首页> 外文会议>Ultrasonics Symposium (IUS), 2009 >Computational model of a phased array for image guided pediatric cardiac treatment
【24h】

Computational model of a phased array for image guided pediatric cardiac treatment

机译:图像引导小儿心脏治疗的相控阵计算模型

获取原文

摘要

A computational model of a planar, phased array transducer is developed to aid in the design of an high intensity, focused ultrasound transducer for the noninvasive treatment of congenital heart disease in newborns. The aim is to predict the size, shape and temperature of the high-intensity focal region, and acoustic artifacts surrounding the focal area, created by a transducer. Acoustic intensity fields are calculated and mapped by numerically integrating a form of the Rayleigh-Sommerfeld integral. The resulting temperature field is predicted by the Pennes bio-heat transfer equation by implementing a 3-dimensional finite difference method algorithm. Based on the metrics of an atrial septal defect and the metrics of isolated patent ductus arteriosis in consecutive human neonates, a first iteration of an array design has been performed. A random-sparse array configuration is used to reduce side-lobe and grating lobe effects. To avoid the scattering and reflecting effects of ribs, the transducer is configured to fit in the gaps between the ribs. The three arrays are phased act cooperatively as a single array. Each array contains 45 elements (3 × 15), with every third element active (45 total). The transducer was designed to have a center frequency of 1.2 MHz. A first iteration design was fabricated using PZT-8 piezoelectric ceramic. The exposimetry of the transducer was captured and compared to numerical models. The exposimetry results correspond well with the numerical models, warranting further development of the transducer design.
机译:开发了平面相控阵换能器的计算模型,以帮助设计用于新生儿的先天性心脏病的非侵入性治疗的高强度聚焦超声换能器。目的是预测换能器产生的高强度聚焦区域的大小,形状和温度,以及聚焦区域周围的声学伪影。通过对Rayleigh-Sommerfeld积分的形式进行数值积分来计算和映射声强场。通过执行3维有限差分方法算法,可以通过Pennes生物热传递方程预测所得的温度场。基于连续人新生儿的房间隔缺损的度量和孤立的导管未闭动脉的度量,已经进行了阵列设计的第一次迭代。随机稀疏阵列配置用于减少旁瓣和光栅瓣的影响。为了避免肋的散射和反射效应,换能器被配置为装配在肋之间的间隙中。这三个阵列是分阶段的,可以作为一个阵列协同工作。每个数组包含45个元素(3×15),每三个元素处于活动状态(总共45个)。换能器的设计中心频率为1.2 MHz。首次迭代设计是使用PZT-8压电陶瓷制造的。捕获换能器的曝光量并将其与数值模型进行比较。测光结果与数值模型非常吻合,保证了换能器设计的进一步发展。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号