Title :
Pulsed Focused Ultrasound-Induced Displacements in Confined In Vitro Blood Clots
Author :
Wright, Cameron C. ; Hynynen, Kullervo ; Goertz, David E.
Author_Institution :
Dept. of Med. Biophys., Univ. of Toronto, Toronto, ON, Canada
fDate :
3/1/2012 12:00:00 AM
Abstract :
Ultrasound has been shown to potentiate the effects of tissue plasminogen activator to improve clot lysis in a range of in vitro and in vivo studies as well as in clinical trials. One possible mechanism of action is acoustic radiation force-induced clot displacements. In this study, we investigate the temporal and spatial dynamics of clot displacements and strain initiated by focused ultrasound pulses. Displacements were produced by a 1.51 MHz f-number 1 transducer over a range of acoustic powers (1-85 W) in clots constrained within an agar vessel phantom channel. Displacements were tracked during and after a 5.45 ms therapy pulse using a 20 MHz high-frequency ultrasound imaging probe. Peak thrombus displacements were found to be linear as a function of acoustic power up to 60 W before leveling off near 128 μm for the highest transmit powers. The time to peak displacement and recovery time of blood clots was largely independent of acoustic powers with measured values near 2 ms. A linear relationship between peak axial strain and transmit power was observed, reaching a peak value of 11% at 35 W. The peak strain occurred ~0.75 mm from the focal zone for all powers investigated in both lateral and axial directions. These results indicate that substantial displacements can be induced by focused ultrasound in confined blood clots, and that the spatial and temporal displacement patterns are complex and highly dependent on exposure conditions, which has implications for future work investigating their link to clot lysis and for developing approaches to exploit these effects.
Keywords :
biomedical transducers; biomedical ultrasonics; blood; phantoms; radiation therapy; acoustic power; agar vessel phantom channel; clot displacement; confined in vitro blood clot; focused ultrasound pulse; frequency 1.51 MHz; frequency 20 MHz; high-frequency ultrasound imaging probe; power 35 W; pulsed focused ultrasound-induced displacement; therapy pulse; thrombus displacement; time 5.45 ms; transducer; Acoustic beams; Acoustics; Medical treatment; Phantoms; Transducers; Ultrasonic imaging; Ischemic stroke; thrombolysis; tissue plasminogen activator (tPA); ultrasound; Animals; Phantoms, Imaging; Rabbits; Thrombosis; Time Factors; Tissue Plasminogen Activator; Transducers; Ultrasonic Therapy;
Journal_Title :
Biomedical Engineering, IEEE Transactions on
DOI :
10.1109/TBME.2011.2180904