Arola Dwayne D, Reprogel Robert K
Department of Mechanical Engineering, University of Maryland Baltimore County, 1000 Hilltop Circle, Baltimore, MD 21250, USA.
Biomaterials. 2006 Mar;27(9):2131-40. doi: 10.1016/j.biomaterials.2005.10.005. Epub 2005 Oct 25.
In this study the influence of tubule orientation on the strength of human dentin under static and cyclic loads was examined. Rectangular beams were sectioned from the coronal dentin of virgin extracted molars (N=83) and then loaded in quasi-static 4-point flexure or 4-point flexural fatigue to failure. The flexure strength, energy to fracture and fatigue strength were evaluated for specimens with the dentin tubules aligned parallel (theta=0 degrees ) and perpendicular (theta=90 degrees ) to the plane of maximum normal stress. Results from monotonic loading showed that both the flexural strength and energy to fracture of dentin specimens with theta=0 degrees were significantly greater than those with theta=90 degrees . Furthermore, the apparent endurance strength of dentin with theta=0 degrees (44MPa) was significantly greater than that of the dentin with theta=90 degrees (24MPa). The ratio of apparent endurance strength (for fully reversed loading) to the flexure strength for theta=0 degrees and theta=90 degrees was 0.41 and 0.28, respectively. Although the influence of tubule orientation was most important to mechanical behavior, the flexure strength and energy to fracture also decreased with an increase in tubule density. According to differences in the fatigue strength with tubule orientation, restorative practices promoting large cyclic normal stresses perpendicular to the tubules would be more likely to facilitate fatigue failure in dentin with cyclic loading.
在本研究中,研究了牙本质小管方向对人牙本质在静态和循环载荷下强度的影响。从新鲜拔除的磨牙(N = 83)的冠部牙本质切取矩形梁,然后进行准静态四点弯曲或四点弯曲疲劳加载直至破坏。对牙本质小管与最大正应力平面平行(θ = 0度)和垂直(θ = 90度)的标本评估其弯曲强度、断裂能和疲劳强度。单调加载的结果表明,θ = 0度的牙本质标本的弯曲强度和断裂能均显著高于θ = 90度的标本。此外,θ = 0度的牙本质的表观疲劳强度(44MPa)显著高于θ = 90度的牙本质(24MPa)。θ = 0度和θ = 90度的表观疲劳强度(完全反向加载)与弯曲强度之比分别为0.41和0.28。尽管小管方向对力学行为的影响最为重要,但弯曲强度和断裂能也随小管密度的增加而降低。根据疲劳强度随小管方向的差异,促进垂直于小管的大循环正应力的修复操作更有可能在循环加载下促进牙本质的疲劳破坏。