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Original Articles

Rapid bioaerosol detection by measuring circular intensity differential scattering (CIDS) from single flowing through particle

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Pages 91-98 | Received 23 Aug 2023, Accepted 29 Oct 2023, Published online: 27 Nov 2023

References

  • Ashraf, M. W., R. Ranjan, and A. Diaspro. 2021. Circular intensity differential scattering of light to characterize the coronavirus particles. J. Opt. Soc. Am. B 38 (5):1702–9. doi:10.1364/JOSAB.422646.
  • Bickel, W. S., and M. E. Stafford. 1981. Polarized light scattering from biological systems: A technique for cell differentiation. J. Biol. Phys. 9 (2):53–66. doi:10.1007/BF01987283.
  • Bickel, W. S., and M. E. Stafford. 1996. Polarized scattered light as a probe for structure and change in bioparticles. In Ultrasensitive biochemical diagnostics, Vol. 2680, ed. G. E. Cohn, S. A. Soper, and S. H. W. Chen, 4–15. New York: SPIE.
  • Bickel, W. S., J. F. Davidson, D. R. Huffman, and R. Kilkson. 1976. Application of polarization effects in light-scattering - new biophysical tool. Proc. Natl. Acad. Sci. U S A 73 (2) (2):486–90. doi:10.1073/pnas.73.2.486.
  • Boreisho, A. S., M. A. Konyaev, and A. E. Orlov. 2022. Measuring the atmospheric boundary layer parameters with a coherent doppler lidar. Russ. Meteorol. Hydrol. 47 (12):931–7. doi:10.3103/S1068373922120044.
  • Bustamante, C., M. F. Maestre, and I. Tinoco. 1980. Circular intensity differential scattering of light by helical structures.1. Theory. J. Chem. Phys. 73 (9):4273–81. doi:10.1063/1.440709.
  • Cox, D. M., and S. A. Barnett. 2023. A method for time-resolved characterization of polarization-induced solid oxide cell microstructure evolution. J. Electrochem. Soc. 170 (2):024514. doi:10.1149/1945-7111/acbb30.
  • Diaspro, A., M. Bertolotto, L. Vergani, and C. Nicolini. 1991. Polarized-light scattering of nucleosomes and polynucleosomes - insitu and invitro studies. IEEE Trans. Biomed. Eng. 38 (7):670–8. doi:10.1109/10.83568.
  • Dorman, B. P., and M. F. Maestre. 1973. Experimental differential light-scattering correction to circular-dichroism of bacteriophage t2. Proc. Natl. Acad. Sci. U S A 70 (1):255–9. doi:10.1073/pnas.70.1.255.
  • Fernandes, G. E., Y. L. Pan, R. K. Chang, K. Aptowicz, and R. G. Pinnick. 2006. Simultaneous forward- and backward-hemisphere elastic-light-scattering patterns of respirable-size aerosols. Opt. Lett. 31 (20):3034–6. doi:10.1364/ol.31.003034.
  • Gassó, S., and K. D. Knobelspiesse. 2022. Circular polarization in atmospheric aerosols. Atmos. Chem. Phys. 22 (20):13581–605. doi:10.5194/acp-22-13581-2022.
  • Gross, C. T., H. Salamon, A. J. Hunt, R. I. Macey, F. Orme, and A. T. Quintanilha. 1991. Hemoglobin polymerization in sickle cells studied by circular polarized-light scattering. Biochim. Biophys. Acta 1079 (2):152–60. doi:10.1016/0167-4838(91)90120-o.
  • Hunt, A. J., and D. R. Huffman. 1973. New polarization-modulated light-scattering instrument. Rev. Sci. Instrum. 44 (12):1753–62. doi:10.1063/1.1686049.
  • Kaye, P. H., J. E. Barton, E. Hirst, and J. M. Clark. 2000. Simultaneous light scattering and intrinsic fluorescence measurement for the classification of airborne particles. Appl. Opt. 39 (21):3738–45. doi:10.1364/ao.39.003738.
  • Kaye, P. H., W. R. Stanley, E. Hirst, E. V. Foot, K. L. Baxter, and S. J. Barrington. 2005. Single particle multichannel bio-aerosol fluorescence sensor. Opt. Express. 13 (10):3583–93. doi:10.1364/opex.13.003583.
  • Le Gratiet, A., R. Marongiu, and A. Diaspro. 2020. Circular intensity differential scattering for label-free chromatin characterization: A review for optical microscopy. Polymers (Basel) 12 (10):2428. doi:10.3390/polym12102428.
  • Maestre, M. F., C. Bustamante, T. L. Hayes, J. A. Subirana, and I. Tinoco. 1982. Differential scattering of circularly polarized-light by the helical sperm head from the octopus Eledone-cirrhosa. Nature 298 (5876):773–4. doi:10.1038/298773a0.
  • Marongiu, R., A. Le Gratiet, L. Pesce, P. Bianchini, and A. Diaspro. 2020. ExCIDS: A combined approach coupling expansion microscopy (ExM) and circular intensity differential scattering (CIDS) for chromatin-DNA imaging. OSA Continuum 3 (7):1770–80. doi:10.1364/OSAC.388868.
