Growth Defects

Growth defects are structural imperfections that form as a material, coating, crystal, or component develops during manufacturing, potentially reducing its strength, uniformity, or performance. They arise when growth conditions such as temperature, composition, deposition rate, cooling, or impurity concentration disturb the intended arrangement of atoms or layers, producing features such as voids, inclusions, cracks, rough surfaces, or nonuniform thickness. In engineering, identifying growth defects helps researchers connect processing conditions with material properties, improve quality control, and optimize processes including crystal growth, thin-film deposition, additive manufacturing, and coating production. Controlling these defects supports more reliable devices, components, and advanced materials.

Growth Defects - Related Videos

Education

JoVE Core - Civil Engineering

Lumber Defects

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2024

Lumber defects, which can affect both the appearance and structural integrity of wood, include a variety of growth and manufacturing flaws. Growth defects such as knots and knotholes occur where branches were once attached to the tree trunk, with knotholes forming when these knots fall out. Other natural defects include decay and insect damage, which compromise the wood's strength and durability. Shakes are minor fractures that run along or across the wood's annual rings, while wane is...

Research

JoVE Journal - Bioengineering

A Full Skin Defect Model to Evaluate Vascularization of Biomaterials In Vivo

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Cited by 13 •

2014

Vascularization is key to approaches in successful tissue engineering. Therefore, reliable technologies are required to evaluate the development of vascular networks in tissue-constructs. Here we present a simple and cost-effective method to visualize and quantify vascularization in vivo.

Research

JoVE Journal - Neuroscience
Free Sample

In Situ Visualization of Axon Growth and Growth Cone Dynamics in Acute Ex Vivo Embryonic Brain Slice Cultures

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Cited by 4 •

2021

This protocol demonstrates a straightforward and robust method to study in situ axon growth and growth cone dynamics. It describes how to prepare ex vivo physiologically relevant acute brain slices and provides a user-friendly analysis pipeline.

Repair of a Critical-sized Calvarial Defect Model Using Adipose-derived Stromal Cells Harvested from Lipoaspirate

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Cited by 21 •

2012

This protocol describes the isolation of adipose-derived stromal cells from lipoaspirate and the creation of a 4 mm critical-sized calvarial defect to evaluate skeletal regeneration.

Coronoid-Temporalis Pedicled Flap for Orbital Floor Defect Reconstruction

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2025

This protocol presents a novel coronoid-temporalis pedicled flap (CTPF) technique for reconstructing small-to-medium orbital floor defects. CTPF avoids microvascular risks while maintaining biomechanical stability. Clinical cases demonstrate effective structural restoration, reduced complications, and preserved facial symmetry, offering a viable alternative to traditional grafts or alloplastic materials.

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