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首页> 外文期刊>Journal of biomedical optics >Birefringence of a normal human red blood cell and related optomechanics in an optical trap
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Birefringence of a normal human red blood cell and related optomechanics in an optical trap

机译:光学陷阱中正常人红细胞的双折射和相关光力学

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摘要

A normal human red blood cell (RBC) when trapped with a linearly polarized laser, reorients about the electric polarization direction and then remains rotationally bound to this direction. This behavior is expected for a birefringent object. We have measured the birefringence of distortion-free RBCs in an isotonic medium using a polarizing microscope. The birefringence is confined to the cell's dimple region and the slow axis is along a diameter. We report an average retardation of 3.5 ± 1.5 nm for linearly polarized green light (λ = 546 nm). We also estimate a retardation of 1.87 ± 0.09 nm from the optomechanical response of the RBC in an optical trap. We reason that the birefringence is a property of the cell membrane and propose a simple model attributing the origin of birefringence to the phospholipid molecules in the lipid bilayer and the variation to the membrane curvature. We observe that RBCs reconstituted in shape subsequent to crenation show diminished birefringence along with a sluggish optomechanical response in a trap. As the arrangement of phospholipid molecules in the cell membrane is disrupted on crenation, this lends credence to our conjecture on the origin of birefringence. Dependence of the birefringence on membrane contours is further illustrated through studies on chicken RBCs.
机译:正常的人类红细胞(RBC)被线偏振激光捕获时,会围绕电偏振方向重新定向,然后保持与该方向旋转绑定。对于双折射对象,此行为是预期的。我们已经使用偏光显微镜测量了等渗介质中无畸变的RBC的双折射。双折射仅限于晶胞的酒窝区域,慢轴沿直径。我们报告了线性偏振绿光(λ= 546 nm)的平均延迟为3.5±1.5 nm。我们还从光阱中RBC的光机械响应估计出1.87±0.09 nm的延迟。我们认为双折射是细胞膜的特性,并提出了一个简单的模型,将双折射的起源归因于脂质双层中的磷脂分子,并将其归因于膜曲率。我们观察到,在进行折痕加工后重构的RBC的形状显示双折射减弱,并且陷阱中的光机械响应缓慢。由于磷脂分子在细胞膜中的排列在产生折皱时会被破坏,因此这有助于我们推测双折射的起源。通过对鸡红细胞的研究进一步说明了双折射对膜轮廓的依赖性。

著录项

  • 来源
    《Journal of biomedical optics》 |2014年第11期|115004.1-115004.12|共12页
  • 作者单位

    Bangalore University, Department of Physics, Jnanabharathi, Bangalore 560056, India,M.S. Ramaiah Institute of Technology, Department of Physics, M.S.R. Nagara, Bangalore 560054, India;

    Bangalore University, Department of Physics, Jnanabharathi, Bangalore 560056, India;

    Raman Research Institute, Soft Matter Division, C.V. Raman Avenue, Bangalore 560080, India;

    Bangalore University, Department of Physics, Jnanabharathi, Bangalore 560056, India;

    Bangalore University, Department of Physics, Jnanabharathi, Bangalore 560056, India;

    Bangalore University, Department of Physics, Jnanabharathi, Bangalore 560056, India;

    Bangalore University, Department of Physics, Jnanabharathi, Bangalore 560056, India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    birefringence; biomedical optics; microscopy;

    机译:双折射生物医学光学;显微镜检查;

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