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The biomechanical response of human bone: the influence of bone volume and mineral density.

机译:人体骨骼的生物力学响应:骨骼体积和矿物质密度的影响。

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The purpose of this study was to investigate the relationship between bone mineral density and the biomechanical response. This study presents results from 117 human rib cortical bone coupon tests from six cadavers, three male and three female, ranging in age from 18 to 67 years old. First, the material properties of human rib cortical bone were determined using dynamic tension coupon testing. The rib sections were taken from the anterior, lateral, and posterior regions on ribs 1 through 12 of each cadaver's rib cage. The cortical bone was isolated from each rib section with a low speed diamond saw, and milled into dog bone shaped tension coupons using a small computer numerical control machine. A high-rate servohydraulic Material Testing System equipped with a custom slack adaptor, to provide constant strain rates, was used to apply tension loads to failure at an average rate of 0.5 strains/sec. The elastic modulus, yield stress, yield strain, ultimate stress, ultimate strain, and strain energy density were determined from the resulting stress versus strain curves. Second, two measures of bone mineral density (BMD) were determined: the global BMD of each cadaver through standard radiographic scaling, and the percent mineralization of each coupon through ash analysis. Overall, the global BMD was correlated with the biomechanical properties, but the local apparent density was not. The global BMD is actually a surrogate for the volume of bone present and it is highly correlated with subject age. In contrast, the apparent density is the true local BMD and it was not correlated with subject age. This is consistent with previous research and illustrates that the overall structural biomechanics of bone are related to the volume of bone, or global BMD, while they are much less related to the apparent density, or local BMD, which varies much less with age.
机译:这项研究的目的是调查骨矿物质密度与生物力学反应之间的关系。这项研究提出了来自六名尸体(三名男性和三名女性)的117个人肋骨皮质骨试纸测试的结果,年龄从18岁到67岁不等。首先,使用动态张力试样测试确定人肋骨皮质骨的材料特性。肋骨部分取自每个尸体肋骨笼的肋骨1至12的前,外侧和后区域。用低速金刚石锯从每个肋骨部分分离出皮质骨,并使用小型计算机数控机器将其研磨成狗骨形张力试样。配有定制松弛适配器的高速伺服液压材料测试系统,可提供恒定的应变速率,用于以平均0.5应变/秒的速度将拉力载荷施加到破坏上。由所得应力-应变曲线确定弹性模量,屈服应力,屈服应变,极限应力,极限应变和应变能密度。其次,确定了两种测量骨矿物质密度(BMD)的方法:通过标准射线照相缩放比例,每个尸体的总体BMD,以及通过灰分分析的每个试样的矿化百分比。总体而言,总体骨密度与生物力学特性相关,但局部表观密度却不相关。全球BMD实际上是骨量的替代指标,并且与受试者年龄高度相关。相反,表观密度是真正的局部BMD,并且与受试者年龄无关。这与先前的研究一致,并说明骨骼的整体结构生物力学与骨骼的体积或整体BMD相关,而与表观密度或局部BMD的相关则少得多,随年龄的变化则较小。

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