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J.Sports Med. 2003. Vol. 31. P. 268275.31. Gerdesmeyer L., Wagenpfeil S., Haake M., Maier M., Loew M., W örtler K., Lampe R.,Seil R., Handle G. et al.//2003. Vol. 290. P. 25732580.32. Furia J.//. 2005. Vol. 34. Pp. 1319.33. Rompe J.//2004. Vol. 32. P. 734743.34. Shah A., Owen N., Lu W., Cunitz B., Kaczkowski P., Harper J., Bailey M., Crum L.//. 2010. Vol. 38, no. 6.Extracorporeal shock wave therapy for the treatment of chroniccalcifying tendonitis of the rotator cu: a randomized controlled trial JAMA-J. Am.Med. Assoc.Safety and ecacy of extracorporeal shock wave therapy for chronic lateral epicondylitis Am.
J. Orthop. (Belle Mead, NJ)Repetitive low-energy shock wave treatment for chronic lateral epicondylitis intennis players Am. J. Sports Med.Novelultrasound method to reposition kidney stones Urological Research11735.36.37.38.39.40.41.42.43.44.45.46.47.48.Pp. 491495.Shah A., Harper J., Cunitz B., Wang Y.-N., Paun M., Simon J., Lu W., Kaczkowski P.,Bailey M. Focused ultrasound to expel calculi from the kidney // The Journal of Urology.2012. Vol. 187. Pp.
739743.Kreider W., Yuldashev P., Sapozhnikov O., Farr N., Partanen A., Bailey M., Khokhlova V.Characterization of a multi-element clinical HIFU system using acoustic holography andnonlinear modeling // IEEE Transactions on Ultrasonics, Ferroelectrics, and FrequencyControl. 2013. Vol. 60, no. 8.
Pp. 16831698.Canney M., Bailey M., Crum L., Khokhlova V., Sapozhnikov O. Acoustic characterization of high intensity focused ultrasound elds: A combined measurement and modelingapproach // J. Acoust. Soc. Am. 2008. Vol. 124, no. 4. Pp. 24062420.Bessonova O., Wilkens V. Membrane hydrophone measurement and numerical simulationof HIFU elds up to developed shock regimes // IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control .
2013. Vol. 60, no. 2. Pp. 290300.Perez C., Chen H., Matula T., Karzova M., Khokhlova V. Acoustic eld characterizationof the Duolith: Measurements and modeling of a clinical shockwave therapy device // J.Acoust. Soc. Am. 2013. Vol. 134, no. 2. Pp. 16631674.Karzova M., Khokhlova V., Perez C., Matula T. Temporal and spatial characteristics ofnonlinear acoustic eld generated by an extracorporeal shockwave therapy device: modelingand measurements // POMA.
2013. Vol. 19. P. 075100 (5 pages).Karzova M., Cunitz B., Yuldashev P., Andriyakhina Y., Kreider W., Sapozhnikov O., Bailey M., Khokhlova V. Nonlinear eects in ultrasound elds of diagnostic-type transducersused for kidney stone propulsion: Characterization in water // AIP Conf. Proc. Vol. 1685.Lipkens B., Blackstock D. Model experiment to study sonic boom propagation throughturbulence. Part I: Model experiment and general results // J. Acoust.
Soc. Am. 1998.Vol. 103, no. 1. Pp. 148158.Lipkens B., Blackstock D. Model experiment to study sonic boom propagation throughturbulence. Part II: Eect of turbulence intensity and propagation distance through turbulence // J. Acoust. Soc. Am. 1998. Vol. 104, no. 3 Pt.1. Pp.
13011309.Lipkens B. Model experiment to study sonic boom propagation through turbulence. Part III:Validation of sonic boom propagation models // J. Acoust. Soc. Am. 2002. Vol. 111, no.1 Pt.2. Pp. 509519.Davy B. A., Blackstock D. T. Measurements of the refraction and diraction of a shortN -wave by a gas-lled soap bubble // J. Acoust. Soc. Am. 1971. Vol. 49, no.
