Department of Surgical and Medical Disciplines, Section of Gerontology, University of Torino, Corso Bramante 88/90, 10126 Torino, Turin, Italy.
Calcif Tissue Int. 2011 May;88(5):409-15. doi: 10.1007/s00223-011-9470-8. Epub 2011 Feb 18.
The fatigue life of a structure is also influenced by its size. Statistically, a bone from a large animal is expected to bear a higher risk of stress fracture if compared to the same bone from a small animal of the same species. This is not documented in the dog, where individuals can have a 40 times difference in body mass. We investigated the effect of body size on cortical bone microdamage accumulation, cortical microstructural organization (porosity, osteon area, and osteocyte lacunar density), and turnover in dogs with a wide body mass range. The aim was to understand and mathematically model how the bone tissue copes with the microdamage accumulation linked to body mass increase. Calcified transverse cortical sections of 18 canine radii of remarkably different size were examined by means of a standard bulk-staining technique and histomorphometric standard algorithms. Relationships between the investigated histomorphometric variables age, sex and mass were analyzed by general linear multivariate models and exponential equations. Type and location of microdamage and bone turnover were not influenced by body mass. Gender did not influence any parameter. Age influenced bone turnover and activation frequency. Microcrack density was influenced by bone mass. Bones had a similar microstructural organization within the same species regardless of the subject's dimension. Microdamage accumulation is inversely related to bone mass, whereas bone turnover is mass-invariant. We theorize a mass-related change in the bone fracture toughness targeted to reach an optimal unique dimensionless curve for fatigue life.
结构的疲劳寿命也受其尺寸的影响。从统计学上讲,如果将同一种动物的大动物骨骼与同一种动物的小动物骨骼进行比较,那么前者更容易发生应力性骨折。这在狗身上并没有记录,因为狗的个体体重差异可以达到 40 倍。我们研究了体型对皮质骨微损伤积累、皮质微观结构组织(孔隙率、骨单位面积和骨细胞腔密度)和周转率的影响,这些狗的体型差异很大。目的是了解和数学模型化骨组织如何应对与体重增加相关的微损伤积累。通过标准的整体染色技术和组织形态计量标准算法,检查了 18 只犬桡骨的不同大小的钙化横切皮质骨。通过一般线性多变量模型和指数方程分析了所研究的组织形态计量变量(年龄、性别和体重)之间的关系。微损伤的类型和位置以及骨转换不受体重的影响。性别不影响任何参数。年龄影响骨转换和激活频率。微裂纹密度受骨量影响。在同一物种内,骨骼具有相似的微观结构组织,而与主体的维度无关。微损伤积累与骨量成反比,而骨转换与骨量无关。我们假设骨断裂韧性与骨量有关的变化,旨在达到疲劳寿命的最佳独特无量纲曲线。