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Controlled ultrasound tissue erosion

机译:超声控制组织侵蚀

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摘要

The ability of ultrasound to produce highly controlled tissue erosion was investigated. This study is motivated by the need to develop a noninvasive procedure to perforate the neonatal atrial septum as the first step in treatment of hypoplastic left heart syndrome. A total of 232 holes were generated in 40 pieces of excised porcine atrial wall by a 788 kHz single-element transducer. The effects of various parameters [e.g., pulse repetition frequency (PRF), pulse duration (PD), and gas content of liquid] on the erosion rate and energy efficiency were explored. An Isppa of 9000 W/cm2, PDs of 3, 6, 12, and 24 cycles; PRFs between 1.34 kHz and 66.7 kHz; and gas saturation of 40-55% and 79-85% were used. The results show that very short pulses delivered at certain PRFs could maximize the erosion rate and energy efficiency. We show that well-defined perforations can be precisely located in the atrial wall through the controlled ultrasound tissue erosion (CUTE) process. A preliminary in vivo experiment was conducted on a canine subject, and the atrial septum was perforated using CUTE.
机译:研究了超声波产生高度受控的组织侵蚀的能力。这项研究的动机是需要开发一种非侵入性的方法来穿刺新生儿房间隔,作为治疗增生性左心综合征的第一步。通过788 kHz单元件换能器在40片切除的猪心房壁上总共产生232个孔。探索了各种参数[例如,脉冲重复频率(PRF),脉冲持续时间(PD)和液体中的气体含量]对腐蚀速率和能量效率的影响。 Isppa为9000 W / cm2,PD为3、6、12和24个循环;在1.34 kHz至66.7 kHz之间的PRF;气体饱和度为40-55%和79-85%。结果表明,在某些PRF处发出的非常短的脉冲可以使腐蚀速率和能量效率最大化。我们显示,通过控制的超声组织侵蚀(CUTE)过程,可以在心房壁上精确定位穿孔。对犬科动物进行了初步的体内实验,并使用CUTE对房间隔进行了穿孔。

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