3B.Pp. 732737.Blanc-Benon P., Ollivier S., Attenborough K., Qin Q. Laboratory experiments to studyN -waves propagation: eects of turbulence and/or ground roughness // 17th InternationalSymposium on Nonlinear Acoustics, Manchester, UK. Vol. 838. 2005. Pp. 651654.Averiyanov M., Ollivier S., Khokhlova V., Blanc-Benon P. Random focusing of nonlinearacoustic N-waves in fully developed turbulence: Laboratory scale experiment // J. Acoust.Soc. Am. 2011.
Vol. 130, no. 6. Pp. 35953607.Salze E., Yuldashev P., Ollivier S., Khokhlova V., Blanc-Benon P. Laboratory-scale experiment to study nonlinear N -wave distortion by thermal turbulence // J. Acoust. Soc. Am.2014. Vol. 136, no. 2. Pp. 556566.11849. Picaut J., Simon L. A scale model experiment for the study of sound propagation in urbanareas // Appl. Acoust. 2001. Vol. 62, no. 3. Pp. 327340.50. Grillon V., Meynial X., Polack J. What can auralisation in small scale models achieve //Acta Acust. 1996. Vol.
82. Pp. 362364.51. Picaut J., Polles T. L., L'Hermite P., Gary V. Experimental study of sound propagationin a street // Appl. Acoust. 2005. Vol. 66, no. 2. Pp. 149173.52. Wright W. Propagation in air of N -waves produced by sparks // J. Acoust. Soc. Am. 1983.Vol. 73, no. 6. Pp. 19481955.53. Qin Q., Attenborough K. Characteristics and application of laser-generated acoustic shockwaves in air // Appl. Acoust.
2004. Vol. 65, no. 4. Pp. 325340.54. Lee R., Downing J. Sonic Boom produced by United states Navy aircraft: measured data,AL-TR-1991-0099 // Biodynamic Environment Branch, Biodynamics and Bioengenineering Division, Armstrong Laboratory,Wright-Patterson Air Force Base, Ohio . 1991.55.
Maglieri D., Sotchcott V., Keefer T. A summary of XB-70 sonic boom signature data forights during March 1965 through May 1966 // NASA Contracor Report 189630 . 1992.56. Elmer K., Joshi M. Varability of measured sonic boom signatures: volume 1 - technicalreport // NASA Contracor Report 191483 . 1994. Vol. 1.57. Willshire J. W. L., Devilbiss D. Preliminary results from the White Sands Missle Rangesonic boom // High-speed research: sonic boom . 1992. Vol.
1. Pp. 137149.58. Averiyanov M., Blanc-Benon P., Cleveland R., Khokhlova V. Nonlinear and diractioneects in propagation of N-waves in randomly inhomogeneous moving media // J. Acoust.Soc. Am. 2011. Vol. 129, no. 4. Pp. 17601772.59. Fidell S., Silvati L., Pearsons K.
Relative rates of growth of annoyance of impulsive andnon-impulsive noises // J. Acoust. Soc. Am. 2002. Vol. 111, no. 1. Pp. 576585.60. Leatherwood J., Sullivan B. Subjective loudness response to simulated sonic booms //High-Speed Research: Sonic Boom, (SEE N92-33874 24-05). Vol. 1. 1992. Pp. 151170.61. Wright W., McKittrick J. Diraction of spark-produced acoustic impulses // Am.
J. Phys.1967. Vol. 35, no. 2. Pp. 124128.62. Wright W., Medendorp N. Acoustic radiation from a nite line source with N -wave excitation // J. Acoust. Soc. Am. 1968. Vol. 43, no. 5. Pp. 966971.63. Þëäàøåâ Ï.Â., Àâåðüÿíîâ Ì.Â., Õîõëîâà Â.À., Îëëèâüåð Ñ., Áëàí-Áåíîí Ô. Ñôåðè÷åñêè ðàñõîäÿùèåñÿ óäàðíûå èìïóëüñû â íåëèíåéíîé ðåëàêñèðóþùåé ñðåäå // Àêóñò.æóðí. 2008. Ò. 54, 1.
