...
首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Removal of residual cavitation nuclei to enhance histotripsy erosion of model urinary stones
【24h】

Removal of residual cavitation nuclei to enhance histotripsy erosion of model urinary stones

机译:去除残留的空化核以增强模型尿路结石的组织曲张侵蚀

获取原文
获取原文并翻译 | 示例
           

摘要

Histotripsy has been shown to be an effective treatment for model kidney stones, eroding their surface to tiny particulate debris via a cavitational bubble cloud. However, similar to shock wave lithotripsy, histotripsy stone treatments display a rate-dependent efficacy, with pulses applied at a low rate generating more efficient stone erosion in comparison with those applied at a high rate. This is hypothesized to be the result of residual cavitation bubble nuclei generated by bubble cloud collapse. Although the histotripsy bubble cloud only lasts on the order of 100 ??s, these microscopic remnant bubbles can persist on the order of 1 s, inducing direct attenuation of subsequent histotripsy pulses and influencing bubble cloud dynamics. In an effort to mitigate these effects, we have developed a novel strategy to actively remove residual cavitation nuclei from the field using low-amplitude ultrasound pulses. Previous work has demonstrated that with selection of the appropriate acoustic parameters these bubble removal pulses can stimulate the aggregation and subsequent coalescence of microscopic bubble nuclei, effectively deleting them from the target volume. Here, we incorporate bubble removal pulses in histotripsy treatment of model kidney stones. It was found that when histotripsy is applied at low rate (1 Hz), bubble removal does not produce a statistically significant change in erosion. At higher pulse rates of 10, 100, and 500 Hz, incorporating bubble removal results in 3.7-, 7.5-, and 2.7-fold increases in stone erosion, respectively. High-speed imaging indicates that the introduction of bubble removal pulses allows bubble cloud dynamics resulting from high pulse rates to more closely approximate those generated at the low rate of 1 Hz. These results corroborate previous work in the field of shock wave lithotripsy regarding the ill effects of residual bubble nuclei, and suggest that high treatment efficiency can be recovered at high pulse rates through appropr- ate manipulation of the cavitation environment surrounding the stone.
机译:事实证明,组织分裂症是一种治疗模型肾结石的有效方法,它通过空化气泡云将其表面侵蚀成细小的颗粒碎片。但是,类似于冲击波碎石术,组织曲张结石治疗显示出速率依赖性的功效,以低速率施加的脉冲与以高速率施加的脉冲相比,产生了更有效的结石侵蚀。假设这是由于气泡云塌陷而产生的残留空化气泡核的结果。尽管组织曲状气泡云只能持续100 s的数量级,但这些微小的残留气泡可以持续1 s数量级,从而导致随后的组织曲波脉冲直接衰减,并影响气泡云的动力学。为了减轻这些影响,我们开发了一种新颖的策略,可以使用低振幅超声脉冲从现场主动清除残留的空化核。先前的工作表明,通过选择适当的声学参数,这些气泡去除脉冲可以刺激微观气泡核的聚集和随后的聚结,从而有效地将它们从目标体积中删除。在这里,我们将泡沫去除脉冲纳入模型肾结石的组织治疗中。已经发现,当以低频率(1Hz)施加组织曲霉菌时,去除气泡不会产生统计学上显着的侵蚀变化。在10、100和500 Hz的较高脉冲频率下,去除气泡会导致石材侵蚀分别增加3.7倍,7.5倍和2.7倍。高速成像表明,通过引入气泡去除脉冲,可以使由高脉冲速率产生的气泡云动态更接近于以1 Hz的低速率生成的气泡。这些结果证实了在冲击波碎石术领域中有关残留气泡核的不良影响的先前工作,并表明可以通过适当地操纵石头周围的空化环境,以高脉冲率恢复高治疗效率。

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