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Design of Focused Ultrasound Array for Non-Invasive Transesophageal Cardiac Ablation

机译:无创经食管心脏消融聚焦超声阵列设计

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Atrial fibrillation (AF) is the most common type of arrhythmia, affecting more than 2.2 million Americans. One effective treatment is cardiac ablation, which shows a high rate of success in treating paroxysmal AF. As a prevailing modality for this treatment, catheter ablation using radiofrequency has been effective, but comes with measurable morbidity and significant costs and time associated with this procedure for permanent or persistent AF. To address these issues, an ultrasound applicator for cardiac ablation without surgical incisions or blood contact was designed, developed and evaluated in this study. To initially design a transesophageal applicator using therapeutic ultrasound capable of creating atrial lesions from the esophagus, sound pressure fields in a simple tissue model were numerically determined. Based on the simulation results for transducer arrays together with current transesophageal medical devices and the throat anatomy, we designed, fabricated, and tested a focused ultrasound applicator that can be inserted into the esophagus for noninvasive cardiac ablation. The ultimate goal in this project is to bring this applicator as close as possible to the heart to effectively deliver ultrasound energy and create electrically isolating lesions in myocardial tissue, which replicate the currently used Maze procedure. The transducer design is a two-dimensional sparse phased array with flat tapered elements operating at 1.6 MHz. This array uses 64 active elements spatially sampled from 195 rectangular elements. Its probe head housing is 19 mm in diameter and incorporates an acoustic window. A prototype applicator has been successfully tested in vitro using fresh porcine myocardial tissue. The results demonstrated a potential applicability of an ultrasound applicator to transesophageal cardiac surgery in AF treatment.
机译:心房颤动(AF)是最常见的心律不齐类型,影响超过220万美国人。一种有效的治疗方法是心脏消融术,它在治疗阵发性房颤方面显示出很高的成功率。作为该治疗的主要方式,使用射频消融术是有效的,但伴随可测量的发病率以及与永久性或持续性房颤该手术相关的大量费用和时间。为了解决这些问题,在这项研究中设计,开发和评估了一种无需手术切口或血液接触的用于心脏消融的超声涂药器。为了最初使用能够从食道产生心房病变的治疗性超声波设计经食道涂药器,在数字上确定了简单组织模型中的声压场。基于换能器阵列以及当前经食道医疗设备和喉部解剖结构的仿真结果,我们设计,制造和测试了可插入食道进行无创性心脏消融的聚焦超声施加器。该项目的最终目标是使该涂药器尽可能靠近心脏,以有效地传递超声能量,并在心肌组织中产生电隔离的病变,该病变与目前使用的Maze程序相同。换能器设计是二维稀疏相控阵,带有扁平锥形元件,工作频率为1.6 MHz。该数组使用从195个矩形元素中进行空间采样的64个活动元素。它的探头外壳直径为19毫米,并带有一个隔音窗。已使用新鲜的猪心肌组织在体外成功测试了原型施药器。结果证明了超声涂药器在房颤治疗中对经食道心脏手术的潜在适用性。

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