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Quantitative detection and evaluation of thrombus formation based on electrical impedance spectroscopy

机译:基于电阻抗光谱的血栓形成定量检测与评价

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摘要

Thrombus formation is quantitatively measured and evaluated by the electrical impedance spectroscopy method in this study, which confirms the possibility for the application of a promising non-invasive thrombus detection method. The impedance parameter Z*(t) of blood from the electrical impedance spectroscopy is utilized to elaborate the impedance performance of blood during thrombus formation process. Experimental results indicate that the impedance Z*(t) of blood has regular variations under the formation of thrombus, which could be divided into three stages. Modified Hanai equation is proposed to quantitatively expound the three stages of impedance Z*(t) variation. The amount of fibrin and thrombus clot is founded to be accounted for the impedance variation of blood, which confirms the feasibility and theoretical basis of the non-invasive and on-line thrombus bio-detection technology for patients with serious cardiovascular disease.
机译:通过本研究中的电阻抗光谱法定量测量和评估血栓形成,这证实了应用有前途的非侵入性血栓检测方法的可能性。 来自电阻抗光谱的血液的阻抗参数Z *(t)用于阐明血栓形成过程中血液的阻抗性能。 实验结果表明,血液的阻抗Z *(t)在血栓形成下具有规则的变化,可分为三个阶段。 修改的汉台方程被提出定量地阐述阻抗Z *(t)变化的三个阶段。 成立纤维蛋白和血栓凝块的量被占血液的阻抗变异,这证实了对严重心血管疾病患者的非侵入性和在线血栓生物检测技术的可行性和理论基础。

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