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Detection of coagulating blood under steady flow by statistical analysis of backscattered signals

机译:通过反向散射信号的统计分析检测稳定流动条件下的凝血

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摘要

The main purpose of this study is to detect blood coagulation under flow condition by analyzing Nakagami statistical model of backscattered signals. The radiofrequency (RF) signals backscattered from flowing blood were measured with a 10-MHz focused transducer. A 30-ml aliquot of blood was circulated in the flow model, and 3 ml of 0.5 M calcium chloride solution was added to induce blood coagulation. The progression in the blood coagulation due to the addition of the calcium chloride solution resulted in the integrated backscatter being increased by 4.2 plusmn 0.5 dB, then tended to stabilize as the clot was formed. The Nakagami parameter was approximately 0.75 plusmn 0.1 for flowing blood during the initial stage of blood coagulation, and it increased rapidly to its highest level of 2.6 plusmn 0.5 during clotting. These experimental results demonstrate the feasibility of using the ultrasonic statistical parameter for detecting blood coagulation from flowing blood and provide a novel method for further monitoring the progress of clotting and thrombosis in vivo
机译:这项研究的主要目的是通过分析Nakagami反向散射信号的统计模型来检测流动条件下的血液凝固。从流动的血液中反向散射的射频(RF)信号是用10 MHz聚焦换能器测量的。在流模型中循环30 ml血液等分试样,然后添加3 ml 0.5 M氯化钙溶液以引起血液凝固。由于添加了氯化钙溶液,血液凝固过程导致积分背散射增加了4.2±0.5 dB,然后趋于稳定,因为形成了血凝块。在血液凝结初期,Nakagami参数大约为流动血液的0.75±0.1,并且在凝血期间迅速增加到其最高水平2.6±0.5。这些实验结果证明了使用超声统计参数检测流动血液中的凝血的可行性,并提供了一种进一步监测体内凝血和血栓形成过程的新方法

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