Experimental evaluation of the ultrasound radiation intensity of medical equipment based on the analysis of the sizes of equilibrium gas bubbles in a liquid


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Abstract

A technique for evaluating the ultrasound-radiation intensity of medical equipment in continuous, pulse, and focused modes at any spatial point, which is based on the influence of the ultrasonic-wave radiation pressure force on small targets in the form of a set of gas bubbles in a liquid, is substantiated theoretically and a device is proposed. The results of the implementation of the developed technique for evaluating the intensity of therapeutic equipment are presented.

About the authors

O. V. Muravieva

Kalashnikov Izhevsk State Technical University

Author for correspondence.
Email: pmkk@istu.ru
Russian Federation, ul. Studencheskaya 7, Izhevsk, 426069

O. P. Bogdan

Kalashnikov Izhevsk State Technical University

Email: pmkk@istu.ru
Russian Federation, ul. Studencheskaya 7, Izhevsk, 426069

D. V. Zlobin

Kalashnikov Izhevsk State Technical University

Email: pmkk@istu.ru
Russian Federation, ul. Studencheskaya 7, Izhevsk, 426069

V. N. Milich

Physicotechnical Institute, Ural Branch

Email: pmkk@istu.ru
Russian Federation, ul. Kirova 132, Izhevsk, 426000

S. I. Maslennikov

Physicotechnical Institute, Ural Branch

Email: pmkk@istu.ru
Russian Federation, ul. Kirova 132, Izhevsk, 426000

Yu. S. Dudina

Kalashnikov Izhevsk State Technical University

Email: pmkk@istu.ru
Russian Federation, ul. Studencheskaya 7, Izhevsk, 426069

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