Accesso libero

Estimating Particle Concentration in Natural Water by Speckle Contrast

   | 30 ott 2013
INFORMAZIONI SU QUESTO ARTICOLO

Cita

1. Aizu Y. and Asakura T., 1991 - Bio-speckle phenomena and their application to the evaluation of blood flow, Optical Laser Technology, 23, 205-219.10.1016/0030-3992(91)90085-3Search in Google Scholar

2. Berlasso R., Perez F., Quintian Rebollo M. A., Raffo C. A. and Gaggioli N. G., 2000 - Study of speckle size of light scattered from cylindrical rough surfaces, Applied Optic, 39, 5811-5819.10.1364/AO.39.005811Search in Google Scholar

3. Blănaru C., Ṭiculean M. and Sasu G., 2008 - The structure and dynamics of the phytoplankton from Dragomirna and Solca lakes (Moldavia, Romania), Acta Oecologica Carpatica, I, 1-6.Search in Google Scholar

4. Boas D. A. and Yodh A. G., 1997 - Spatially varying dynamical properties of turbid media probed with diffusing temporal light correlation, Journal of American Optical Society, 14, 192-215.10.1364/JOSAA.14.000192Search in Google Scholar

5. Briers J. D., 2001 - Laser Doppler, speckle and related techniques for blood perfusion mapping and imaging, Physiological Measurement, 22, R35-R66.10.1088/0967-3334/22/4/20111761081Search in Google Scholar

6. Briers J. D., Richards G. and He X. W., 1999 - Capillary blood flow monitoring using laser speckle contrast analysis (LASCA), Journal of Biomedical Optics, 4, 164-175.10.1117/1.42990323015182Search in Google Scholar

7. Chicea D., 2007a - Speckle Size, Intensity and Contrast Measurement Application in Micron- Size Particle Concentration Assessment, European Physical Journal Applied Physics, 40, 305-310, DOI: 10.1051/epjap:2007163.10.1051/epjap:2007163Search in Google Scholar

8. Chicea D., 2007b - Biospeckle Size and Contrast Measurement Application in Particle Sizing and Concentration Assessment, Romanian Journal of Physics, 52(5-7), 581-587.Search in Google Scholar

9. Chicea D., 2010 - Nanoparticles and Nanoparticle Aggregates Sizing by DLS and AFM, Journal of Optoelectronics and Advanced Materials, 4(9), 1310-1315.Search in Google Scholar

10. Chicea D., 2012a - A Study of Nanoparticle Aggregation by Coherent Light Scattering, Current Nanoscience, 8(6), 259-265.10.2174/157341312800167704Search in Google Scholar

11. Chicea D., 2012b - A Coherent Light Scattering Procedure to Measure Very Small Concentration of Organic Suspension in Natural Water, Transylvanian Review of Systematicaland Ecological Research, 14(2), 1-8.Search in Google Scholar

12. Chicea D., 2013 - Estimating Particle Concentration in Natural Water by Speckle Size Measurement, Proceedings of 11th International Conference on Environment, Ecosystems andDevelopment (EED '13), Braşov, Romania, June 1-3.10.2478/trser-2013-0017Search in Google Scholar

13. Chicea D., Indrea E. and Creţu C. M., 2012 - Assessing Fe3O4 Nanoparticle Size by DLS, XRD and AFM, Journal of Optoelectronics and Advanced Materials, 14(5-6), 460-466.Search in Google Scholar

14. Coman A. and Sandu C., 2009 - Peculiarities of ecological evolution of Musura Bay (Danube Delta) between 2005-2007, Romanian Journal of Biology - Zoology, 54(2), 167-180.Search in Google Scholar

15. da Costa G. and Ferrari J., 1997 - Anisotropic speckle patterns in the light scattered by rough cylindrical surfaces, Applied Optics, 36, 5231-5237.10.1364/AO.36.00523118259338Search in Google Scholar

16. Fedosov I. V. and Tuchin V. V., 2011 - The use of dynamic speckle field space time correlation function estimates for the direction and velocity determination of blood flow, Proceeding ofSociety of Photonics and Imaging Engineering (SPIE), 4434, 192-196.Search in Google Scholar

