Experimental investigation of contrast microbubble destruction
Weijie Shi, Flemming Forsberg, A. Tornes, Jonny Østensen, B.B. Goldberg
Abstract
Weijie Shi, Flemming Forsberg, A. Tornes, Jonny Østensen, B.B. Goldberg
Abstract
The threshold and rate of destruction of Sonazoid and Optison microbubbles insonified by 2-3 MHz imaging pulses have been investigated using a high-resolution 25 MHz active acoustic detector. Almost no microbubbles were destroyed by 2.5 MHz, 4 cycle imaging pulses with acoustic pressures less than 0.6 and 0.4 MPa for Sonazoid and Optison, respectively. Above threshold acoustic pressures the destruction rate of Sonazoid correlated well (r=0.97) with time-averaged acoustic intensity but poorly (r=0.06) with mechanical index, indicating that time-averaged acoustic intensity can be used as an index for accurately predicting the destruction rate of contrast microbubbles.
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The threshold and rate of destruction of Sonazoid and Optison microbubbles insonified by 2-3 MHz imaging pulses have been investigated using a high-resolution 25 MHz active acoustic detector. Almost no microbubbles were destroyed by 2.5 MHz, 4 cycle imaging pulses with acoustic pressures less than 0.6 and 0.4 MPa for Sonazoid and Optison, respectively. Above threshold acoustic pressures the destruction rate of Sonazoid correlated well (r=0.97) with time-averaged acoustic intensity but poorly (r=0.06) with mechanical index, indicating that time-averaged acoustic intensity can be used as an index for accurately predicting the destruction rate of contrast microbubbles.
Key concepts: Microbubbles, Mechanical index, Materials science, Contrast (vision), Intensity (physics), Acoustics, Detector, Ultrasound