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Sonoluminescence emission spectra of a 3.6 MHz HIFU in sweeping mode

Use of sweeping mode with a 3.6 MHz High Intensity Focused Ultrasound (HIFU) allows cavitation activity to be controlled. This is especially true in the pre-focal zone where the high concentration of bubbles acts as an acoustic reflector and quenches cavitation above this area. Previous studies attr...

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Autores principales: Sleiman, Noura, Hallez, Loïc, Pflieger, Rachel, Nikitenko, Sergey I., Hihn, Jean-Yves
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8927739/
https://www.ncbi.nlm.nih.gov/pubmed/35123254
http://dx.doi.org/10.1016/j.ultsonch.2022.105939
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author Sleiman, Noura
Hallez, Loïc
Pflieger, Rachel
Nikitenko, Sergey I.
Hihn, Jean-Yves
author_facet Sleiman, Noura
Hallez, Loïc
Pflieger, Rachel
Nikitenko, Sergey I.
Hihn, Jean-Yves
author_sort Sleiman, Noura
collection PubMed
description Use of sweeping mode with a 3.6 MHz High Intensity Focused Ultrasound (HIFU) allows cavitation activity to be controlled. This is especially true in the pre-focal zone where the high concentration of bubbles acts as an acoustic reflector and quenches cavitation above this area. Previous studies attributed the enhancement of cavitation activity under negative sweep to the activation of more bubble nuclei, requiring deeper investigations. After mapping this activity with SCL measurements, cavitation noise spectra were recorded. The behavior of the acoustic broadband noise follows the sonochemical one i.e., showing the same attenuation (positive scan) or intensification (negative scan) of cavitational activity. In 1 M NaCl 3.7 mM 2-propanol solution saturated by a mixture of Ar-15.5%O(2)-2.2%N(2), intensities of SL spectra are high enough to allow detection of several molecular emissions (OH, NH, C(2), Na) under negative frequency sweeps. This is the first report of molecular emissions at such high frequency. Their intensities are low, and they are very broad, following the trend obtained at fixed frequency up to 1 MHz. Under optimized conditions, CN emission chosen as a spectroscopic probe is strong enough to be simulated, which is reported for the first time at such high frequency. The resulting characteristics of the plasma do not show any spectral difference, so bubble nature is the same in the pre-and post-focal zone under different sweeping parameters. Consequently, SL and SCL intensification was not related to a change in plasma nature inside the bubbles but to the number of cavitation bubbles.
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spelling pubmed-89277392022-03-18 Sonoluminescence emission spectra of a 3.6 MHz HIFU in sweeping mode Sleiman, Noura Hallez, Loïc Pflieger, Rachel Nikitenko, Sergey I. Hihn, Jean-Yves Ultrason Sonochem Short Communication Use of sweeping mode with a 3.6 MHz High Intensity Focused Ultrasound (HIFU) allows cavitation activity to be controlled. This is especially true in the pre-focal zone where the high concentration of bubbles acts as an acoustic reflector and quenches cavitation above this area. Previous studies attributed the enhancement of cavitation activity under negative sweep to the activation of more bubble nuclei, requiring deeper investigations. After mapping this activity with SCL measurements, cavitation noise spectra were recorded. The behavior of the acoustic broadband noise follows the sonochemical one i.e., showing the same attenuation (positive scan) or intensification (negative scan) of cavitational activity. In 1 M NaCl 3.7 mM 2-propanol solution saturated by a mixture of Ar-15.5%O(2)-2.2%N(2), intensities of SL spectra are high enough to allow detection of several molecular emissions (OH, NH, C(2), Na) under negative frequency sweeps. This is the first report of molecular emissions at such high frequency. Their intensities are low, and they are very broad, following the trend obtained at fixed frequency up to 1 MHz. Under optimized conditions, CN emission chosen as a spectroscopic probe is strong enough to be simulated, which is reported for the first time at such high frequency. The resulting characteristics of the plasma do not show any spectral difference, so bubble nature is the same in the pre-and post-focal zone under different sweeping parameters. Consequently, SL and SCL intensification was not related to a change in plasma nature inside the bubbles but to the number of cavitation bubbles. Elsevier 2022-02-01 /pmc/articles/PMC8927739/ /pubmed/35123254 http://dx.doi.org/10.1016/j.ultsonch.2022.105939 Text en © 2022 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Short Communication
Sleiman, Noura
Hallez, Loïc
Pflieger, Rachel
Nikitenko, Sergey I.
Hihn, Jean-Yves
Sonoluminescence emission spectra of a 3.6 MHz HIFU in sweeping mode
title Sonoluminescence emission spectra of a 3.6 MHz HIFU in sweeping mode
title_full Sonoluminescence emission spectra of a 3.6 MHz HIFU in sweeping mode
title_fullStr Sonoluminescence emission spectra of a 3.6 MHz HIFU in sweeping mode
title_full_unstemmed Sonoluminescence emission spectra of a 3.6 MHz HIFU in sweeping mode
title_short Sonoluminescence emission spectra of a 3.6 MHz HIFU in sweeping mode
title_sort sonoluminescence emission spectra of a 3.6 mhz hifu in sweeping mode
topic Short Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8927739/
https://www.ncbi.nlm.nih.gov/pubmed/35123254
http://dx.doi.org/10.1016/j.ultsonch.2022.105939
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