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Feasibility of noninvasive transesophageal cardiac thermal ablation using an ultrasound phased array

机译:使用超声分阶段阵列的非侵入性经冰淇淋热消融的可行性

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Current, minimally invasive, treatments for cardiac arrhythmia use a transvenous radio-frequency (RF) catheter to ablate the malfunctioning cardiac muscle regions. The paper proposes a noninvasive transesophageal cardiac thermal ablation using focused ultrasound. A planar phased array (1 MHz, 60/spl times/10 mm/sup 2/, 0.525 mm element center-to-center distance, 2280 elements) was put in the esophagus. Using electronic beam steering, a matrix of 5/spl times/3/spl times/5 foci in the cardiac muscle was defined in three planes parallel to the transducer surface at short, medium and long (20, 40 and 60 mm) radial ranges and different steering angles. The transmitted ultrasound pressure distribution in a volume of 20/spl times/20/spl times/20 mm/sup 3/ centered at each focus was calculated using a multilayer acoustic wave transmission model. The thermal lesions due to the acoustic energy absorption in cardiac muscle were simulated using the bioheat transfer equation. For short, medium and long (1-, 10- and 20-second) sonications, the acoustic powers needed to achieve 60/spl deg/C and 70/spl deg/C peak temperatures in the cardiac muscle were 89-725, 25-125, 20-86 W and 128-1040, 36-179, 28-123 W, respectively. The simulated tissue lesion (thermal dose 240 min at 43/spl deg/C) lengths at these foci were 2-10, 5-12, 6-14 mm and 3-13, 7-15, 9-17 mm, respectively. The lesion widths were 2-8, 3-10, 4-11 mm and 3-11, 4-12, 5-13 mm, respectively. The simulations show that noninvasive transesophageal cardiac ablation with a planar phased ultrasound array is feasible.
机译:目前,微创,心脏心律失常的治疗使用吞咽射频(RF)导管来消融发生故障的心肌区域。本文提出了使用聚焦超声的非侵入性经乳膏心脏热消融。在食管中放入了平面相控阵(1 MHz,60 / SPL次/ 10 mm / sup 2 /,2052mm元素中心到中心距离,2280元素)。使用电子束转向,心肌中的5 / SPL时间/ 3 / SPL时/ 5焦点的矩阵在短,中和长(20,40毫米)径向范围的三个平行于换能器表面的三个平面中定义和不同的转向角。使用多层声波传输模型计算在每个焦点上的20 / SPL次/ 20 / SPL次/ 20mm / sp3 /以每焦点为中心的传输的超声压力分布。使用生物发热方程模拟由于心肌肌肉的声能吸收引起的热病变。对于短,中和长(1-,10-和20秒)的声音,在心肌中实现60 / SPL DEG / C和70 / SPL DEG / C峰值温度所需的声电量为89-725,25 -125,20-86 W和128-1040,36-179,28-123 W分别。这些焦点的模拟组织病变(在43 / SPL DEG / c)长度的长度分别为2-10,5-12,6-14mm和3-13,7-15,9-17 mm 。病变宽度分别为2-8,3-10,4-11mm和3-11,4-12,5-13mm。该模拟表明,具有平面相控质超声阵列的非侵入性经冰淇淋消融是可行的。

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