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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Real-time, 3-D ultrasound with multiple transducer arrays
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Real-time, 3-D ultrasound with multiple transducer arrays

机译:具有多个换能器阵列的实时3D超声

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摘要

Modifications were made to a commercial real-time, three-dimensional (3-D) ultrasound system for near simultaneous 3-D scanning with two matrix array transducers. As a first illustration, a transducer cable assembly was modified to incorporate two independent, 3-D intra-cardiac echo catheters, a 7 Fr (2.3 mm O.D.) side scanning catheter and a 14 Fr (4.7 mm O.D) forward viewing catheter with accessory port, each catheter using 85 channels operating at 5 MHz. For applications in treatment of atrial fibrillation, the goal is to place the sideviewing catheter within the coronary sinus to view the whole left atrium, including a pulmonary vein. Meanwhile, the forward-viewing catheter inserted within the left atrium is directed toward the ostium of a pulmonary vein for therapy using the integrated accessory port. Using preloaded, phasing data, the scanner switches between catheters automatically, at the push of a button, with a delay of about 1 second, so that the clinician can view the therapy catheter with the coronary sinus catheter and vice versa. Preliminary imaging studies in a tissue phantom and in vivo show that our system successfully guided the forward-viewing catheter toward a target while being imaged with the sideviewing catheter. The forward-viewing catheter then was activated to monitor the target while we mimicked therapy delivery. In the future, the system will switch between 3-D probes on a line-by-line basis and display both volumes simultaneously.
机译:对商用实时三维(3-D)超声系统进行了修改,以使用两个矩阵阵列换能器进行近乎同时的3-D扫描。作为第一个说明,对换能器电缆组件进行了修改,以合并两个独立的3-D心内回声导管,一个7 Fr(2.3 mm OD)侧扫描导管和一个14 Fr(4.7 mm OD)的前视导管以及附件端口,每个导管使用以5 MHz运行的85个通道。对于在房颤治疗中的应用,目标是将侧视导管放置在冠状窦内以观察整个左心房,包括肺静脉。同时,插入左心房的前视导管通过集成附件端口指向肺静脉口进行治疗。使用预加载的定相数据,扫描仪只需按一下按钮即可自动在导管之间切换,延迟时间约为1秒,因此临床医生可以查看带有冠状窦导管的治疗导管,反之亦然。在组织体模和体内进行的初步成像研究表明,我们的系统成功地将前视导管引导至目标,同时用侧视导管成像。然后,当我们模仿治疗的进行时,前视导管被激活以监视目标。将来,系统将逐行在3-D探针之间切换,并同时显示两个体积。

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