...
首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Dual-beam histotripsy: a low-frequency pump enabling a high-frequency probe for precise lesion formation
【24h】

Dual-beam histotripsy: a low-frequency pump enabling a high-frequency probe for precise lesion formation

机译:双光束组织曲折术:低频泵使高频探头能够精确形成病变

获取原文
获取原文并翻译 | 示例

摘要

Histotripsy produces tissue fractionation through dense energetic bubble clouds generated by short, high-pressure, ultrasound pulses. When using pulses shorter than 2 cycles, the generation of these energetic bubble clouds only depends on where the peak negative pressure (P?????????) exceeds the intrinsic threshold of the medium (26 to 30 MPa in soft tissue with high water content). This paper investigates a strategic method for precise lesion generation in which a low-frequency pump pulse is applied to enable a sub-threshold high-frequency probe pulse to exceed the intrinsic threshold. This pump-probe method of controlling a supra-threshold volume can be called dual-beam histotripsy. A 20-element dual-frequency (500-kHz and 3-MHz elements confocally aligned) array transducer was used to generate dualbeam histotripsy pulses in red blood cell phantoms and porcine hepatic tissue specimens. The results showed that when subintrinsic- threshold pump (500-kHz) and probe (3-MHz) pulses were applied together, dense bubble clouds (and resulting lesions) were only generated when their peak negative pressures combined constructively to exceed the intrinsic threshold. The smallest reproducible lesion varied with the relative amplitude between the pump and probe pulses, and, with a higher proportion of the probe pulse, smaller lesions could be generated. When the propagation direction of the probe pulse relative to the pump pulse was altered, the shape of the produced lesion changed based on the region that exceeded intrinsic threshold. Because the low-frequency pump pulse is more immune to attenuation and aberrations, and the high-frequency probe pulse can provide precision in lesion formation, this dual-beam histotripsy approach would be very useful in situations in which precise lesion formation is required through a highly attenuative and aberrative medium, such as transcranial therapy. This is particularly true if a small low-attenuation acoustic window is available for th- high-frequency probe transducer.
机译:通过短的,高压的超声波脉冲产生的密集的高能气泡云,组织碎裂产生组织分级分离。当使用短于2个周期的脉冲时,这些高能气泡云的产生仅取决于峰值负压(P ?????????)超出介质固有阈值(软组织中为26到30 MPa)的位置含水量高)。本文研究了一种精确产生病变的策略方法,其中应用低频泵浦脉冲使亚阈值高频探查脉冲超过固有阈值。这种控制超阈值音量的泵浦探测方法可以称为双光束组织三角波。使用20个元素的双频(共焦的500 kHz和3 MHz元件)阵列换能器在红细胞体模和猪肝组织标本中产生双束组织曲波脉冲。结果表明,当同时使用本征阈值泵(500 kHz)和探针(3 MHz)脉冲时,仅当其峰值负压相长地组合超过本征阈值时,才会产生密集的气泡云(及所引起的病变)。最小的可复制病变随泵浦脉冲和探查脉冲之间的相对幅度而变化,并且随着探查脉冲的比例增加,可能会产生较小的病变。当改变探针脉冲相对于泵浦脉冲的传播方向时,所产生的病变的形状会根据超出固有阈值的区域而改变。由于低频泵浦脉冲更不受衰减和像差的影响,而高频探头脉冲可在病变形成中提供精确度,因此这种双光束组织曲折方法在需要通过手术来精确形成病变的情况下将非常有用。高衰减和畸变的介质,例如经颅治疗。如果一个小的低衰减声窗可用于高频探头换能器,则尤其如此。

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