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Titlebook: Bone Adaptation; In Silico Approach Yoshitaka Kameo,Ken-ichi Tsubota,Taiji Adachi Book 2018 Springer Japan KK 2018 Bone Remodeling.Cellular

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,3D Trabecular Remodeling in Human Proximal Femur: Approach to Understanding Wolff’s Law,and the mechanism of the Law of Bone Transformation, proposed by Wolff in the nineteenth century. A large-scale voxel finite element model is constructed to simulate the 3D structural changes of individual trabeculae over a cancellous bone. As a simple remodeling model that considers bone cellular a
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Frontiers of Biomechanicshttp://image.papertrans.cn/b/image/189649.jpg
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Sustainability of Grinding Tools,ing the underlying cellular mechanism, we propose a mathematical model of trabecular bone remodeling that considers cellular mechanosensing and intercellular communication. Through remodeling simulations, this model is able to explain the phenomenological remodeling law to achieve locally uniform me
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https://doi.org/10.1007/978-3-030-03780-2lular mechanotransduction. A three-dimensional simulation model of an osteocyte process within a canaliculus was reconstructed based on serial tomographic images obtained by ultra-high voltage electron microscopy. The fluid flow simulation predicts the generation of highly inhomogeneous flow pattern
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Quantitative aspects of reproductionrosities based on poroelastic analysis. This chapter describes a method for estimating bone permeability by deriving the analytical relationship between the volume orientation fabric tensor, which characterizes the canalicular orientation, and the permeability tensor. By applying this method to a cr
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