17. Fulga N. and Kiseliova O., 2006 - Sexual maturation of the industrial valuable species of fish females under modified conditions of the Dubăsar water accumulation reservoir, ActaIchtiologica Romanica I, 93-102.Search in Google Scholar

18. Giglio M., Carpineti M., Vailati A. and Brogioli D., 2001 - Near-field intensity correlation of scattered light, Applied Optics, 40, 4036-4040.10.1364/AO.40.004036Search in Google Scholar

19. Goodman J. W., 1984 - Statistical Properties of Laser Speckle Patterns, in Laser speckle and related phenomena, vol. 9 in series Topics in Applied Physics, Dainty J. C., Ed., Springer- Verlag, Berlin, Heidelberg, New York, Tokyo.10.1007/BFb0111436Search in Google Scholar

20. Gumpinger C., Höfler S., Berg K. and Scheder C., 2010 - Water temperature as an applicable parameter with a high indicative value for the general condition of a river-ecosystem, drawing on the example of the river Trattnach in Upper Austria, Transylvanian Review of Systematicaland Ecological Research, 10 (eds Curtean-Bănăduc A. et al.), The Wetlands Diversity, 1-14.Search in Google Scholar

21. Lehmann P., 1999 - Surface-roughness measurement based on the intensity correlation function of scattered light under speckle-pattern illumination, Applied Optics, 38, 1144-1152.10.1364/AO.38.001144Search in Google Scholar

22. National Soil Survey Handbook Part 618 (42-55) Soil Properties and Qualities, 2006 - United States Department of Agriculture - Natural Resource Conservation Service, May.Search in Google Scholar

23. Nothdurft R. and Yao G., 2005 - Imaging obscured subsurface in homogeneity using laser speckle, Optics Express, 13(25), 10034-10039.10.1364/OPEX.13.010034Search in Google Scholar

24. Piederrière Y., Cariou J., Guern Y., Le Jeune B., Le Brun G. and Lotrian J., 2004 - Scattering through fluids: speckle size measurement and Monte Carlo simulations close to and into the multiple scattering, Optics Express, 12, 176-188.10.1364/OPEX.12.00017619471524Search in Google Scholar

25. Piederrière Y., Le Meur J., Cariou J., Abgrall J. F. and Blouch M. T., 2004 - Particle aggregation monitoring by speckle size measurement; application to blood platelets aggregation, Optics Express, 12, 4596-4601.10.1364/OPEX.12.004596Search in Google Scholar

26. Sadhwani A., Schomaker K. T., Tearney G. J. and Nishioka N. S., 1996 - Determination of Teflon thickness with laser speckle, I, Potential for burn depth diagnosis, Applied Optics, 35, 5727-5735.10.1364/AO.35.00572721127582Search in Google Scholar

27. Salem A. H. I., 2011 - Morphometric measurement and field estimation of the size of Crocodylus niloticus in lake Nasser (Egypt), Transylvanian Review of Systematical andEcological Research - The Wetlands Diversity 12 (eds Curtean-Bănăduc A. et al.), 53-76.Search in Google Scholar

28. Waterwatch Australia National Technical Manual, Module 4, 2002 - Waterwatch Australia Steering Committee, Environment Australia, July 2002, ISBN 0-6425-4856-0.Search in Google Scholar

29. Zimnyakov D. A., Briers J. D. and Tuchin V. V., 2002 - Speckle technologies for monitoring and imaging of tissues and tissuelike phantoms, chapter 18 in Handbook of biomedical diagnostics, Valery V. Tuchin, Ed. SPIE press, Bellingham.Search in Google Scholar

30. Zubcov N., Zubcov E. and Schlenk D., 2008 - The dynamics of metals in fish from Nistru and Prut rivers (Moldova), Transylvanian Review of Systematical and Ecological Research 6 (eds Curtean-Bănăduc A. et al.), 51-58. Search in Google Scholar

ISSN:
1841-7051
Lingua:
Inglese
Frequenza di pubblicazione:
2 volte all'anno
Argomenti della rivista:
Life Sciences, Ecology