首页> 外文会议>Conference on Biomedical Applications of Light Scattering; 20080119-21; San Jose,CA(US) >Time-resolved optical spectroscopic quantification of the red blood cell damages caused by the cardiovascular devices
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Time-resolved optical spectroscopic quantification of the red blood cell damages caused by the cardiovascular devices

机译:时间分辨光谱对心血管设备引起的红细胞损害的量化

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Cardiovascular devices such as heart-lung machine generate un-physiological level of shear stress to damage red blood cells, leading to hemolysis. The diagnostic techniques of cell damages, however, have not yet been established. In this study, the time-resolved optical spectroscopy was applied to quantify red blood cell (RBC) damages caused by the extracorporeal circulation system. Experimentally, the fresh porcine blood was subjected to varying degrees of shear stress in the rotary blood pump, followed with measurement of the time-resolved transmission characteristics using the pico-second pulses at 651 nm. The propagated optical energy through the blood specimen was detected using a streak camera. The data were analyzed in terms of the mean cell volume (MCV) and mean cell hemoglobin concentration (MCHC) measured separately versus the energy and propagation time of the light pulses. The results showed that as the circulation time increased, the MCV increased with decrease in MCHC. It was speculated that the older RBCs with smaller size and fragile membrane properties had been selectively destroyed by the shear stress. The time-resolved optical spectroscopy is a useful technique in quantifying the RBCs' damages by measuring the energy and propagation time of the ultra-short light pulses through the blood.
机译:诸如心肺机之类的心血管设备会产生非生理水平的切应力,从而破坏红细胞,导致溶血。然而,细胞损伤的诊断技术尚未建立。在这项研究中,时间分辨光谱用于量化体外循环系统引起的红细胞(RBC)损伤。实验上,新鲜的猪血在旋转式血泵中受到不同程度的剪切应力,然后使用651 nm的皮秒脉冲测量时间分辨的透射特性。使用条纹相机检测通过血液样本传播的光能。根据分别测量的平均细胞体积(MCV)和平均细胞血红蛋白浓度(MCHC)相对于光脉冲的能量和传播时间来分析数据。结果表明,随着循环时间的增加,MCV随MCHC的减少而增加。据推测,具有较小尺寸和易碎膜特性的较旧RBC已被剪切应力选择性破坏。时间分辨光谱是通过测量超短光脉冲通过血液的能量和传播时间来量化RBC损害的有用技术。

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