Title :
Experimental and theoretical evaluation of microbubble behavior: effect of transmitted phase and bubble size
Author :
Morgan, Karen E. ; Allen, John S. ; Dayton, Paul A. ; Chomas, James E. ; Klibaov, A.L. ; Ferrara, Katherine W.
Author_Institution :
Dept. of Biomed Eng., Virginia Univ., Charlottesville, VA, USA
Abstract :
Ultrasound contrast agents provide new opportunities to image vascular volume and flow rate directly. To accomplish this goal, new pulse sequences can be developed to detect specifically the presence of a microbubble or group of microbubbles. We consider a new scheme to detect the presence of contrast agents in the body by examining the effect of transmitted phase on the received echoes from single bubbles. In this study, three tools are uniquely combined to aid in the understanding of the effects of transmission parameters and bubble radius on the received echo. These tools allow for optical measurement of radial oscillations of single bubbles during insonation, acoustical study of echoes from single contrast agent bubbles, and the comparison of these experimental observations with theoretical predictions. A modified Herring equation with shell terms is solved for the time-dependent bubble radius and wall velocity, and these outputs are used to formulate the predicted echo from a single encapsulated bubble. The model is validated by direct comparison of the predicted radial oscillations with those measured optically. The transient bubble response is evaluated with a transducer excitation consisting of one-cycle pulses with a center frequency of 2.4-MHz. The experimental and theoretical results are in good agreement and predict that the transmission of two pulses with opposite polarity will yield similar time domain echoes with the first significant portion of the echo generated when the rarefactional half-cycle reaches the bubble.
Keywords :
biomedical ultrasonics; blood flow measurement; bubbles; transient response; 2.4 MHz; bubble echoes; bubble size effect; flow rate imaging; linear resonance size; mean frequency shift; microbubble behavior; modified Herring equation; optical measurement; pulse sequences; radial oscillations; time-dependent bubble radius; transient bubble response; transmitted phase effect; ultrasound contrast agents; vascular volume imaging; wall velocity; Acoustic measurements; Equations; Frequency; Optical pulse generation; Optical pulses; Phase detection; Predictive models; Pulse generation; Transducers; Ultrasonic imaging;
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on