D. Ahmed, A. Ozcelik, N. Bojanala, N. Nama, A. Upadhyay et al., Rotational manipulation of single cells and organisms using acoustic waves, Nature communications, vol.7, 2016.

A. V. Alexandrov, C. A. Molina, J. C. Grotta, Z. Garami, S. R. Ford et al., Ultrasound-enhanced systemic thrombolysis for acute ischemic stroke, New England Journal of Medicine, vol.351, pp.2170-2178, 2004.

R. E. , Sonic effervescence: A tutorial on acoustic cavitation, The Journal of the Acoustical Society of America, vol.101, pp.1227-1237, 1997.

T. Barbat, N. Ashgriz, and C. Liu, Dynamics of two interacting bubbles in an acoustic field, Journal of Fluid Mechanics, vol.389, pp.137-168, 1999.

R. Ben-haj, B. Slama, M. B. Gilles, J. C. Chiekh, and . Béra, PIV for the characterization of focused field induced acoustic streaming: seeding particle choice evaluation, Ultrasonics, vol.76, pp.217-226, 2017.

T. B. Benjamin and A. T. Ellis, Self-propulsion of asymmetrically vibrating bubbles, Journal of Fluid Mechanics, vol.212, pp.65-80, 1990.

N. Bertin, T. A. Spelman, O. Stephan, L. Gredy, M. Bouriau et al., Propulsion of bubble-based acoustic microswimmers, Physical Review Applied, vol.4, p.64012, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01391621

V. Bjerknes, Fields of force, 1906.

F. G. Blake, Bjerknes forces in stationary sound fields, The Journal of the Acoustical Society of America, vol.21, pp.551-551, 1949.

M. P. Brenner, D. Lohse, and T. F. Dupont, Bubble shape oscillations and the onset of sonoluminescence, Physical Review Letters, vol.75, p.954, 1995.

K. Byun and H. Kwak, A model of laser-induced cavitation, Japanese journal of applied physics, vol.43, p.621, 2004.

C. Cairós and R. Mettin, Simultaneous high-speed recording of sonoluminescence and bubble dynamics in multibubble fields, Physical review letters, vol.118, p.64301, 2017.

R. V. Chaudhari and H. Hofmann, Coalescence of gas bubbles in liquids, In: Reviews in Chemical Engineering, vol.10, pp.131-190, 1994.

H. Chen, A. A. Brayman, W. Kreider, M. R. Bailey, and T. J. Matula, Observations of translation and jetting of ultrasound-activated microbubbles in mesenteric microvessels, Ultrasound in medicine & biology, vol.37, pp.2139-2148, 2011.

H. Chen, W. Kreider, A. A. Brayman, M. R. Bailey, and T. J. Matula, Blood vessel deformations on microsecond time scales by ultrasonic cavitation, Physical review letters, vol.106, p.34301, 2011.

A. K. Chesters and G. Hofman, Bubble coalescence in pure liquids, Mechanics and Physics of Bubbles in Liquids, pp.353-361, 1982.

J. Chomas, P. Dayton, D. May, and K. Ferrara, Nondestructive subharmonic imaging, IEEE transactions on ultrasonics, ferroelectrics, and frequency control, vol.49, pp.883-892, 2002.

A. J. Coleman, J. E. Saunders, L. A. Crum, and M. Dyson, Acoustic cavitation generated by an extracorporeal shockwave lithotripter, Ultrasound in Medicine & Biology, vol.13, pp.69-76, 1987.

J. Collis, R. Manasseh, P. Liovic, P. Tho, A. Ooi et al., Cavitation microstreaming and stress fields created by microbubbles, Ultrasonics, vol.50, pp.273-279, 2010.

C. C. Coussios and R. A. Roy, Applications of acoustics and cavitation to noninvasive therapy and drug delivery, Annual Review of Fluid Mechanics, vol.40, pp.395-420, 2008.

