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Interaction of ultrasound waves with bone remodelling: a multiscale computational study

机译:超声波与骨重塑的相互作用:多尺度计算研究

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Ultrasound stimulation is thought to influence bone remodelling process. But recently, the efficiency of ultrasound therapy for bone healing has been questioned. Despite an extensive literature describing the positive effect of ultrasound on bone regeneration-cell cultures, animal models, clinical studies-there are more and more reviews denouncing the inefficiency of clinical devices based on low-intensity pulsed ultrasound stimulation (LIPUS) of the bone healing. One of the reasons to cause controversy comes from the persistent misunderstanding of the underlying physical and biological mechanisms of ultrasound stimulation of bone repair. As ultrasonic waves are mechanical waves, the process to be studied is the one of the mechanotransduction. Previous studies on the bone mechanotransduction have demonstrated the key role of the osteocytes in bone mechano-sensing. Osteocytes are bone cells ubiquitous inside the bone matrix; they are immersed in the interstitial fluid (IF) inside the lacuno-canalicular network (LCN). They are considered as particularly sensitive to a particular type of mechanical stress: wall shear stress on osteocytes due to the IF flow in the LCN. Inspired from these findings and observations, the present work investigates the effect of LIPUS on the cortical bone from the tissue to the osteocytes, considering that the impact of the ultrasound stimulation applied at the tissue scale is related to the mechanical stress experimented by the bone cells. To do that simulations based on the finite element method are carried out in the commercial software Comsol Multiphysics to assess the wall shear stress levels induced by the LIPUS on the osteocytes. Two formulations of the wall shear stress were investigated based on two IF flow models inside the LCN and associated with two different values of the LCN permeability. The wall shear stress estimate is very different depending on the assumption considered. One of these two models provides wall shear stress values in accordance with previous works published on bone mechanotransduction. This study presents the preliminary results of a computational model that could provide keys to understanding the underlying mechanisms of the LIPUS.
机译:据认为,超声刺激会影响骨改造过程。但最近,对骨愈合的超声治疗的效率受到质疑。尽管有广泛的文学,但是描述超声波对骨再生细胞培养物,动物模型,临床研究 - 越来越多的评论谴责基于低强度脉冲超声刺激(Lipus)的临床装置的效率低下。引起争议的原因之一来自对骨修复的超声刺激潜在的身体和生物学机制的持续误解。由于超声波是机械波,所以研究的方法是机械手段之一。以前关于骨机制的研究已经证明了骨细胞在骨机敏中的关键作用。骨细胞是骨基质内普遍存在的骨细胞;它们浸入平坦的釜网络(LCN)内的间质液(IF)中。它们被认为对特定类型的机械应力特别敏感:由于LCN中的IF流量,骨质细胞上的壁剪切应力。从这些发现和观察中启发,本作者研究了唇膏对从组织到骨细胞的皮质骨的影响,考虑到在组织尺度上施加的超声刺激的影响与骨细胞进行实验的机械应力有关。为此,基于有限元方法的仿真在商业软件COMSOL多发性中进行,以评估由唇骨细胞诱导的壁剪应力水平。基于LCN内的流量模型和与LCN渗透率的两种不同值相关的两个,研究了壁剪切应力的两种制剂。根据考虑的假设,壁剪切应力估计非常不同。这两种型号中的一种根据在骨机上发布的以前的作品提供墙面剪切应力值。本研究提出了计算模型的初步结果,可以提供理解唇脂的潜在机制的关键。

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