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Characterization of high intensity focused ultrasound transducers using acoustic streaming
Authors:Hariharan Prasanna  Myers Matthew R  Robinson Ronald A  Maruvada Subha H  Sliwa Jack  Banerjee Rupak K
Affiliation:Division of Solid and Fluid Mechanics, Center for Devices and Radiological Health, US Food and Drug Administration, Silver Spring, Maryland 20993, USA.
Abstract:A new approach for characterizing high intensity focused ultrasound (HIFU) transducers is presented. The technique is based upon the acoustic streaming field generated by absorption of the HIFU beam in a liquid medium. The streaming field is quantified using digital particle image velocimetry, and a numerical algorithm is employed to compute the acoustic intensity field giving rise to the observed streaming field. The method as presented here is applicable to moderate intensity regimes, above the intensities which may be damaging to conventional hydrophones, but below the levels where nonlinear propagation effects are appreciable. Intensity fields and acoustic powers predicted using the streaming method were found to agree within 10% with measurements obtained using hydrophones and radiation force balances. Besides acoustic intensity fields, the streaming technique may be used to determine other important HIFU parameters, such as beam tilt angle or absorption of the propagation medium.
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