O. Couture, J. Aubry, M. Tanter, and M. Fink, Time-reversal focusing of therapeutic ultrasound on targeted microbubbles, Applied Physics Letters, vol.94, p.173901, 2009.

L. A. Crum, Bjerknes forces on bubbles in a stationary sound field, The Journal of the Acoustical Society of America, vol.57, pp.1363-1370, 1975.

L. A. Crum, Acoustic cavitation series: part five rectified diffusion, Ultrasonics, vol.22, pp.215-223, 1984.

D. Cunningham, W. H. Allum, S. P. Stenning, J. N. Thompson, C. J. Van-de-velde et al., Perioperative chemotherapy versus surgery alone for resectable gastroesophageal cancer, New England Journal of Medicine, vol.355, issue.1, pp.11-20, 2006.

B. J. Davidson and N. Riley, Cavitation microstreaming, Journal of Sound and Vibration, vol.15, pp.217-233, 1971.

A. Delalande, S. Kotopoulis, M. Postema, P. Midoux, and C. Pichon, Sonoporation: mechanistic insights and ongoing challenges for gene transfer, Gene 525, vol.2, pp.191-199, 2013.
URL : https://hal.archives-ouvertes.fr/hal-02070788

A. A. Doinikov, Translational motion of two interacting bubbles in a strong acoustic field, Physical Review E, vol.64, p.26301, 2001.

A. A. Doinikov, Translational motion of a spherical bubble in an acoustic standing wave of high intensity, Physics of Fluids, pp.1420-1425, 2002.

A. A. Doinikov, Translational motion of a bubble undergoing shape oscillations, Journal of Fluid Mechanics, vol.501, pp.1-24, 2004.

A. A. Doinikov and A. Bouakaz, Acoustic microstreaming around a gas bubble, The Journal of the Acoustical Society of America, vol.127, pp.703-709, 2010.

A. A. Doinikov and A. Bouakaz, Acoustic microstreaming around an encapsulated particle, The Journal of the Acoustical Society of America, vol.127, pp.1218-1227, 2010.

A. A. Doinikov and A. Bouakaz, Effect of a distant rigid wall on microstreaming generated by an acoustically driven gas bubble, Journal of Fluid Mechanics, vol.742, pp.425-445, 2014.

P. C. Duineveld, Bouncing and coalescence of two bubbles in pure water, IUTAM Symposium on Waves in Liquid/Gas and Liquid/Vapour Two-Phase Systems, pp.151-160, 1995.

P. C. Duineveld, The influence of an applied sound field on bubble coalescence, The Journal of the Acoustical Society of America, vol.99, pp.622-624, 1996.

C. Eckart, Vortices and streams caused by sound waves, Physical review, vol.73, p.68, 1948.

S. A. Elder, Cavitation microstreaming, The Journal of the Acoustical Society of America, vol.31, pp.54-64, 1959.

A. I. Eller, Force on a bubble in a standing acoustic wave, The Journal of the Acoustical Society of America, vol.43, pp.170-171, 1968.

A. I. Eller and L. A. Crum, Instability of the motion of a pulsating bubble in a sound field, The Journal of the Acoustical Society of America, vol.47, pp.762-767, 1970.

A. I. Eller and H. Flynn, Rectified diffusion during nonlinear pulsations of cavitation bubbles, The Journal of the Acoustical Society of America, vol.37, pp.493-503, 1965.

Z. C. Feng and L. G. Leal, Translational instability of a bubble undergoing shape oscillations, Physics of Fluids, vol.7, pp.1325-1336, 1995.

K. Ferrara, R. Pollard, and M. Borden, Ultrasound microbubble contrast agents: fundamentals and application to gene and drug delivery, Annu. Rev. Biomed. Eng, vol.9, pp.415-447, 2007.

S. W. Fong, D. Adhikari, E. Klaseboer, and B. C. Khoo, Interactions of multiple sparkgenerated bubbles with phase differences, Experiments in fluids, vol.46, pp.705-724, 2009.

