A 10-Fr ultrasound catheter with integrated micromotor for4-D intracardiac echocardiography

We developed prototype real-time 3-D intracardiac echocardiography catheters with integrated micromotors, allowing internal oscillation of a low-profile 64-element, 6.2-MHz phased-array transducer in the elevation direction. Components were designed to facilitate rotation of the array, including a l...

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Veröffentlicht in:IEEE transactions on ultrasonics, ferroelectrics, and frequency control ferroelectrics, and frequency control, 2011-07, Vol.58 (7), p.1478-1491
Hauptverfasser: Lee, W., Griffin, W., Wildes, D., Buckley, D., Topka, T., Chodakauskas, T., Langer, M., Calisti, S., Bergstol, S., Malacrida, J.-P, Lanteri, F., Maffre, J., Mcdaniel, B., Shivkumar, K., Cummings, J., Callans, D., Silvestry, F., Packer, D.
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Sprache:eng
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Zusammenfassung:We developed prototype real-time 3-D intracardiac echocardiography catheters with integrated micromotors, allowing internal oscillation of a low-profile 64-element, 6.2-MHz phased-array transducer in the elevation direction. Components were designed to facilitate rotation of the array, including a low-torque flexible transducer interconnect and miniature fixtures for the transducer and micromotor. The catheter tip prototypes were integrated with two-way deflectable 10-Fr catheters and used in in vivo animal testing at multiple facilities. The 4-D ICE catheters were capable of imaging a 90° azimuth by up to 180° elevation field of view. Volume rates ranged from 1 vol/sec (180° elevation) to approximately 10 vol/sec (60° elevation). We successfully imaged electrophysiology catheters, atrial septal puncture procedures, and detailed cardiac anatomy. The elevation oscillation enabled 3-D visualization of devices and anatomy, providing new clinical information and perspective not possible with current 2-D imaging catheters.
ISSN:0885-3010
1525-8955
DOI:10.1109/TUFFC.2011.1967