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Development of a real-time and quantitative thrombus sensor for an extracorporeal centrifugal blood pump by near-infrared light

机译:通过近红外光开发用于体外离心血泵的实时定量血栓传感器

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We developed an optical thrombus sensor for a monopivot extracorporeal centrifugal blood pump. In this study, we investigated its quantitative performance for thrombus detection in acute animal experiments of left ventricular assist using the pump on pathogen-free pigs. Optical fibers were set in the driver unit of the pump. The incident light at the near-infrared wavelength of 810 nm was aimed at the pivot bearing, and the resulting scattered light was guided to the optical fibers. The detected signal was analyzed to obtain the thrombus formation level. As a result, real-time and quantitative monitoring of the thrombus surface area on the pivot bearing was achieved with an accuracy of 3.6 ± 2.3 mm2. In addition, the sensing method using the near-infrared light was not influenced by changes in the oxygen saturation and the hematocrit. It is expected that the developed sensor will be useful for optimal anticoagulation management for long-term extracorporeal circulation therapies.
机译:我们开发了一种用于单轴体外离心血泵的光学血栓传感器。在这项研究中,我们调查了在无病原体的猪上使用左泵辅助的急性动物实验中血栓检测的定量性能。光纤安装在泵的驱动器单元中。 810 nm的近红外波长的入射光对准旋转轴承,然后将产生的散射光引导到光纤上。分析检测到的信号以获得血栓形成水平。结果,对枢轴轴承上的血栓表面积进行了实时和定量监控,精度为3.6±2.3 mm2。另外,使用近红外光的感测方法不受氧饱和度和血细胞比容变化的影响。预期开发的传感器将对长期体外循环疗法的最佳抗凝管理有用。

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