A. Francescutto and R. Nabergoj, Pulsation amplitude threshold for surface waves on oscillating bubbles, Acta Acustica united with Acustica, vol.41, pp.215-220, 1978.

M. M. Fyrillas and A. J. Szeri, Dissolution or growth of soluble spherical oscillating bubbles, Journal of Fluid Mechanics, vol.277, pp.381-407, 1994.

B. Gerold, P. Glynne-jones, C. Mcdougall, D. Mcgloin, S. Cochran et al.,

P. , Directed jetting from collapsing cavities exposed to focused ultrasound, Applied Physics Letters, vol.100, p.24104, 2012.

G. Gormley and J. Wu, Observation of acoustic streaming near Albunex R spheres, The Journal of the Acoustical Society of America, vol.104, pp.3115-3118, 1998.

R. K. Gould, Rectified diffusion in the presence of, and absence of, acoustic streaming, The Journal of the Acoustical Society of America, vol.56, pp.1740-1746, 1974.

M. Guédra and C. Inserra, Bubble shape oscillations of finite amplitude, Journal of Fluid Mechanics, vol.857, pp.681-703, 2018.

M. Guédra, C. Inserra, C. Mauger, and B. Gilles, Experimental evidence of nonlinear mode coupling between spherical and nonspherical oscillations of microbubbles, Physical Review E, vol.94, p.53115, 2016.

D. Hanahan and R. A. Weinberg, The hallmarks of cancer, In: cell, vol.100, pp.57-70, 2000.

D. Hanahan and R. A. Weinberg, Hallmarks of cancer: the next generation, In: cell, vol.144, pp.646-674, 2011.

D. Hsieh and M. S. Plesset, Theory of rectified diffusion of mass into gas bubbles, The Journal of the Acoustical Society of America, vol.33, pp.206-215, 1961.

C. Hullin, The stability of pulsating air-bubbles in water, Acta Acustica united with Acustica, vol.37, pp.64-73, 1977.

K. Hynynen, N. Mcdannold, N. Vykhodtseva, and F. A. Jolesz, Noninvasive MR imaging-guided focal opening of the blood-brain barrier in rabbits, Radiology, vol.220, pp.640-646, 2001.

T. Ilovitsh, A. Ilovitsh, J. Foiret, C. F. Caskey, J. Kusunose et al., Enhanced microbubble contrast agent oscillation following 250 kHz insonation, Scientific reports, vol.8, p.16347, 2018.

J. Jiao, Y. He, T. Leong, S. E. Kentish, M. Ashokkumar et al., Experimental and theoretical studies on the movements of two bubbles in an acoustic standing wave field, The Journal of Physical Chemistry B, vol.117, pp.12549-12555, 2013.

J. Jiao, Y. He, K. Yasui, S. E. Kentish, M. Ashokkumar et al., Influence of acoustic pressure and bubble sizes on the coalescence of two contacting bubbles in an acoustic field, Ultrasonics Sonochemistry, vol.22, pp.70-77, 2015.

J. B. Keller and M. Miksis, Bubble oscillations of large amplitude, The Journal of the Acoustical Society of America, vol.68, pp.628-633, 1980.

V. A. Khokhlova, J. B. Fowlkes, W. W. Roberts, G. R. Schade, Z. Xu et al., Histotripsy methods in mechanical disintegration of tissue: towards clinical applications, International Journal of Hyperthermia, vol.31, pp.145-162, 2015.

J. Kolb and W. L. Nyborg, Small-Scale Acoustic Streaming Effects in Liquids, The Journal of the Acoustical Society of America, vol.26, pp.1237-1242, 1956.

M. Kornfeld and L. Suvorov, On the destructive action of cavitation, Journal of Applied Physics, vol.15, pp.495-506, 1944.

H. Lamb, Hydrodynamics". In: Aufl, vol.427, 1932.

M. Lanoy, C. Derec, A. Tourin, and V. Leroy, Manipulating bubbles with secondary Bjerknes forces, Applied Physics Letters, vol.107, p.214101, 2015.

