 26 •

2017

Immunohistochemical staining of myosin heavy chain isoforms has emerged as the state-of-the-art discriminator of skeletal muscle fiber-type (i.e., type I, type IIA, type IIX, type IIB). Here, we present a staining protocol along with a novel semi-automated algorithm that facilitates rapid assessment of fiber-type and fiber morphology.

Three-dimensional Imaging and Analysis of Mitochondria within Human Intraepidermal Nerve Fibers

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2017

This protocol uses three-dimensional (3D) imaging and analysis techniques to visualize and quantify nerve-specific mitochondria. The techniques are applicable to other situations where one fluorescent signal is used to isolate a subset of data from another fluorescent signal.

Using Spectral Reflectometry to Determine Myelinated Axon Diameters in a Fixed Mouse Brain Slice

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2025

Source: Kwon, J., et al., Spectral Reflectometric Microscopy on Myelinated Axons In Situ. J. Vis. Exp. (2018) This video demonstrates the use of spectral reflectometry with a hyperspectral confocal microscope to analyze interference patterns and determine myelinated axon diameters in fixed brain tissue slices.

Fabricating Metamaterials Using the Fiber Drawing Method

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Cited by 23 •

2012

Metamaterials at terahertz frequencies offer unique opportunities, but are challenging to fabricate in bulk. We adapt the fabrication procedure for microstructured polymer optical fibers to inexpensively fabricate metamaterials potentially on an industrial scale. We produce polymethylmethacrylate fibers containing ~10 μm diameter indium wires separated by ~100 μm, which exhibit a terahertz plasmonic response.

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