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首页> 外文期刊>Journal of artificial organs: The official journal of the Japanese Society for Artificial Organs >Optical aggregometry of red blood cells associated with the blood-clotting reaction in extracorporeal circulation support
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Optical aggregometry of red blood cells associated with the blood-clotting reaction in extracorporeal circulation support

机译:与体外循环支持中的凝血反应相关的红细胞的光学聚集法

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The aggregability of red blood cell (RBCs) is associated with the contribution of plasma proteins, such as fibrinogen and lipoproteids, to blood-clotting. Hence, we hypothesized that RBC aggregability reflects the blood-clotting reaction. A noninvasive optical monitoring method to measure RBC aggregability for the assessment of blood-clotting stage during mechanical circulatory support was developed. An in vitro thrombogenic test was conducted with a rotary blood pump using heparinized fresh porcine blood. Near-infrared laser light at a wavelength of 785 nm was guided by an optical fiber. The fibers for detecting incident, forward-, and backward-scattered light were fixed on the circuit tubing with an inner diameter of 1/4 inch. Because there is substantial RBC aggregation at low shear flow rates, a pulsatile flow was generated by controlling the pump rotational speed. The flow rate was changed from 0 to 8.5 L/min at a period of 40 s. The intensities of forward- and backward-scattered light changed dramatically when the flow stopped. The aggregability was evaluated by the increase ratio of the transmitted light intensity from the flow stopping in the low-flow condition. The experiment started when the anticoagulation was stopped by the addition of protamine into the circulating blood. Reduction in RBC aggregability was associated with a decrease in the amount of fibrinogen and the number of platelets. Continuous, noninvasive monitoring of thrombosis risk is possible using optical measurements combining pulsatile flow control of a rotary blood pump. RBC aggregometry is a potential label-free method for evaluating blood-clotting risk.
机译:红细胞(RBC)的聚集性与血浆蛋白(如纤维蛋白原和脂蛋白)对凝血的贡献有关。因此,我们假设RBC的凝集反应反映了凝血反应。开发了一种非侵入性的光学监测方法来测量RBC的可凝集性,以评估机械循环支持期间的凝血阶段。使用肝素化的新鲜猪血用旋转式血泵进行了体外血栓形成试验。波长为785nm的近红外激光由光纤引导。用于检测入射光,向前散射光和向后散射光的光纤固定在内径为1/4英寸的回路管路上。由于在低剪切流速下有大量的RBC聚集,因此通过控制泵的转速会产生脉动流。在40 s的时间内,流速从0更改为8.5 L / min。当流量停止时,向前和向后散射的光的强度发生了巨大变化。通过在低流量条件下停止流动的透射光强度的增加率来评估聚集性。当通过向循环血液中添加鱼精蛋白终止抗凝作用时,开始实验。 RBC凝集能力的降低与血纤蛋白原量和血小板数量的减少有关。使用光学测量结合旋转血泵的脉动流量控制,可以连续,无创地监测血栓形成风险。 RBC凝集测定法是评估凝血风险的一种潜在的无标记方法。

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