W. Lauterborn, Numerical investigation of nonlinear oscillations of gas bubbles in liquids, The Journal of the Acoustical Society of America, vol.59, pp.283-293, 1976.

W. Lauterborn and T. Kurz, Physics of bubble oscillations, Reports On Progress in Physics, vol.73, p.106501, 2010.

C. P. Lee and T. G. Wang, Outer acoustic streaming, The Journal of the Acoustical Society of America, vol.88, pp.2367-2375, 1990.

T. G. Leighton, Derivation of the Rayleigh-Plesset equation in terms of volume, 2007.

T. G. Leighton, A. J. Walton, and M. J. Pickworth, Primary bjerknes forces, European Journal of Physics, vol.11, p.47, 1990.

I. Lentacker, I. De-cock, R. Deckers, S. D. Smedt, and C. Moonen, Understanding ultrasound induced sonoporation: definitions and underlying mechanisms, Advanced drug delivery reviews, vol.72, pp.49-64, 2014.

J. , Acoustic streaming, Journal of sound and vibration, vol.61, pp.391-418, 1978.

J. R. Lindner, Microbubbles in medical imaging: current applications and future directions, Nature Reviews Drug Discovery, vol.3, pp.527-533, 2004.

N. Lipsman, Y. Meng, A. J. Bethune, Y. Huang, B. Lam et al., Blood-brain barrier opening in Alzheimer's disease using MR-guided focused ultrasound, Nature communications, vol.9, p.2336, 2018.

R. H. Liu, J. Yang, M. Z. Pindera, M. Athavale, and P. Grodzinski, Bubble-induced acoustic micromixing, Lab on a Chip, vol.2, issue.3, pp.151-157, 2002.

M. S. Longuet-higgins, Viscous streaming from an oscillating spherical bubble, Proceedings of the Royal Society of London A: Mathematical, Physical and Engineering Sciences, vol.454, pp.725-742, 1970.

A. Maksimov, Viscous streaming from surface waves on the wall of acoustically-driven gas bubbles, European Journal of Mechanics-B/Fluids, vol.26, pp.28-42, 2007.

A. Maksimov and T. Leighton, Pattern formation on the surface of a bubble driven by an acoustic field, Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences, vol.468, pp.57-75, 2011.

P. Marmottant and S. Hilgenfeldt, Controlled vesicle deformation and lysis by single oscillating bubbles, Nature, vol.423, pp.153-156, 2003.

P. Marmottant, J. Raven, H. Gardeniers, J. Bomer, and S. Hilgenfeldt, Microfluidics with ultrasound-driven bubbles, Journal of Fluid Mechanics, vol.568, pp.109-118, 2006.

R. Mettin and A. A. Doinikov, Translational instability of a spherical bubble in a standing ultrasound wave, Applied Acoustics, vol.70, pp.1330-1339, 2009.

M. Minnaert, On musical air-bubbles and the sounds of running water, The London, vol.16, pp.235-248, 1933.

C. A. Molina, M. Ribo, M. Rubiera, J. Montaner, E. Santamarina et al., Microbubble administration accelerates clot lysis during continuous 2-MHz ultrasound monitoring in stroke patients treated with intravenous tissue plasminogen activator, Stroke, vol.37, issue.2, pp.425-429, 2006.

G. Mychaskiw, A. E. Badr, R. Tibbs, B. R. Clower, and J. H. Zhang, Optison (FS069) disrupts the blood-brain barrier in rats, Anesthesia & Analgesia 91, vol.4, pp.798-803, 2000.

E. A. Neppiras and B. E. Noltingk, Cavitation produced by ultrasonics: theoretical conditions for the onset of cavitation, Proceedings of the Physical Society. Section B, vol.64, p.1032, 1951.

B. E. Noltingk and E. A. Neppiras, Cavitation produced by ultrasonics, Proceedings of the Physical Society. Section B, vol.63, p.674, 1950.

T. Nowak and R. Mettin, Unsteady translation and repetitive jetting of acoustic cavitation bubbles, Physical Review E, vol.90, p.33016, 2014.

