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Hemodynamic wall shear stress profiles influence the magnitude and pattern of stenosis in a pig AV fistula

机译:血流动力学壁剪切应力曲线影响猪AV瘘的狭窄程度和模式

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Venous stenosis is a significant problem in arteriovenous fistulae, likely due to anatomical configuration and wall shear stress profiles. To identify linkages between wall shear stress and the magnitude and pattern of vascular stenosis, we produced curved and straight fistulae in a pig model. A complete wall stress profile was calculated for the curved configuration and correlated with luminal stenosis. Computer modeling techniques were then used to derive a wall shear stress profile for the straight arteriovenous fistula. Differences in the wall shear stress profile of the curved and straight fistula were then related to histological findings. There was a marked inverse correlation between the magnitude of wall shear stress within different regions of the curved arteriovenous fistula and luminal stenosis in these same regions. There were also significantly greater differences in wall shear stress between the outer and inner walls of the straight as compared to curved arteriovenous fistula, which translated into a more eccentric histological pattern of intima-media thickening. Our results suggest a clear linkage between anatomical configuration, wall shear stress profiles, and the pattern of luminal stenosis and intima-media thickening in a pig model of arteriovenous fistula stenosis. These results suggest that fistula failure could be reduced by using computer modeling prior to surgical placement to alter the anatomical and, consequently, the wall shear stress profiles in an arteriovenous fistula.
机译:静脉狭窄是动静脉瘘中的重要问题,可能是由于解剖结构和壁切应力分布所致。为了确定壁切应力与血管狭窄的大小和方式之间的联系,我们在猪模型中产生了弯曲和直形的瘘管。计算出弯曲轮廓的完整壁应力曲线,并与管腔狭窄相关。然后使用计算机建模技术得出直动静脉瘘的壁切应力曲线。然后,弯曲瘘管和直瘘管的壁切应力分布的差异与组织学发现有关。在弯曲动静脉瘘的不同区域内的壁切应力的大小与这些区域内的管腔狭窄之间存在明显的负相关。与弯曲的动静脉瘘相比,直管的外壁和内壁之间的壁切应力也存在显着更大的差异,这转化为内膜中膜增厚的更偏心的组织学模式。我们的结果表明,在动静脉瘘狭窄的猪模型中,解剖结构,壁切应力曲线以及管腔狭窄和内膜中层增厚的模式之间存在明确的联系。这些结果表明,通过在外科手术前改变动静脉瘘中的解剖结构,从而改变壁剪切应力分布,可以通过使用计算机建模来减少瘘管破裂。

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