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首页> 外文期刊>PLoS One >Optofluidic laser speckle image decorrelation analysis for the assessment of red blood cell storage
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Optofluidic laser speckle image decorrelation analysis for the assessment of red blood cell storage

机译:优化流体激光散斑图像去序分析评估红细胞储存

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Red blood cells (RBCs) undergo irreversible biochemical and morphological changes during storage, contributing to the hemorheological changes of stored RBCs, which causes deterioration of microvascular perfusion in vivo. In this study, a home-built optofluidic system for laser speckle imaging of flowing stored RBCs through a transparent microfluidic channel was employed. The speckle decorrelation time (SDT) provides a quantitative measure of RBC changes, including aggregation in the microchannel. The SDT and relative light transmission intensity of the stored RBCs were monitored for 42 days. In addition, correlations between the decorrelation time, RBC flow speed through the channel, and relative light transmission intensity were obtained. The SDT of stored RBCs increased as the storage duration increased. The SDTs of the RBCs stored for 21 days did not significantly change. However, for the RBCs stored for over 35 days, the SDT increased significantly from 1.26 ± 0.27 ms to 6.12 ± 1.98 ms. In addition, we measured the relative light transmission intensity and RBC flow speed. As the RBC storage time increased, the relative light transmission intensity increased, whereas the RBC flow speed decreased in the microchannel. The optofluidic laser speckle image decorrelation time provides a quantitative measure of assessing the RBC condition during storage. Laser speckle image decorrelation analysis may serve as a convenient assay to monitor the property changes of stored RBCs.
机译:红细胞(RBCS)在储存过程中经历不可逆的生化和形态学,有助于储存RBC的血液流变变化,这导致体内微血管灌注的恶化。在本研究中,采用了一种用于通过透明微流体通道流动储存RBC的激光散斑成像的自制oplof流体系统。散斑去相关时间(SDT)提供了RBC变化的定量测量,包括微通道中的聚合。监测储存的RBC的SDT和相对光传输强度42天。另外,获得了去相关时间,RBC流速通过通道之间的相关性,以及相对光传输强度。存储RBC的SDT随着存储持续时间的增加而增加。储存21天的RBC的SDTS并未显着变化。然而,对于储存超过35天的RBC,SDT从1.26±0.27 ms增加到6.12±1.98ms。另外,我们测量了相对透光强度和RBC流速。随着RBC存储时间增加,相对透光强度增加,而Microchannel中的RBC流速降低。 Optof流体激光散斑图像去相关时间提供了在储存期间评估RBC条件的定量措施。激光散斑图像去相关分析可以作为监测存储RBCS的性能变化的方便测定。

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