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New methods for hemoglobin detection in a microparticle-plasma suspension.

机译:微粒-血浆悬浮液中血红蛋白检测的新方法。

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In the extracorporeal adsorption system, MDS (Microspheres based Detoxification System), micro-adsorbent particles measuring 1-25 micrometers circulate in a filtrate circuit for highly specific blood purification/adsorption. The MDS circuit containing the adsorbent microparticles is linked to the patientOs blood line by a hollow fiber plasma filter. When the transmembrane pressure or the shear forces due to the red blood cells in the hollow fiber filter are too high, they can be damaged and hemoglobin will be released. In order to detect free hemoglobin (fHb) by optical means, we have designed a new flow-dynamic filter system, placed in the microadsorbent circuit for continuous separation of microparticles from the filtrate. In the flow dynamic filter, we use a high velocity liquid vortex to remove sedimentation and particle plugs on the filter membrane. In our investigations, 3 and 8 micron cellulose nitrate filter membranes for particle separation are used. The obtained particle free bypass filtrate flow rates are typically 0.5 and 0.8 ml/min respectively. The typical sensitivity for fHb detection by the applied noninvasive optical method is 0.15 g/dL. Medical safety regulations require a fail-safe mechanism for fHb detection which monitors the bypass filtrate flow in the flowdynamic filter and shuts down the system in case of membrane occlusion. The bypass filtrate flow is monitored by periodically occluding and releasing the bypass line by means of a clamp. The resulting back pressure profile gives information about the actual filtration rate. This safety principle was proven by statistical analysis and shows its clear functionality.
机译:在体外吸附系统MDS(基于微球的排毒系统)中,尺寸为1-25微米的微吸附剂颗粒在滤液回路中循环,以实现高度特异性的血液净化/吸附。包含吸附微粒的MDS回路通过中空纤维血浆过滤器连接到患者的血液管线。当中空纤维过滤器中的红细胞引起的跨膜压力或剪切力过高时,它们可能会受损并释放血红蛋白。为了通过光学手段检测游离血红蛋白(fHb),我们设计了一种新型的流动动态过滤器系统,该系统位于微吸附剂回路中,用于从滤液中连续分离出微粒。在流动动态过滤器中,我们使用高速液体涡旋来去除沉淀物和滤膜上的颗粒堵塞。在我们的研究中,使用了3和8微米的硝酸纤维素滤膜进行颗粒分离。所获得的无颗粒旁路滤液流速通常分别为0.5和0.8ml / min。应用无创光学方法检测fHb的典型灵敏度为0.15 g / dL。医疗安全法规要求有一种用于fHb检测的故障安全机制,该机制可监视流动力过滤器中的旁路滤液流量,并在膜被堵塞的情况下关闭系统。通过定期用夹钳堵塞和释放旁路管线来监控旁路滤液流量。产生的背压曲线可提供有关实际过滤速率的信息。统计分析证明了该安全原则,并显示了其明确的功能。

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