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Multiple-scattering Modelling of Scattering by Biological Cells
Nieminen, T. A., Pile, D. F. P., Heckenberg, N. R. and Rubinsztein-Dunlop, H. (2003). Multiple-scattering Modelling of Scattering by Biological Cells. In: Thomas Wriedt, Electromagnetic and Light Scattering - Theory and Applications VII / 7th Conference on Electromagnetic and Light Scattering by Nonspherical Particles: Theory, Measurements, and Applications. 7th Conf ELSNP: Theory measurement and Applications, Bremen, (259-262). 8-12 September, 2003.
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| Attached Files (Some files may be inaccessible until you login with your UQ eSpace credentials) |
| Name |
Description |
MIMEType |
Size |
Downloads |
cells_preprint.pdf
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cells_preprint.pdf |
application/pdf |
67.64KB |
446 |
| Author(s) |
Nieminen, T. A. Pile, D. F. P. Heckenberg, N. R. Rubinsztein-Dunlop, H.
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| Title of paper |
Multiple-scattering Modelling of Scattering by Biological Cells
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| Conference name |
7th Conf ELSNP: Theory measurement and Applications
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| Conference location |
Bremen
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| Conference dates |
8-12 September, 2003
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| Proceedings title |
Electromagnetic and Light Scattering - Theory and Applications VII / 7th Conference on Electromagnetic and Light Scattering by Nonspherical Particles: Theory, Measurements, and Applications
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| Editor(s) |
Thomas Wriedt
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| Place published |
Bremen
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| Publisher |
University of Bremen
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| Publication date |
2003
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| ISBN |
3-88722-579-1
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| Start page |
259
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| End page |
262
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| Total pages |
4
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| Language |
eng
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| Abstract/Summary |
Past work on scattering by biological cells has been restricted to unrealistic oversimplified models of cells, or uses slow methods unsuited for calculations involving large numbers of cells or varying illumination. We consider the systematic use of fast, accurate methods for modelling light scattering in realistic complex biological cells. This will allow, for example, the study of light scattering by realistic ensembles of cells, which is immediately applicable to optical cancer detection, and remote sensing of microorganisms. It will also be possible to study light scattering by cells under constantly varying illumination, such as encountered in applications like flow cytometry.
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| Subjects |
240504 Electrostatics and Electrodynamics 240400 Optical Physics 249901 Biophysics
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| Keyword(s) |
light scattering modelling biological cells
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