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Автор Peter Huber
Автор Jürgen Debus
Автор Knut Jöchle
Автор Ioannis Simiantonakis
Автор Jürgen Jenne
Автор Ralf Rastert
Автор Julia Spoo
Автор Walter J Lorenz
Автор Michael Wannenmacher
Дата выпуска 1999-06-01
dc.description The aim of the study was to control the number of inertial cavitation bubbles in the focal area of an electromagnetic lithotripter in water independently of peak intensity, averaged intensity or pressure waveform. To achieve this, the shockwave pulses were applied in double pulse sequences, which were administered at a fixed pulse repetition frequency (PRF) of 0.33 Hz. The two pulses of a double pulse were separated by a variable short pulse separation time (PST) ranging from 200 µs to 1500 ms. The number and size of the cavitation bubbles were monitored by scattered laser light and stroboscopic photographs. We found that the number of inertial cavitation bubbles as a measure of cavitation dose was substantially influenced by variation of the PST, while the pressure pulse waveform, averaged acoustic intensity and bubble size were kept constant. The second pulse of each double pulse generated more cavitation bubbles than the first. At 14 kV capacitor voltage, the total number of cavitation bubbles generated by the double pulses increased with shorter PST down to approximately 400 µs, the cavitation lifespan. The results can be explained by cavitation nuclei generated by the violently imploding inertial cavitation bubbles. This method of pulse administration and cavitation monitoring could be useful to establish a cavitation dose-effect relationship independently of other acoustic parameters.
Формат application.pdf
Издатель Institute of Physics Publishing
Название Control of cavitation activity by different shockwave pulsing regimes
Тип paper
DOI 10.1088/0031-9155/44/6/301
Electronic ISSN 1361-6560
Print ISSN 0031-9155
Журнал Physics in Medicine and Biology
Том 44
Первая страница 1427
Последняя страница 1437
Выпуск 6

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