首页> 外文期刊>Biomechanics and modeling in mechanobiology >Interstitial fluid velocity is decreased around cortical bone vascular pores and depends on osteocyte position in a rat model of disuse osteoporosis
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Interstitial fluid velocity is decreased around cortical bone vascular pores and depends on osteocyte position in a rat model of disuse osteoporosis

机译:在皮质骨血管孔隙周围的间质液体速度下降,并取决于废弃骨质疏松症的大鼠模型中的骨细胞位置

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Muscle paralysis induced with botulinum toxin (Botox) injection increases vascular porosity and reduces osteocyte lacunar density in the tibial cortical bone of skeletally mature rats. These morphological changes potentially affect interstitial fluid flow in the lacunar-canalicular porosity, which is thought to play a role in osteocyte mechanotransduction. The aim of this study was to investigate the effects of disuse-induced morphological changes on interstitial fluid velocity around osteocytes in the bone cortex. Micro-CT images from a previous study that quantified the effects of Botox-induced muscle paralysis on bone microarchitecture in skeletally mature rats were used to create high-resolution, animal-specific finite element models that included the vascular pores and osteocyte lacunae within the tibial metaphysis of Botox-injected (BTX, n = 8) and saline-injected control (CTRL, n = 8) groups. To quantify fluid flow, lacunar and canalicular porosities were modeled as fluid-saturated poroelastic materials, and boundary conditions were applied to simulate physiological loading. This modeling approach allowed a detailed quantification of the fluid flow velocities around osteocytes in a relatively large volume of bone tissue. The analysis demonstrated that interstitial fluid velocity at the vascular pore surfaces was significantly lower in BTX compared to CTRL because of the decreased vascular canal separation. No significant differences in average fluid velocity were observed at the osteocyte lacunae and no correlation was found between the fluid velocity and the lacunar density, which was significantly lower in BTX. Instead, the lacunar fluid velocity was dependent on the osteocyte's specific position in the bone cortex and its proximity to a vascular pore.
机译:用肉毒杆菌毒素(Botox)注射诱导的肌肉瘫痪增加了血管孔隙率,并降低了骨骼成熟大鼠胫骨皮质骨中的骨细胞曲线密度。这些形态变化可能会影响腔隙 - 釜孔隙率的间质性流体,这被认为在骨细胞机械调节中发挥作用。本研究的目的是探讨废弃诱导的形态变化对骨皮层骨细胞周围间隙流体速度的影响。来自先前研究的微型CT图像,用于量化肉毒杆菌诱导的肌瘫对骨骼微体系结构在骨架成熟的大鼠中的影响,用于产生高分辨率,动物特异性有限元模型,包括胫骨内的血管孔和骨细胞LELUNAE双毒素注射(BTX,N = 8)和盐水注入对照(CTRL,N = 8)基团的形成。为了量化流体流动,将腔隙和穴位孔隙率模拟为流体饱和的腹腔痉挛材料,并施加边界条件以模拟生理负载。该建模方法允许在相对大量的骨组织中详细定量骨细胞周围的流体流速。该分析表明,由于血管管道分离减少,与CTRL相比,BTX的血管孔隙表面的间质液速度显着降低。在骨细胞Levunae上观察到平均流体速度没有显着差异,在流体速度和凝纹密度之间没有发现相关性,在BTX中显着降低。相反,Levunar流体速度取决于骨细胞在骨皮层中的特定位置及其对血管孔的邻近。

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