Exposed root surfaces frequently exhibit noncarious notches representing material loss by abrasion, erosion, and/or abfraction. Although a contribution from mechanical stress is often mentioned, no definitive proof exists of a causeeffect relationship. To address this, we examined dimensional changes in dentin subjected to cyclic fatigue in two different pH environments. Human dentin cantilever-beams were fatigued under load control in pH = 6 (n = 13) or pH = 7 (n = 13) buffer, with a load ratio (R = minimum load/maximum load) of 0.1 and frequency of 2 Hz, and stresses between 5.5 and 55 MPa. Material loss was measured at high- and low-stress locations before and after cycling. Of the 23 beams, 7 withstood 1,000,000 cycles; others cracked e...
The primary objective of this study was to evaluate the striation spacing resulting from fatigue cra...
With the progressive increase in partially and fully dentate seniors, fracture has become an increas...
Dentin is a mineralized collagen tissue with robust mechanical performance. Understanding the mecha...
Human dentin is susceptible to failure under repetitive cyclic-fatigue loading. This investigation s...
Human dentin is known to be susceptible to failure under cyclic loading. Surprisingly, there are fe...
Although human dentin is known to be susceptible to failure under repetitive cyclic fatigue loading,...
Human dentin is known to be susceptible to failure under cyclic loading. Surprisingly, there are few...
Abstract: An experimental study of fatigue crack growth in dentin was conducted, and the influence o...
Free-water loss induced residual strain, with and without axial loading, and the mechanical effect o...
Abstract: An experimental investigation on the dynamic fatigue response of dentin was conducted to e...
This study evaluated the effect of mechanical cycling on the bond strength of fiber posts bonded to ...
Although human dentin is known to be susceptible to failure under repetitive cyclic fatigue loading,...
Copyright © 2008 Elsevier Ltd All rights reserved.ObjectivePrevious in vitro studies have described ...
Purpose: To evaluate the effect of cyclical mechanical loading on the bond strength of a fiber and a...
The aim of this study was to examine the role of chemical compositional changes and iatrogenic denti...
The primary objective of this study was to evaluate the striation spacing resulting from fatigue cra...
With the progressive increase in partially and fully dentate seniors, fracture has become an increas...
Dentin is a mineralized collagen tissue with robust mechanical performance. Understanding the mecha...
Human dentin is susceptible to failure under repetitive cyclic-fatigue loading. This investigation s...
Human dentin is known to be susceptible to failure under cyclic loading. Surprisingly, there are fe...
Although human dentin is known to be susceptible to failure under repetitive cyclic fatigue loading,...
Human dentin is known to be susceptible to failure under cyclic loading. Surprisingly, there are few...
Abstract: An experimental study of fatigue crack growth in dentin was conducted, and the influence o...
Free-water loss induced residual strain, with and without axial loading, and the mechanical effect o...
Abstract: An experimental investigation on the dynamic fatigue response of dentin was conducted to e...
This study evaluated the effect of mechanical cycling on the bond strength of fiber posts bonded to ...
Although human dentin is known to be susceptible to failure under repetitive cyclic fatigue loading,...
Copyright © 2008 Elsevier Ltd All rights reserved.ObjectivePrevious in vitro studies have described ...
Purpose: To evaluate the effect of cyclical mechanical loading on the bond strength of a fiber and a...
The aim of this study was to examine the role of chemical compositional changes and iatrogenic denti...
The primary objective of this study was to evaluate the striation spacing resulting from fatigue cra...
With the progressive increase in partially and fully dentate seniors, fracture has become an increas...
Dentin is a mineralized collagen tissue with robust mechanical performance. Understanding the mecha...