Javascript must be enabled to continue!
Surface Evaluation of Orthodontic Wires Using Texture and Fractal Dimension Analysis
View through CrossRef
Mechanical properties of orthodontic wires can have a very significant impact both on the resistance of the entire appliance to the oral cavity conditions and directly on the effectiveness of the therapy. Striving to achieve repeatability of mechanical characteristics of orthodontic wires of a given type should be an obligatory condition in their production. To achieve it, these components should be thoroughly analyzed using various mechanical tests. Twenty-four steel and nickel-titanium orthodontic wires from four different manufacturers were examined. Each wire was subjected to fractal dimension analysis and texture analysis. The two sides of each wire were compared against each other, as well as in terms of variation in the surface area for each wire type made by different manufacturers. Most wires showed significant variation in fractal dimension and texture, both when comparing two sides of the same wire and between individual wires of a given type made by a single manufacturer. When conducting research and clinically using orthodontic wires made of Ni-Ti alloys and stainless steel, it should be assumed that the surface of orthodontic wires shows a significant degree of variation, and wires of the same type from the same manufacturer may differ significantly in this respect.
Title: Surface Evaluation of Orthodontic Wires Using Texture and Fractal Dimension Analysis
Description:
Mechanical properties of orthodontic wires can have a very significant impact both on the resistance of the entire appliance to the oral cavity conditions and directly on the effectiveness of the therapy.
Striving to achieve repeatability of mechanical characteristics of orthodontic wires of a given type should be an obligatory condition in their production.
To achieve it, these components should be thoroughly analyzed using various mechanical tests.
Twenty-four steel and nickel-titanium orthodontic wires from four different manufacturers were examined.
Each wire was subjected to fractal dimension analysis and texture analysis.
The two sides of each wire were compared against each other, as well as in terms of variation in the surface area for each wire type made by different manufacturers.
Most wires showed significant variation in fractal dimension and texture, both when comparing two sides of the same wire and between individual wires of a given type made by a single manufacturer.
When conducting research and clinically using orthodontic wires made of Ni-Ti alloys and stainless steel, it should be assumed that the surface of orthodontic wires shows a significant degree of variation, and wires of the same type from the same manufacturer may differ significantly in this respect.
Related Results
Synthetic aperture radar image of fractal rough surface
Synthetic aperture radar image of fractal rough surface
The synthetic aperture radar imaging of fractal rough surface is studied. The natural surface can be very accurately described in terms of fractal geometry. Such a two-dimensional ...
Fractal Dimension Analysis of Pore Throat Structure in Tight Sandstone Reservoirs of Huagang Formation: Jiaxing Area of East China Sea Basin
Fractal Dimension Analysis of Pore Throat Structure in Tight Sandstone Reservoirs of Huagang Formation: Jiaxing Area of East China Sea Basin
The reservoir quality of tight sandstone is usually affected by pore throat structures, and understanding pore throat structures and their fractal characteristics is crucial for th...
Impact of Simulated Gastric Acid on Surface Roughness and Frictional Resistance of Orthodontic Archwires: An In vitro Study
Impact of Simulated Gastric Acid on Surface Roughness and Frictional Resistance of Orthodontic Archwires: An In vitro Study
Introduction: Acid regurgitation caused by gastro-oesophageal reflux disease can lead to decreases in intraoral pH below the critical pH for orthodontic appliances. Exposure of bra...
Acoustics of Fractal Porous Material and Fractional Calculus
Acoustics of Fractal Porous Material and Fractional Calculus
In this paper, we present a fractal (self-similar) model of acoustic propagation in a porous material with a rigid structure. The fractal medium is modeled as a continuous medium o...
Fractal Dimensions of Particle Size Distribution in Littoral Sandstones of Carboniferous Donghetang Formation in Hade Oilfield, Tarim Basin, NW China
Fractal Dimensions of Particle Size Distribution in Littoral Sandstones of Carboniferous Donghetang Formation in Hade Oilfield, Tarim Basin, NW China
Fractal theory of particle size distribution (PSD) is a widely used approach in soil science. However, fractal studies on sandstone PSDs are scarce in sedimentology and geology. Ta...
Wavelet Analysis-Based Texture Analysis of Ceramic Surface Images
Wavelet Analysis-Based Texture Analysis of Ceramic Surface Images
This paper is conducted to explore a new characterization method as a supplement to the traditional roughness characterization. The main research includes the extraction and evalua...
Fractal-Based Pattern Quantification of Mineral Grains: A Case Study of Yichun Rare-Metal Granite
Fractal-Based Pattern Quantification of Mineral Grains: A Case Study of Yichun Rare-Metal Granite
The quantification of the irregular morphology and distribution pattern of mineral grains is an essential but challenging task in ore-related mineralogical research, allowing for t...
Damping Performance of Glass Fiber Reinforced Polymers With Embedded Shape Memory Alloy Wires
Damping Performance of Glass Fiber Reinforced Polymers With Embedded Shape Memory Alloy Wires
Abstract
This paper explores the integration of shape memory alloy (SMA) wires within fiber reinforced polymer (FRP) composites to enhance their dynamic properties. ...