W. L. Nyborg, Acoustic streaming near a boundary, The Journal of the Acoustical Society of America, vol.30, pp.329-339, 1958.

D. Obreschkow, M. Tinguely, N. Dorsaz, P. Kobel, A. Bosset et al., The quest for the most spherical bubble: experimental setup and data overview, Experiments in Fluids, vol.54, p.1503, 2013.

C. Ohl and R. Ikink, Shock-wave-induced jetting of micron-size bubbles, Physical review letters 90, vol.21, p.214502, 2003.

C. Ohl, M. Arora, R. Ikink, N. Jong, M. Versluis et al., Sonoporation from jetting cavitation bubbles, Biophysical journal, vol.91, issue.11, pp.4285-4295, 2006.

C. Ohl, T. Kurz, R. Geisler, O. Lindau, and W. Lauterborn, Bubble dynamics, shock waves and sonoluminescence, Philosophical Transactions of the Royal Society

, London. Series A: Mathematical, Physical and Engineering Sciences, vol.357, pp.269-294, 1999.

C. Ohl and B. Wolfrum, Detachment and sonoporation of adherent HeLa-cells by shock wave-induced cavitation, Biochimica et Biophysica Acta (BBA)-General Subjects, vol.1624, pp.131-138, 2003.

M. Pernot, G. Montaldo, M. Tanter, and M. Fink, Ultrasonic stars" for time-reversal focusing using induced cavitation bubbles, Applied Physics Letters, vol.88, issue.3, p.34102, 2006.

Y. A. Pishchalnikov, O. A. Sapozhnikov, M. R. Bailey, J. C. Williams, R. O. Cleveland et al., Cavitation bubble cluster activity in the breakage of kidney stones by lithotripter shockwaves, Journal of endourology, vol.17, pp.435-446, 2003.

M. S. Plesset, The dynamics of cavitation bubbles, Journal of applied mechanics, vol.16, pp.277-282, 1949.

M. S. Plesset, On the stability of fluid flows with spherical symmetry, Journal of Applied Physics, vol.25, pp.96-98, 1954.

H. Poritsky, Proceedings of the First US National Congress on Applied Mechanics". In: Am. Soc. Mech. Eng, 1952.

M. Postema, P. Marmottant, C. T. Lancée, S. Hilgenfeldt, and N. Jong, Ultrasoundinduced microbubble coalescence, Ultrasound in Medicine & Biology, vol.30, pp.1337-1344, 2004.

F. Prabowo and C. Ohl, Surface oscillation and jetting from surface attached acoustic driven bubbles, Ultrasonics sonochemistry, vol.18, pp.431-435, 2011.

P. Prentice, A. Cuschieri, K. Dholakia, M. Prausnitz, and P. Campbell, Membrane disruption by optically controlled microbubble cavitation, Nature physics, vol.1, p.107, 2005.

A. Prosperetti, Bubble phenomena in sould fields: part two, Ultrasonics, vol.22, pp.115-124, 1984.

A. Prosperetti, Viscous effects on perturbed spherical flows, Quarterly of Applied Mathematics, vol.34, pp.339-352, 1977.

A. Prosperetti and Y. Hao, Modelling of spherical gas bubble oscillations and sonoluminescence, Philosophical Transactions of the Royal Society of London A: Mathematical, Physical and Engineering Sciences, vol.357, pp.203-223, 1999.

S. Qin, C. F. Caskey, and K. W. Ferrara, Ultrasound contrast microbubbles in imaging and therapy: physical principles and engineering, Physics in medicine and biology, vol.54, p.27, 2009.

L. Rayleigh, On the circulation of air observed in Kundt's tubes, and on some allied acoustical problems, Philosophical Transactions of the Royal Society of London, vol.175, pp.1-21, 1884.

L. Rayleigh, VIII. On the pressure developed in a liquid during the collapse of a spherical cavity, The London, vol.34, pp.94-98, 1917.

