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Modeling of a single red blood cell thermal reaction exposed to infrared laser tweezers

机译:暴露于红外镊子的单个红细胞热反应的模型

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Continuous-wave laser micro-beams are generally used as diagnostic tools in laser scanning microscopes or in the case of near-infrared (NIR) micro-beams, as optical traps for cell manipulation and force characterization. Because single beam traps are created with objectives of high numerical aperture, typical trapping intensities and photon flux densities are in the order of 10~6 W/cm~2 and 10~3 cm~(-2)s~(-1) , respectively. The main idea of our theoretical study was to investigate the thermal reaction of RBCs irradiated by laser micro-beam. The study is supported by the fact that many experiments have been carried out with RBCs in laser NIR tweezers. In the present work it has been identified that the laser affects a RBC with a density of absorbed energy at approximately 10~7 J/cm~3, which causes a temperature rise in the cell of about 7-12 ℃.
机译:连续波激光微束通常用作激光扫描显微镜中的诊断工具,或者在近红外(NIR)微束的情况下,用作细胞操纵和力表征的光阱。由于以高数值孔径为目标创建了单束阱,因此典型的捕获强度和光子通量密度约为10〜6 W / cm〜2和10〜3 cm〜(-2)s〜(-1),分别。我们理论研究的主要思想是研究激光微束辐照的红细胞的热反应。这项研究得到了以下事实的支持:在激光近红外镊子中已经用RBC进行了许多实验。在目前的工作中,已经确定激光以大约10〜7 J / cm〜3的吸收能量密度影响RBC,这会导致电池温度升高大约7-12℃。

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