...
首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Field Characterization and Compensation of Vibrational Nonuniformity for a 256-Element Focused Ultrasound Phased Array
【24h】

Field Characterization and Compensation of Vibrational Nonuniformity for a 256-Element Focused Ultrasound Phased Array

机译:聚焦于256元素超声相控阵的振动不均匀性的场表征和补偿

获取原文
获取原文并翻译 | 示例
           

摘要

Multielement focused ultrasound phased arrays have been used in therapeutic applications to treat large tissue volumes by electronic steering of the focus, to target multiple simultaneous foci, and to correct aberration caused by inhomogeneous tissue pathways. There is an increasing interest in using arrays to generate more complex beam shapes and corresponding acoustic radiation force patterns for manipulation of particles such as kidney stones. Toward this end, experimental and computational tools are needed to enable accurate delivery of desired transducer vibrations and corresponding ultrasound fields. The purpose of this paper was to characterize the vibrations of a 256-element array at 1.5 MHz, implement strategies to compensate for variability, and test the ability to generate specified vortex beams that are relevant to particle manipulation. The characterization of the array output was performed in water using both element-by-element measurements at the focus of the array and holography measurements for which all the elements were excited simultaneously. Both methods were used to quantify each element’s output so that the power of each element could be equalized. Vortex beams generated using both compensation strategies were measured and compared to the Rayleigh integral simulations of fields generated by an idealized array based on the manufacturer’s specifications. Although both approaches improved beam axisymmetry, compensation based on holography measurements had half the error relative to the simulation results in comparison to the element-by-element method.
机译:多元素聚焦超声相控阵已用于治疗应用中,通过聚焦的电子控制来处理大体积组织,靶向多个同时发生的病灶,并纠正由不均匀组织途径引起的像差。使用阵列产生更复杂的波束形状和相应的声辐射力模式以操纵诸如肾结石等颗粒的兴趣日益浓厚。为此,需要实验和计算工具以能够准确地传递期望的换能器振动和相应的超声场。本文的目的是表征256个元素的阵列在1.5 MHz时的振动,实施能够补偿变化性的策略,并测试生成与粒子处理相关的特定涡旋束的能力。阵列输出的表征是在水中使用阵列焦点处的逐元素测量和同时激发所有元素的全息测量进行的。两种方法都用于量化每个元素的输出,以便可以均衡每个元素的功率。测量了使用两种补偿策略产生的涡旋光束,并将其与基于制造商规范的理想阵列产生的场的瑞利积分模拟进行了比较。尽管两种方法都改善了光束轴对称性,但是与逐个元素的方法相比,基于全息测量的补偿相对于仿真结果的误差只有一半。

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