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DiStinguishing Structure Change of Cells Based on Analysis of Light Scattering Patterns

DiStinguishing Structure Change of Cells Based on Analysis of Light Scattering Patterns
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摘要 We develop a new method to distinguish structural change of cells based on light scattering and Fourier spectra analysis. The light scattering detection system is composed of a laser source, an optical microscope, a CCD with high resolution and low distortion. After the scattering patterns of cells are recorded by the CCD, the Fourier spectra are obtained by the intensity distribution of scattered light. In the experiment, the change of cell structure is designed by sonication treatment. It is found that different typical peaks can be shown in the Fourier spectra of MCF7 cells with and without sonication treatment, which indicates that this method can be used to distinguish the structural change of cells. We develop a new method to distinguish structural change of cells based on light scattering and Fourier spectra analysis. The light scattering detection system is composed of a laser source, an optical microscope, a CCD with high resolution and low distortion. After the scattering patterns of cells are recorded by the CCD, the Fourier spectra are obtained by the intensity distribution of scattered light. In the experiment, the change of cell structure is designed by sonication treatment. It is found that different typical peaks can be shown in the Fourier spectra of MCF7 cells with and without sonication treatment, which indicates that this method can be used to distinguish the structural change of cells.
出处 《Chinese Physics Letters》 SCIE CAS CSCD 2008年第11期4013-4015,共3页 中国物理快报(英文版)
基金 Supported by the National Natural Science Foundation of China under Grant No 90406023.
关键词 the power-law exponents PRECIPITATION durative abrupt precipitation change the power-law exponents, precipitation, durative, abrupt precipitation change
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参考文献13

  • 1Ghosh N, Buddhiwant P, Uppal A et al 2006 Appl. Phys. Lett. 88 084101
  • 2LI X, Allen T and Vadim B 2005 IEEE J. Sel. Top. Quant. Electron. 11 759
  • 3Shu X M, Fang J, Shao Q et al. 2006 Chin. Phys. Lett. 23 385
  • 4Konstantin S, Rebekah D, Kirk G et al 1999 Opt. Express 5 302
  • 5Mourant J R, Canpolat M, Brocker C et al 2000 J. Biomed. Opt. 5 131
  • 6Singh K, Liu C, Capjack C et al 2004 IEE Proc. Nanobiotechnol. 151 10
  • 7Perelman L T, Backman V, Wallace M et al 1998 Phys. Rev. Lett. 80 627
  • 8Kim Young L, Liu Y, Wali Ramesh K et al 2003 IEEE J. Sel. Top. Quant. Electron. 9 243
  • 9Backman V, Wallace M B, Perelman L T et al 2000 Nature 406 35
  • 10Su X T, Wojciech R, Clarence C et al 2007 Proc. SPIE 6446 64460W

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