Fiber Morphology Characterization

Fiber morphology characterization is the systematic analysis of a fiber’s geometry, surface features, and structural organization, providing essential information for designing and evaluating bioengineered materials. It commonly uses microscopy and image analysis to measure properties such as fiber diameter, diameter distribution, alignment, porosity, and defects from representative samples. These measurements reveal how fabrication conditions, including solution composition, processing parameters, and fiber collection, influence scaffold architecture and performance. In bioengineering, morphology characterization supports the development of electrospun and other fibrous constructs for tissue engineering, drug delivery, and regenerative medicine by linking physical structure to cell attachment, mechanical behavior, transport, and degradation.

Fiber Morphology Characterization - 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.

Physiological, Morphological and Neurochemical Characterization of Neurons Modulated by Movement

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2011

A technique is described to quantify the in vivo physiological response of mammalian neurons during movement and correlate the physiology of the neuron with neuronal morphology, neurochemical phenotype and synaptic microcircuitry.

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.

Fabrication and Characterization of Disordered Polymer Optical Fibers for Transverse Anderson Localization of Light

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Cited by 17 •

2013

We develop and characterize a disordered polymer optical fiber that uses transverse Anderson localization as a novel waveguiding mechanism. This microstructured fiber can transport a small localized beam with a radius that is comparable to the beam radius of conventional optical fibers.

A Protocol to Characterize the Morphological Changes of Clostridium difficile in Response to Antibiotic Treatment

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Cited by 4 •

2017

Antibiotic efficacy is most commonly determined by conducting killing kinetic studies and measuring colony forming units (CFUs). By integrating scanning electron microscopy (SEM) with these standard methods, we can distinguish the pharmacological effects of treatment between different antibiotics.

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