Application of pulsed acoustic microscopy for studying chitosan-based biocomposite sponges

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Resumo

We proposed a method for local assessment of acoustic properties in spongy polymer samples, based on visualizing the microstructure, measuring attenuation, and sound velocity. This approach is relevant to the study of biopolymer composite materials and their structures, as it allows for in situ observation of structural degradation under external influences, as well as investigation of the evolution of native tissue replacement, if necessary.

Sobre autores

Y. Petronyuk

Emanuel Institute of Biochemical Physics of Russian Academy of Sciences

Email: jps7@mail.ru
Moscow, Russia

E. Khramtsova

Emanuel Institute of Biochemical Physics of Russian Academy of Sciences

Moscow, Russia

K. Antipova

National Research Centre “Kurchatov Institute”

Email: email@example.com
Moscow, Russia

S. Vasilyeva

Lomonosov Moscow State University

Moscow, Russia

A. Bogachenkov

Emanuel Institute of Biochemical Physics of Russian Academy of Sciences

Moscow, Russia

A. Solovchenko

Lomonosov Moscow State University

Moscow, Russia

T. Grigoriev

National Research Centre “Kurchatov Institute”; Institute of Organoelement Compounds of the Russian Academy of Sciences

Moscow, Russia; Moscow, Russia

Bibliografia

  1. Peluso G., Petillo O., Ranieri M. et al. // Biomaterials. 1994. V. 15. P. 1215.
  2. Магомедов К.Э., Омельянчик А.С., Воронцов С.А. и др. // Изв. РАН. Сер. физ. 2023. Т. 87. № 6. С. 819
  3. Magomedov K.E., Omelyanchik A.S., Vorontsov S.A. et al. // Bull. Russ. Acad. Sci. Phys. 2023. V. 87. No. 6. P. 720.
  4. Fiebrig I., Harding S.E., Stokke B.T. et al. // Eur. J. Pharm. Sci. 1994. V. 2. P. 185.
  5. Grzybek P., Jakubski Ł., Dudek G. // Int. J. Mol. Sci. 2022. V. 23. Art. No. 9932.
  6. Wujcicki Ł., Kluczka J. // Int. J. Mol. Sci. 2023. V. 24. Art. No. 12060.
  7. Wujcicki Ł., Mandok T., Budzinska–Lipka W. et al. // Sci. Reports. 2023. V. 13. Art. No. 13049.
  8. Vasilieva S., Lukyanov A., Antipova C. et al. // Int. J. Mol. Sci. 2023. V. 24. No. 13. Art. No. 10988.
  9. Kluczka J. // Int. J. Mol. Sci. 2024. V. 25. P. 554.
  10. Kluczka J. // Polymers. 2020. V. 12. Art. No. 635.
  11. Lingait D., Rahagude R., Gaharwar S.S. et al. // Int. J. Biol. Macromol. 2024. V. 257. Art. No. 128676.
  12. Briggs A., Kolosov O. Acoustic microscopy. Oxford University Press, 2009. 380 p.
  13. Yu H. // Appl. Microscopy. 2020. V. 50. No. 25. P. 3.
  14. Zakutailov K.V., Levin V.M., Petronyuk Y.S. // Inorg. Mater. 2010. V. 46. No. 15. P. 655.
  15. Anastasiadis P., Zinin P. // Open Neuroimag. J. 2018. V. 12. P. 69.
  16. Levin V., Petronyuk Y., Morokov E. et al. // Phys. Stat. Sol. B. 2016. V. 253. P. 1952.
  17. Петронюк Ю.С., Мороков Е.С., Левин В.М. // Изв. РАН. Сер. физ. 2015. Т. 79. № 10. С. 1425
  18. Petronyuk Y.S., Morokov E.S., Levin V.M. // Bull. Russ. Acad. Sci. Phys. 2015. V. 79. No. 10. P. 1268.
  19. Петронюк Ю.С., Рыжова Т.Б., Левин В.М. // Изв. РАН. Сер. физ. 2022. Т. 86. № 1. С. 110
  20. Petronyuk Y.S., Levin V.M., Ryzhova T.B. // Bull. Russ. Acad. Sci. Phys. 2022. V. 86. No. 1. P. 74.
  21. Khramtsova E., Morokov E., Antipova C. et al. // Polymers. 2022. V. 14. No. 17. Art. No. 3526.
  22. Ngwa W., Luo W., Kamanyi A. et al. // J. Microscopy. 2005. V. 218. No. 3. P. 208.
  23. Hozumi N., Yoshida S., Kobayashi K. // Ultrasonics. 2019. V. 99. Art. No. 105966.
  24. Kim E.V., Petronyuk Y.S., Guseynov N.A. et al. // Bull. Exp. Bio. Med. 2021. V. 170. No. 3. P. 356.
  25. Петронюк Ю.С., Трофимова Н.Н., Зак П.П. и др. // Хим. физика. 2022. Т. 41. № 2. С. 27.
  26. Ruland A., Chen X., Khansari A. et al. // Soft Matter. 2018. V. 14. No. 35. P. 7228.
  27. Куликова О.Р., Храмцова Е.А., Антипова К.Г. и др. // Биомедицина. 2021. T. 17. № 3E. C. 42.
  28. Мэзон У. Физическая акустика. Т. 1. Методы и приборы ультразвуковых исследований. М.: Мир, 1966. 592 с.
  29. Salzer R. Biomedical imaging: principles and applications. John Wiley & Sons Inc., 2012. 441 p.
  30. Петронюк Ю.С., Титов С.А., Богаченков А.Н. и др. // Изв. РАН. Сер. физ. 2023. Т. 87. № 1. С. 84
  31. Petronyuk Y.S., Titov S.A., Bogachenkov A.N. et al. // Bull. Russ. Acad. Sci. Phys. 2023. V. 87. No. 1. P. 70.
  32. Petronyuk Y.S., Levin V.M., Titov S.A. // Phys. Procedia. 2015. V. 70. P. 626.
  33. Titov S.A., Levin V.M., Petronyuk Y.S. // Acoust. Phys. 2017. V. 63. No. 6. P. 744.
  34. Vasilieva S., Lobakova E., Grigoriev T. et al. // J. Water Proc. Engin. 2021. V. 40. Art. No. 101774.

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