A. J. Reddy and A. J. Szeri, Coupled dynamics of translation and collapse of acoustically driven microbubbles, The Journal of the Acoustical Society of America, vol.112, pp.1346-1352, 2002.

N. Riley, On a sphere oscillating in a viscous fluid, The Quarterly Journal of Mechanics and Applied Mathematics, vol.19, pp.461-472, 1966.

J. Rosselló, W. Lauterborn, M. Koch, T. Wilken, T. Kurz et al., Acoustically induced bubble jets, Physics of Fluids, vol.30, p.122004, 2018.

T. Sanada, A. Sato, M. Shirota, and M. Watanabe, Motion and coalescence of a pair of bubbles rising side by side, Chemical Engineering Science, vol.64, pp.2659-2671, 2009.

T. Sato, M. Tinguely, M. Oizumi, and M. Farhat, Evidence for hydrogen generation in laser-or spark-induced cavitation bubbles, Applied Physics Letters, vol.102, p.74105, 2013.

H. Schlichting, Berechnung ebener periodischer Grenzschichtstromungen, Phys. Z, vol.33, pp.327-335, 1932.

S. J. Shaw, The stability of a bubble in a weakly viscous liquid subject to an acoustic traveling wave, Physics of Fluids, vol.21, p.22104, 2009.

S. J. Shaw and P. D. Spelt, Critical strength of an electric field whereby a bubble can adopt a steady shape, Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences, vol.465, pp.3127-3143, 2009.

S. J. Shaw, Translation and oscillation of a bubble under axisymmetric deformation, Physics of Fluids, vol.18, p.72104, 1994.

S. Shklyaev and A. Straube, Linear oscillations of a compressible hemispherical bubble on a solid substrate, Physics of Fluids, vol.20, p.52102, 2008.

J. H. Song, A. Moldovan, and P. Prentice, Non-linear acoustic emissions from therapeutically driven contrast agent microbubbles, Ultrasound in medicine & biology, 2019.

T. A. Spelman and E. Lauga, Arbitrary axisymmetric steady streaming: flow, force and propulsion, Journal of Engineering Mathematics, vol.105, pp.31-65, 2017.

R. L. Stover, C. W. Tobias, and M. M. Denn, Bubble coalescence dynamics, AIChE journal 43, vol.10, pp.2385-2392, 1997.

H. Strube, Numerische Untersuchungen zur Stabilitat nichtapharisch schwingender Blasen, Acustica, vol.25, pp.289-303, 1971.

A. Thiemann, F. Holsteyns, C. Cairós, and R. Mettin, Sonoluminescence and dynamics of cavitation bubble populations in sulfuric acid, Ultrasonics sonochemistry, vol.34, pp.663-676, 2017.

P. Tho, R. Manasseh, and A. Ooi, Cavitation microstreaming patterns in single and multiple bubble systems, Journal of Fluid Mechanics, vol.576, pp.191-233, 2007.

T. Verraes, F. Lepoint-mullie, T. Lepoint, and M. S. Longuet-higgins, Experimental study of the liquid flow near a single sonoluminescent bubble, The Journal of the Acoustical Society of America, vol.108, pp.117-125, 2000.

M. Versluis, D. E. Goertz, P. Palanchon, I. L. Heitman, S. M. Van-der-meer et al., Microbubble shape oscillations excited through ultrasonic parametric driving, Physical Review E, vol.82, p.26321, 2010.
URL : https://hal.archives-ouvertes.fr/hal-00734978

A. Vogel, J. Noack, K. Nahen, D. Theisen, S. Busch et al., Energy balance of optical breakdown in water at nanosecond to femtosecond time scales, In: Applied Physics B: Lasers and Optics, vol.68, pp.271-280, 1999.

A. Van-wamel, K. Kooiman, M. Harteveld, M. Emmer, J. Folkert et al.,

D. Jong, Vibrating microbubbles poking individual cells: drug transfer into cells via sonoporation, Journal of controlled release, vol.112, issue.2, pp.149-155, 2006.

