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Probing orientation and rotation of red blood cells in optical tweezers by Digital Holographic microscopy

机译:用数字全息显微镜探测镊子中红细胞的取向和旋转

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摘要

Interaction of red blood cells (RBC) with optical tweezers has been found to differ under varied physiological and pathological conditions as compared to its normal conditions. Earlier, we reported difference in rotation of trapped RBC in hypertonic conditions for detection of malaria infection. Disk-like RBC when trapped in optical tweezers get oriented in the vertical plane to maximize interaction with trapping beam. However, classical bright field, phase contrast or epi-fluorescence microscopy cannot confirm its orientation, thus leading to ambiguous conclusions such as folding of RBC during trapping by some researchers. Now, with use of digital holographic microscopy (DHM), we achieved high axial sensitivity that confirmed orientation of trapped red blood cell. Further, DHM enabled quantitative phase imaging of RBC under hypertonic condition. Dynamic changes of rotating RBC under optical tweezers at different trapping laser power were evaluated by the use of DHM. The deviation from linear dependence of rotation speed of RBC on laser power, was attributed towards deformation of RBC shape due to higher laser power (or speed).
机译:与正常状态相比,在各种生理和病理条件下,红细胞(RBC)与光镊的相互作用已被发现是不同的。早些时候,我们报道了在高渗条件下捕获的RBC旋转的差异,以检测疟疾感染。圆盘状的红细胞被捕获在光镊中时会定向在垂直平面上,以最大化与捕获光束的相互作用。但是,经典的明场,相衬或落射荧光显微镜无法确定其方向,因此得出了一些不明确的结论,例如一些研究人员在诱捕过程中将RBC折叠。现在,通过使用数字全息显微镜(DHM),我们实现了高轴向灵敏度,从而证实了所捕获的红细胞的方向。此外,DHM能够在高渗条件下对RBC进行定量相位成像。使用DHM评估了光镊在不同捕获激光功率下旋转RBC的动态变化。 RBC旋转速度对激光功率的线性依赖性的偏差归因于由于更高的激光功率(或速度)导致的RBC形状变形。

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