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首页> 外文期刊>Biomechanics and modeling in mechanobiology >Analysis of avian bone response to mechanical loading--Part One: Distribution of bone fluid shear stress Induced by bending and axial loading
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Analysis of avian bone response to mechanical loading--Part One: Distribution of bone fluid shear stress Induced by bending and axial loading

机译:禽骨对机械载荷的响应分析-第一部分:弯曲和轴向载荷引起的骨液剪切应力分布

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Mechanical loading-induced signals are hypothesized to be transmitted and integrated by a bone-connected cellular network (CCN) before reaching the bone surfaces where adaptation occurs. Our objective is to establish a computational model to explore how bone cells transmit the signals through intercellular communication. In this first part of the study the bone fluid shear stress acting on every bone cell in a CCN is acquired as the excitation signal for the computational model. Bending and axial loading-induced fluid shear stress is computed in transverse sections of avian long bones for two adaptation experiments (Gross el al. in J Bone Miner Res 12:982-988, 1997 and Judex et al. in J Bone Miner Res 12:1737-1745, 1997). The computed fluid shear stress is found to be correlated with the radial strain gradient but not with bone formation. These results suggest that the radial strain gradient is the driving force for bone fluid flow in the radially distributed lacunar-canalicular system and that bone formation is not linearly related to the loading-induced local stimulus.
机译:假设机械负载感应信号在到达发生适应的骨骼表面之前由骨骼连接的蜂窝网络(CCN)传输和整合。我们的目标是建立一个计算模型,以探索骨细胞如何通过细胞间通讯传递信号。在研究的第一部分中,获取作用在CCN中每个骨细胞上的骨液剪切应力作为计算模型的激励信号。对于两个适应性实验,在禽类长骨的横截面中计算了弯曲和轴向载荷引起的流体剪切应力(Gross等人,J Bone Miner Res 12:982-988,1997; Judex等人,J Bone Miner Res 12 :1737-1745,1997)。发现计算出的流体剪切应力与径向应变梯度相关,但与骨形成无关。这些结果表明,径向应变梯度是径向分布的腔-小管系统中骨液流动的驱动力,并且骨形成与负荷诱导的局部刺激没有线性关系。

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