DocumentCode
3080631
Title
Evaluation of liquid perfluorocarbon nanoparticles as a blood pool contrast agent utilizing power Doppler harmonic imaging
Author
Ngo, Francis C. ; Hall, Christopher S. ; Marsh, Jon N. ; Fuhrhop, Ralph W. ; Allen, John S. ; Brown, Peggy ; McLean, Mark D. ; Scott, Michael J. ; Wickline, Samuel A. ; Lanza, Gregory M.
Author_Institution
Cardiovascular Div., Washington Univ. Sch. of Med., St. Louis, MO, USA
Volume
2
fYear
2000
fDate
36800
Firstpage
1931
Abstract
Improved echocardiographic endocardial border delineation aids in the assessment of ventricular function and wall motion abnormalities. Microbubble-based contrast agents provide excellent echogenicity but a short-lived effect. In contrast, liquid perfluorocarbon (PFC) nanoparticles exhibit long circulatory times and are stable to insonification but have poor echogenicity. Ideally, a contrast agent should demonstrate long circulatory persistence, resistance to ultrasonic destruction, while displaying significant echogenicity. This study demonstrates the effectiveness of biocompatible, liquid PFC nanoparticles as a blood pool contrast agent. When imaged with power Doppler harmonic imaging (PDHI), this agent exhibited marked blood pool enhancement lasting over 1 hour. Furthermore, the contrast enhancement was achieved at doses of 0.7% blood volume. In order to investigate the influence of particle size on blood pool contrast effect, liquid PFC nanoparticles were formulated with diameters of 232 and 465 nm. The nanoparticles were then administered to canines (N=10), with 7 canines receiving the 232 nm nanoparticles and the remainder receiving the 465 nm nanoparticles at a dose of 0.5 ml/kg. PDHI revealed marked blood pool enhancement in all three canines receiving the 465 nm nanoparticles but minimal contrast effect in the canines receiving the 232 nm nanoparticles. This data suggests that PFC nanoparticles in conjunction with PDHI may serve as an important adjunct for the assessment of ventricular function and wall motion abnormalities
Keywords
cardiovascular system; echocardiography; haemorheology; image enhancement; medical image processing; microemulsions; nonlinear acoustics; organic compounds; particle size; 232 nm; 465 nm; biocompatible particles; blood pool contrast agent; blood pool enhancement; echocardiographic endocardial border delineation; echogenicity; liquid perfluorocarbon nanoparticles; long circulatory persistence; nonlinear contrast agents; particle size influence; power Doppler harmonic imaging; ultrasonic destruction resistance; ventricular function; wall motion abnormalities; Acoustic imaging; Acoustic pulses; Attenuation; Biomedical imaging; Blood; Cardiology; Lungs; Nanoparticles; Power system harmonics; Ultrasonic imaging;
fLanguage
English
Publisher
ieee
Conference_Titel
Ultrasonics Symposium, 2000 IEEE
Conference_Location
San Juan
ISSN
1051-0117
Print_ISBN
0-7803-6365-5
Type
conf
DOI
10.1109/ULTSYM.2000.921701
Filename
921701
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