Stephens D N, Cannata J, Liu Ruibin, Zhao Jian Zhong, Shung K K, Nguyen Hien, Chia R, Dentinger A, Wildes D, Thomenius K E, Mahajan A, Shivkumar K, Kim Kang, O'Donnell M, Nikoozadeh A, Oralkan O, Khuri-Yakub P T, Sahn D J
Univ. of California, Davis, CA, USA.
IEEE Trans Ultrason Ferroelectr Freq Control. 2008 Jul;55(7):1570-81. doi: 10.1109/TUFFC.2008.834.
A family of 3 multifunctional intracardiac imaging and electrophysiology (EP) mapping catheters has been in development to help guide diagnostic and therapeutic intracardiac EP procedures. The catheter tip on the first device includes a 7.5 MHz, 64-element, side-looking phased array for high resolution sector scanning. The second device is a forward-looking catheter with a 24-element 14 MHz phased array. Both of these catheters operate on a commercial imaging system with standard software. Multiple EP mapping sensors were mounted as ring electrodes near the arrays for electrocardiographic synchronization of ultrasound images and used for unique integration with EP mapping technologies. To help establish the catheters' ability for integration with EP interventional procedures, tests were performed in vivo in a porcine animal model to demonstrate both useful intracardiac echocardiographic (ICE) visualization and simultaneous 3-D positional information using integrated electroanatomical mapping techniques. The catheters also performed well in high frame rate imaging, color flow imaging, and strain rate imaging of atrial and ventricular structures. The companion paper of this work discusses the catheter design of the side-looking catheter with special attention to acoustic lens design. The third device in development is a 10 MHz forward-looking ring array that is to be mounted at the distal tip of a 9F catheter to permit use of the available catheter lumen for adjunctive therapy tools.
一个由三根多功能心内成像和电生理(EP)标测导管组成的系列产品正在研发中,以帮助指导心内EP诊断和治疗程序。首款设备的导管尖端包括一个用于高分辨率扇形扫描的7.5兆赫、64阵元的侧视相控阵。第二款设备是一款带有24阵元14兆赫相控阵的前视导管。这两款导管均在配备标准软件的商用成像系统上运行。多个EP标测传感器作为环形电极安装在阵列附近,用于超声图像的心电图同步,并用于与EP标测技术进行独特整合。为了帮助确定导管与EP介入程序整合的能力,在猪动物模型中进行了体内测试,以使用集成电解剖标测技术展示有用的心内超声心动图(ICE)可视化和同步三维位置信息。这些导管在心房和心室结构的高帧率成像、彩色血流成像和应变率成像方面也表现出色。这项工作的配套论文讨论了侧视导管的导管设计,特别关注声学透镜设计。正在研发的第三款设备是一个10兆赫的前视环形阵列,将安装在9F导管的远端尖端,以便将可用的导管内腔用于辅助治疗工具。