C. Wang, S. V. Jalikop, and S. Hilgenfeldt, Size-sensitive sorting of microparticles through control of flow geometry, Applied Physics Letters, vol.99, p.34101, 2011.

M. Ward, J. Wu, and J. Chiu, Experimental study of the effects of Optison R concentration on sonoporation in vitro, Ultrasound in Medicine & Biology, vol.26, pp.1169-1175, 2000.

J. Wu and G. Du, Streaming generated by a bubble in an ultrasound field, The Journal of the Acoustical Society of America, vol.101, pp.1899-1907, 1997.

J. Wu, J. P. Ross, and J. Chiu, Reparable sonoporation generated by microstreaming, The Journal of the Acoustical Society of America, vol.111, pp.1460-1464, 2002.

X. Xi, F. Cegla, R. Mettin, F. Holsteyns, and A. Lippert, Study of non-spherical bubble oscillations near a surface in a weak acoustic standing wave field, The Journal of the Acoustical Society of America, vol.135, pp.1731-1741, 2014.

L. Zarembo, Acoustic streaming, High-intensity ultrasonic fields, pp.135-199, 1971.

Y. Zhang and S. Li, A general approach for rectified mass diffusion of gas bubbles in liquids under acoustic excitation, Journal of Heat Transfer, vol.136, p.42001, 2014.

Y. Zhou, K. Yang, J. Cui, J. Ye, and C. Deng, Controlled permeation of cell membrane by single bubble acoustic cavitation, Journal of controlled release, vol.157, issue.1, p.103, 2012.

S. Cleve, M. Guédra, C. Inserra, C. Mauger, and P. Blanc-benon, Surface modes with controlled axisymmetry triggered by bubble coalescence in a high-amplitude acoustic field, Physical Review E, vol.98, p.33115, 2018.
URL : https://hal.archives-ouvertes.fr/hal-02085848

S. Cleve, M. Guédra, C. Mauger, C. Inserra, and P. Blanc-benon, Microstreaming induced by acoustically trapped, non-spherically oscillating microbubbles, Journal of Fluid Mechanics, vol.875, pp.597-621, 2019.
URL : https://hal.archives-ouvertes.fr/hal-02377829

S. Cleve, M. Guédra, M. Cyril, C. Inserra, and P. Blanc-benon, Experimental investigation of microstreaming induced by free nonspherically oscillating microbubbles, Proceedings of Meetings on Acoustics 21ISNA, vol.34, p.45030, 2018.
URL : https://hal.archives-ouvertes.fr/hal-02096204

S. Cleve, M. Guédra, C. Mauger, C. Inserra, and P. Blanc-benon, A method for triggering surface modes by bubble coalescence, Proceedings of the 10th International Symposium on Cavitation (CAV2018), 2018.
URL : https://hal.archives-ouvertes.fr/hal-02341873

S. Cleve, C. Inserra, and P. Prentice, Contrast Agent Microbubble Jetting during Initial Interaction with 200-kHz Focused Ultrasound, Ultrasound in medicine & biology, vol.45, pp.3075-3080, 2019.

A. A. Doinikov, S. Cleve, G. Regnault, C. Mauger, and C. Inserra, Acoustic microstreaming produced by nonspherical oscillations of a gas bubble. I. Case of modes 0 and m, Physical Review E, vol.100, p.33104, 2019.
URL : https://hal.archives-ouvertes.fr/hal-02378972

A. A. Doinikov, S. Cleve, G. Regnault, C. Mauger, and C. Inserra, Acoustic microstreaming produced by nonspherical oscillations of a gas bubble. II. Case of modes 1 and m, Physical Review E, vol.100, p.33105, 2019.
URL : https://hal.archives-ouvertes.fr/hal-02378972

M. Guédra, S. Cleve, C. Mauger, P. Blanc-benon, and C. Inserra, Dynamics of nonspherical microbubble oscillations above instability threshold, Physical Review E, vol.96, p.63104, 2017.