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Investigation of diseases through red blood cells' shape using photoacoustic response technique

机译:使用光声响应技术通过红细胞形状调查疾病

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Photoacoustic (PA) imaging is a non-invasive real-time technique, widely applied to many biomedical imaging studies in the recent years. While most of these studies have been focussed on obtaining an image after reconstruction, various features of time domain signal (e.g. amplitude, width, rise and relaxation time) would provide very high sensitivity in detecting morphological changes in cells during a biological study. Different haematological disorders (e.g., sickle cell anaemia, thalassemia) exhibit significant morphological cellular changes. In this context, this study explores the possibility of utilizing the developed photoacoustic response technique to apply onto blood samples. Results of our preliminary study demonstrate that there is a significant change in signal amplitude due to change in concentration of the blood. Thus it shows the sensitivity of the developed photoacoustic technique towards red blood cell count (related to haematological disease like anaemia). Subsequently, morphological changes in RBC (i.e. swollen and shrunk compared to normal RBC) induced by hypotonic and hypertonic solutions respectively were also experimented. The result shows a distinct change in PA signal amplitude. This would serve as a diagnostic signature for many future studies on cellular morphological disorders.
机译:光声(PA)成像是一种无创实时技术,近年来广泛应用于许多生物医学成像研究。尽管这些研究大多数都集中在重建后的图像获取上,但是时域信号的各种特征(例如幅度,宽度,上升和弛豫时间)在生物学研究过程中检测细胞形态变化时将提供非常高的灵敏度。不同的血液学疾病(例如镰状细胞贫血,地中海贫血)表现出明显的细胞形态学改变。在这种情况下,本研究探索了利用发达的光声响应技术将其应用于血液样本的可能性。我们的初步研究结果表明,由于血液浓度的变化,信号幅度发生了显着变化。因此,它显示出开发的光声技术对红细胞计数(与诸如贫血等血液疾病有关)的敏感性。随后,还分别试验了由低渗和高渗溶液引起的红细胞形态变化(即与正常红细胞相比肿胀和收缩)。结果显示PA信号幅度发生明显变化。这将作为未来许多细胞形态异常研究的诊断标志。

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