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使用结构因子大小估计器对红细胞聚集进行实验性超声表征。

Experimental ultrasound characterization of red blood cell aggregation using the structure factor size estimator.

作者信息

Yu François T H, Cloutier Guy

机构信息

Laboratory of Biorheology and Medical Ultrasonics, University of Montreal Hospital Research Center, Pavilion J.A. de Sève, 2099 Alexandre de Sève, Montréal, Québec, Canada.

出版信息

J Acoust Soc Am. 2007 Jul;122(1):645-56. doi: 10.1121/1.2735805.

Abstract

The frequency dependence of the ultrasonic backscattering coefficient (BSC) was studied to assess the level of red blood cell (RBC) aggregation. Three monoelement focused wideband transducers were used to insonify porcine blood sheared in a Couette flow from 9 to 30 MHz. A high shear rate was first applied to promote disaggregation. Different residual shear rates were then used to promote formation of RBC aggregates. The structure factor size estimator (SFSE), a second-order data reduction model based on the structure factor, was applied to the frequency-dependent BSC. Two parameters were extracted from the model to describe the level of aggregation at 6% and 40% hematocrits: W, the packing factor, and D the aggregate diameter, expressed in number of RBCs. Both parameters closely matched theoretical values for nonaggregated RBCs. W and D increased during aggregation with stabilized values modulated by the applied residual shear rate. Furthermore, parameter D during the kinetics of aggregation at 6% hematocrit under static conditions correlated with an optical RBC aggregate size estimation from microscopic images (r(2)=0.76). To conclude, the SFSE presents an interesting framework for tissue characterization of partially correlated dense tissues such as aggregated RBCs.

摘要

研究了超声背向散射系数(BSC)的频率依赖性,以评估红细胞(RBC)聚集水平。使用三个单元素聚焦宽带换能器,在9至30MHz的Couette流中对猪血进行声照射。首先施加高剪切速率以促进解聚。然后使用不同的残余剪切速率来促进RBC聚集体的形成。将结构因子尺寸估计器(SFSE),一种基于结构因子的二阶数据简化模型,应用于频率依赖性BSC。从该模型中提取了两个参数,以描述6%和40%血细胞比容下的聚集水平:W,填充因子,以及D,聚集体直径,以RBC数量表示。这两个参数与非聚集RBC的理论值密切匹配。在聚集过程中,W和D增加,其稳定值由施加的残余剪切速率调节。此外,在静态条件下6%血细胞比容的聚集动力学过程中,参数D与从显微镜图像估计的光学RBC聚集体大小相关(r(2)=0.76)。总之,SFSE为部分相关的致密组织(如聚集的RBC)的组织表征提供了一个有趣的框架。

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