  • Mishchenko, M. I., J. Hovenier, and L. D. Travis, eds. 1999. Light scattering by nonspherical particles: Theory, measurements, and applications. 720. Washington, DC: Academic Press.
  • Mishchenko, M. I., Y. S. Yatskiv, V. K. Rosenbush, and G. Videen, eds. 2011. Polarimetric detection, characterization and remote sensing. In Nato science for peace and security series c: Environmental security, 174–202. The Netharlands: Springer Dordrecht.
  • Nothelfer, S., F. Foschum, and A. Kienle. 2019. Goniometer for determination of the spectrally resolved scattering phase function of suspended particles. Rev. Sci. Instrum. 90 (8):083110–22.
  • Pan, Y. L., A. Kalume, J. Arnold, L. Beresnev, C. J. Wang, D. N. Rivera, K. K. Crown, and J. Santarpia. 2022. Measurement of circular intensity differential scattering (CIDS) from single airborne aerosol particles for bioaerosol detection and identification. Opt. Express. 30 (2):1442–51. doi:10.1364/OE.448288.
  • Pan, Y. L., K. Aptowicz, J. Arnold, S. Cheng, A. Kalume, P. Piedra, C. J. Wang, J. Santarpia, and G. Videen. 2022. Review of elastic light scattering from single aerosol particles and application in bioaerosol detection. J. Quantum Spectrosc. Radiat. Transfer 279:108076–89.
  • Pan, Y. L., K. B. Aptowicz, R. K. Chang, M. Hart, and J. D. Eversole. 2003. Characterizing and monitoring respiratory aerosols by light scattering. Opt. Lett. 28 (8):589–91. doi:10.1364/ol.28.000589.
  • Pan, Y. L., P. Cobler, S. Rhodes, A. Potter, T. Chou, S. Holler, R. K. Chang, R. G. Pinnick, and J. P. Wolf. 2001. High-speed, high-sensitivity aerosol fluorescence spectrum detection using a 32-anode photomultiplier tube detector. Rev. Sci. Instrum. 72 (3):1831–6. doi:10.1063/1.1344179.
  • Pan, Y. L., S. Holler, R. K. Chang, S. C. Hill, R. G. Pinnick, S. Niles, and J. R. Bottiger. 1999. Single-shot fluorescence spectra of individual micrometer-sized bioaerosols illuminated by a 351- or a 266-nm ultraviolet laser. Opt. Lett. 24 (2):116–8. doi:10.1364/ol.24.000116.
  • Patterson, C. W., S. B. Singham, G. C. Salzman, and C. Bustamante. 1986. Circular intensity differential scattering of light by hierarchical molecular-structures. J. Chem. Phys. 84 (3):1916–21. doi:10.1063/1.450441.
  • Piedra, P., A. Kalume, E. Zubko, D. Mackowski, Y. L. Pan, and G. Videen. 2019. Particle-shape classification using light scattering: An exercise in deep learning. J. Quantum Spectrosc. Radiat. Transfer 231:140–56. doi:10.1016/j.jqsrt.2019.04.013.
  • Shapiro, D. B., M. F. Maestre, W. M. McClain, P. G. Hull, Y. Shi, M. S. Quinby-Hunt, J. E. Hearst, and A. J. Hunt. 1994. Determination of the average orientation of DNA in the octopus sperm eledone-cirrhossa through polarized-light scattering. Appl. Opt. 33 (24):5733–44. doi:10.1364/AO.33.005733.
  • Sivaprakasam, V., J. Czege, and J. Eversole. 2013. Wavelength resolved polarized elastic scatter measurements from micron-sized single particles. In SPIE Proceedings. doi:10.1117/12.2016398.
  • Stachelek, P., L. MacKenzie, D. Parker, and R. Pal. 2022. Circularly polarised luminescence laser scanning confocal microscopy to study live cell chiral molecular interactions. Nat. Commun. 13 (1):553. doi:10.1038/s41467-022-28220-z.
  • Surkov, Y., Y. Shkuratov, Y. L. Pan, A. Kalume, J. Santarpia, E. Zubko, Y. X. Hu, and G. Videen. 2023. Light scattering from spiral particles. J. Quantum Spectrosc. Radiat. Transfer 298:108494–501. doi:10.1016/j.jqsrt.2023.108494.
  • Tanre, D., F. M. Breon, J. L. Deuze, O. Dubovik, F. Ducos, P. Francois, P. Goloub, M. Herman, A. Lifermann, and F. Waquet. 2011. Remote sensing of aerosols by using polarized, directional and spectral measurements within the a-train: The parasol mission. Atmos. Meas. Tech. 4 (7):1383–95. doi:10.5194/amt-4-1383-2011.
  • Walters, S., J. Zallie, G. Seymour, Y. L. Pan, G. Videen, and K. B. Aptowicz. 2019. Characterizing the size and absorption of single nonspherical aerosol particles from angularly-resolved elastic light scattering. J. Quantum Spectrosc. Radiat. Transfer 224:439–44. doi:10.1016/j.jqsrt.2018.12.005.
  • Wells, K. S., D. A. Beach, D. Keller, and C. Bustamante. 1986. An analysis of circular intensity differential scattering measurements - studies on the sperm cell of eledone-cirrhosa. Biopolymers 25 (11):2043–64. doi:10.1002/bip.360251103.