Keller T S, Lovin J D, Spengler D M, Carter D R
J Biomech. 1985;18(4):297-304. doi: 10.1016/0021-9290(85)90847-4.
Strain-controlled uniaxial fatigue and monotonic tensile tests were conducted on turned femoral cortical bone specimens obtained from baboons at various ages of maturity. Fatigue loading produced a progressive loss in stiffness and an increase in hysteresis prior to failure, indicating that immature primate cortical bone responds to repeated loading in a fashion similar to that previously observed for adult human cortical bone. Bone fatigue resistance under this strain controlled testing decreased during maturation. Maturation was also associated with an increase in bone dry density, ash fraction and elastic modulus. The higher elastic modulus of more mature bone meant that these specimens were subjected to higher stress levels during testing than more immature bone specimens. Anatomical regions along the femoral shaft exhibited differences in strength and fatigue resistance.
对从不同成熟年龄的狒狒获取的车削股骨皮质骨标本进行了应变控制的单轴疲劳和单调拉伸试验。疲劳加载在失效前导致刚度逐渐损失和滞后增加,表明未成熟灵长类动物皮质骨对反复加载的反应方式与先前观察到的成人皮质骨相似。在这种应变控制测试下,骨疲劳抗性在成熟过程中降低。成熟还与骨干密度、灰分分数和弹性模量的增加有关。更成熟骨的较高弹性模量意味着这些标本在测试过程中比更不成熟的骨标本承受更高的应力水平。沿股骨干的解剖区域在强度和疲劳抗性方面存在差异。