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Characterization of red blood cell aggregation with photoacoustics: A theoretical and experimental study

机译:用光声表征红细胞聚集:理论和实验研究

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The aggregation of red blood cells (RBCs) is a phenomenon that is governed by plasma fibrinogen concentration and the shear forces of flow. We propose the use of photoacoustics (PA) for the detection and characterization of RBC aggregation. A 2D simulation study was performed to investigate the dependence of the PA signal on hematocrit for non-aggregated cells and on the aggregate size for aggregated samples. Experimental confirmation of theoretical results was conducted using human RBC samples and the Imagio PA imaging device (Seno Medical Instruments Inc., San Antonio, TX). Samples were exposed to 1064 nm laser irradiation. PA signals were collected from the non-aggregated samples at varying hematocrit levels. Aggregation was induced by suspending the RBCs in various concentrations of Dextran-70. To account for the response of the imaging system, the PA spectra were calibrated by dividing by the response of the transducer measured using a needle hydrophone. Theoretical and experimental results show a monotonic increase in the PA signal amplitude with increasing hematocrit. As the size of aggregates increases, simulations demonstrate a shift towards lower frequencies in the PA power spectrum as well as enhancements as large as 11 dB compared to the non-aggregated sample. Experimental results confirm the ability of PA to detect and quantify the aggregation of RBCs. PA radiofrequency spectral analysis seems provides a quantitative means for distinguishing between aggregated and non-aggregated samples.
机译:红细胞(RBC)的聚集是受血浆纤维蛋白原浓度和血流切变力控制的现象。我们建议使用光声(PA)来检测和表征RBC聚集。进行了2D模拟研究,以研究PA信号对非聚集细胞的血细胞比容和聚集样品的聚集体大小的依赖性。使用人的RBC样品和Imagio PA成像设备(德克萨斯州圣安东尼奥市Seno Medical Instruments Inc.)进行了理论结果的实验​​确认。样品暴露于1064 nm激光照射下。从不同血细胞比容水平的非聚集样本中收集PA信号。通过将RBC悬浮在各种浓度的Dextran-70中来诱导聚集。为了说明成像系统的响应,通过除以使用针式水听器测得的换能器的响应来校准PA光谱。理论和实验结果表明,PA信号幅度随血细胞比容的增加而单调增加。随着聚集体大小的增加,仿真表明,与未聚集的样本相比,PA功率谱向更低的频率转移,并且增强了11 dB。实验结果证实了PA检测和定量RBC聚集的能力。 PA射频频谱分析似乎为区分聚集和非聚集样本提供了一种定量手段。

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