Ñ. 4050.64. Mach E., Salcher P. Photographische xierung der dunch projectile in der luft eingeleitetenVorgange // Sitzungsb. Akad. Wiss. Wien . 1887. Vol. 95. Pp. 764780.65. Settles G. S. Schlieren and shadowgraph techniques: visualizing phenomena in transparentmedia. Springer-Verlag, Heidelberg, 2001.66. Merzkirch W. Flow visualization.
Academic Press, New York and London, 1974.67. Yuldashev P., Averiyanov M., Khokhlova V., Sapozhnikov O., Ollivier S., Blanc-Benon P.Nonlinear propagation of spark-generated N -waves in atmosphere: theoretical and experimental assessment of the shock front structure // Proc. of Acoustics'08 Paris Congress,Paris, 27 June4 July, 2008.
Pp. 565570.68. Yuldashev P., Averiyanov M., Khokhlova V., Sapozhnikov O., Ollivier S., Blanc-Benon P.Measurement of shock N -waves using optical methods // 10eme Congres Francais11969.70.71.72.73.74.75.76.77.78.79.80.81.82.83.84.85.86.87.88.89.90.d'Acoustique, 12-16 avril, 2010, Lyon, CD-ROM.Cowan G., Hornig D.
The experimental determination of the thickness of a shock front ina gas // J. Chem. Phys. 1950. Vol. 18. Pp. 10081018.Greene E., Cowan G., Hornig D. The thickness of shock fronts in argon and nitrogen androtational heat capacity lags // J. Chem. Phys. 1951. Vol. 19. Pp. 427434.Panda J., Adamovsky G. Laser light scattering by shock waves // Phys. Fluids.
1995.Vol. 7. Pp. 22712279.Panda J. Wide angle light scattering in shock-laser interaction // AIAA Journal. 1995.Vol. 33. Pp. 24292431.Mizukaki T. Application of digital phase-shift holographic interferometry to weak shockwaves propagating at Mach 1.007 // Shock Waves. 2010. Vol. 20. Pp. 1927.Smeets G.
Laser interference microphone for ultrasonics and nonlinear acoustics // J.Acoust. Soc. Am. 1977. Vol. 61, no. 3. Pp. 872875.Âàñèëüåâ Ë. À. Òåíåâûå ìåòîäû. Ìîñêâà: Íàóêà, 1968.Bracewell R. N. The Fourier Transform and Its Applications. McGraw-Hill, New York,NY, reprint 2000. Pp. 351353.Brode H. L.
Blast wave from a spherical charge // Phys. of Fluids. 1959. Vol. 2.Pp. 217229.Reed J. W. Atmospheric attenuation of explosion waves // J. Acoust. Soc. Am. 1977.Vol. 61. Pp. 3947.Born M., Wolf E. Principles of Optics. 7th ed., Cambridge University Press, Cambridge,1999.Krehl P., van der Geest M. The discovery of the Mach reection eect and its demonstration in an auditorium // Shock Waves. 1991. Vol. 1, no. 1. Pp.
315.Óèçåì Äæ. Ëèíåéíûå è íåëèíåéíûå âîëíû. Ì.: Ìèð, 1977.Neumann J. V. Oblique reection of shocks. in John von Neumann Collected Work, editedby A.H. Taub (MacMillan, New York, 1963), vol. 6, pp. 238-299.Pierce A. D. Acoustics: an introduction to its physical principles and applications. NewYork: McGraw-Hill Book Co., 1981.Birkho G. A Study in Logic. Fact and Similitude. Princeton University Press, 1950.Skews B., Ashworth J. The physical nature of weak shock wave reection // J. Fluid Mech.2005.














