首页> 外文期刊>Journal of biomechanical engineering. >Discussion: 'Comparison of Statistical Methods for Assessing Spatial Correlations Between Maps of Different Arterial Properties' (Rowland, E. M., Mohamied, Y., Chooi, K. Y., Bailey, E. L., and Weinberg, P. D., 2015, ASME J. Biomech. Eng., 137(10), p. 101003): An Alternative Approach Using Segmentation Based on Local Hemodynamics
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Discussion: 'Comparison of Statistical Methods for Assessing Spatial Correlations Between Maps of Different Arterial Properties' (Rowland, E. M., Mohamied, Y., Chooi, K. Y., Bailey, E. L., and Weinberg, P. D., 2015, ASME J. Biomech. Eng., 137(10), p. 101003): An Alternative Approach Using Segmentation Based on Local Hemodynamics

机译:讨论:“评估不同动脉特性图之间空间相关性的统计方法的比较”(Rowland,EM,Mohamied,Y.,Chooi,KY,Bailey,EL和Weinberg,PD,2015年,ASME J. Biomech。Eng。 ,137(10),第101003页):一种基于局部血流动力学的分段方法

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摘要

The biological response of living arteries to mechanical forces is an important component of the atherosclerotic process and is responsible, at least in part, for the well-recognized spatial variation in atherosusceptibility in man. Experiments to elucidate this response often generate maps of force and response variables over the arterial surface, from which the force-response relationship is sought. Rowland et al. discussed several statistical approaches to the spatial autocorrelation that confounds the analysis of such maps and applied them to maps of hemodynamic stress and vascular response obtained by averaging these variables in multiple animals. Here, we point out an alternative approach, in which discrete surface regions are defined by the hemodynamic stress levels they experience, and the stress and response in each animal are treated separately. This approach, applied properly, is insensitive to autocorrelation and less sensitive to the effect of confounding hemodynamic variables. The analysis suggests an inverse relation between permeability and shear that differs from that in Rowland et al. Possible sources of this difference are suggested.
机译:活动脉对机械力的生物学反应是动脉粥样硬化过程的重要组成部分,至少部分负责人对动脉粥样硬化的认识。阐明这种反应的实验通常会在动脉表面生成力图和响应变量图,从中可以找到力-响应关系。罗兰德等。讨论了几种空间自相关的统计方法,这些方法混淆了此类图的分析,并将其应用于通过平均多个动物中的这些变量而获得的血液动力学应力和血管反应图。在这里,我们指出了另一种方法,其中离散的表面区域由它们所经历的血液动力学应力水平来定义,并且分别对待每只动物的压力和反应。正确应用的此方法对自相关不敏感,对混杂的血液动力学变量的影响较不敏感。分析表明,渗透率与剪切力之间的反比关系不同于Rowland等人。建议此差异的可能来源。

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