Dechow Paul C, Panagiotopoulou Olga, Gharpure Poorva
Department of Biomedical Sciences, College of Dentistry, Texas A&M University, 3302 Gaston Avenue, Dallas, TX 75204, USA.
Moving Morphology and Functional Mechanics Laboratory, School of Biomedical Sciences, University of Queensland, St. Lucia 4072, Brisbane, QLD, Australia.
Zoology (Jena). 2017 Oct;124:3-12. doi: 10.1016/j.zool.2017.06.008. Epub 2017 Jun 17.
Knowledge of the variation in the elastic properties of mandibular cortical bone is essential for modeling bone function. Our aim was to characterize the elastic properties of rhesus macaque mandibular cortical bone and compare these to the elastic properties from mandibles of dentate humans and baboons. Thirty cylindrical samples were harvested from each of six adult female rhesus monkey mandibles. Assuming orthotropy, axes of maximum stiffness in the plane of the cortical plate were derived from ultrasound velocity measurements. Further velocity measurements with longitudinal and transverse ultrasonic transducers along with measurements of bone density were used to compute three-dimensional cortical elastic properties using equations based on Hooke's law. Results showed regional variations in the elastic properties of macaque mandibular cortical bone that have both similarities and differences with that of humans and baboons. So far, the biological and structural basis of these differences is poorly understood.
了解下颌皮质骨弹性特性的变化对于模拟骨功能至关重要。我们的目的是表征恒河猴下颌皮质骨的弹性特性,并将其与有牙人类和狒狒下颌骨的弹性特性进行比较。从六只成年雌性恒河猴的下颌骨中各采集了30个圆柱形样本。假设为正交各向异性,通过超声速度测量得出皮质板平面内最大刚度轴。使用纵向和横向超声换能器进行进一步的速度测量,并结合骨密度测量,利用基于胡克定律的方程计算三维皮质弹性特性。结果表明,猕猴下颌皮质骨的弹性特性存在区域差异,与人类和狒狒的弹性特性既有相似之处,也有不同之处。到目前为止,这些差异的生物学和结构基础尚不清楚。