首页> 外文会议>Asia Pacific conference on biomechanics;International conference on biomedical engineering;ICBME;APBiomech;World congress of biomechanics;WCB 2010 >Study of Rheological and Electrical Behaviour of RBC Suspensions in Dextran and PEG under Non-steady Flow. Role of RBC Deformability and Morphology
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Study of Rheological and Electrical Behaviour of RBC Suspensions in Dextran and PEG under Non-steady Flow. Role of RBC Deformability and Morphology

机译:非稳态流动下右旋糖酐和PEG中RBC悬浮液的流变和电学行为研究。 RBC变形性和形态的作用

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A concurrent measuring system, using a Con-traves Low Shear 30 rotational rheometer, previously described [1-2], was used in the study. It includes a resin replica of the Couette type measuring system MS 1/1 of the rheometer with a pair of platinum electrodes embedded into the wall; a device, constructed by the conductometric method and software (Data acquisition system) [1]. A method, based on dielectric properties of dispersed systems in Couette viscometric blood flow was applied to investigate the kinetics of RBC aggregation and the formation and break-up of the aggregates. Apparent viscosity and conductivity of normal human red blood cell (RBC) suspensions in dextran 70 (Dx 70) and polyethilenglycol (PEG) with various concentrations were evaluated in vitro under steady and unsteady flow conditions. Conductivity time and shear rate dependences in parallel with the rheological properties of the samples were studied under transient flow regimes at different local structure of the uniform Couette flow. Their dependence on dextrans concentrations were evaluated as well. Low shear viscosity and conductivity of RBC suspensions in dextrans were determined and compared to non-aggregating control RBC suspension in PBS. RBCs were treated with glutaraldehyde (GA) with different concentrations (from 0,01% to 1%). A time course of conductivity of normal RBCs and treated with GA suspended in dextran 70 was recorded under trapezoid change of shear rates. It provides experimental description of RBC aggregation-disaggregation processes and other cell-cell interactions. Dextrans induce morphological alterations in RBC shape and arrangement in the suspensions. Echinocytes are observed at low Dx 70 concentrations while spherocytes are found mainly in smears at higher Dx 70 concentrations. Their morphological characteristics affect blood electrical and mechanical properties.
机译:在研究中使用了同时测量系统,该系统使用先前描述的Con-traves Low Shear 30旋转流变仪[1-2]。它包括流变仪的库埃特(Couette)型测量系统MS 1/1的树脂复制品,壁上嵌有一对铂电极。一种由电导法和软件(数据采集系统)[1]构成的设备。一种基于库埃特粘度血流中分散系统介电特性的方法,用于研究RBC聚集的动力学以及聚集体的形成和分解。在稳定和不稳定流量条件下,体外评估了不同浓度的葡聚糖70(Dx 70)和聚乙二醇(PEG)中正常人红细胞(RBC)悬浮液的表观粘度和电导率。在均匀库埃特流的不同局部结构下,在瞬变流态下研究了电导率时间和剪切速率对流变学性质的依赖性。还评估了它们对葡聚糖浓度的依赖性。测定了右旋糖酐中RBC悬浮液的低剪切粘度和电导率,并将其与PBS中的非聚集性对照RBC悬浮液进行了比较。用不同浓度(0.01%至1%)的戊二醛(GA)处理RBC。在剪切速率的梯形变化下记录了正常RBC的电导率随时间变化的过程,并用悬浮在葡聚糖70中的GA处理。它提供了RBC聚集-分解过程和其他细胞间相互作用的实验描述。葡聚糖诱导悬浮液中RBC形状和排列的形态学改变。在低Dx 70浓度下观察到了棘突细胞,而在高Dx 70浓度下主要在涂片中发现了球细胞。它们的形态特征影响血液的电气和机械性能。

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