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High Frame Rate Imaging to Enhance the Dissolution of Histotripsy-Induced Bubble Clouds

机译:高帧速率成像,以增强组粒菌诱导的泡沫云的溶解

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Histotripsy is a focused ultrasound therapy for tissue ablation with bubble cloud activity. Persistent bubble clouds reduce the ablative capacity of histotripsy. Thus, there is a need for bubble-specific imaging to track bubble cloud dissolution between the application of histotripsy pulses. In this study, standard plane wave, pulse inversion, and chirp-coded excitation imaging were utilized to visualize bubble clouds at a 2-kHz frame rate. For all imaging schemes, a monotonic decrease in the bubble cloud grayscale was observed over a 45-ms period following the histotripsy insonation. The change in bubble cloud grayscale was dependent on the imaging scheme, with faster grayscale reduction for larger peak negative pressures of the imaging pulse. Bubble-specific sequences resulted in faster decreases in the bubble cloud grayscale compared with standard plane wave imaging. Overall, these results highlight high-frame rate imaging as a means to monitor and modulate histotripsy bubble cloud dissolution.
机译:组织特ripsy是一种聚焦的超声治疗,用于组织烧蚀与泡沫云活动。持久的气泡云降低了组特阶的烧蚀容量。因此,需要泡沫特异性成像以跟踪组织杆脉冲施加之间的泡沫云溶解。在该研究中,利用标准平面波,脉冲反转和啁啾编码的激发成像来以2kHz帧速率可视化气泡云。对于所有成像方案,在组特阶令人令人市的45-ms期间观察到泡沫云灰度的单调减少。气泡云灰度的变化依赖于成像方案,具有更快的灰度降低,用于成像脉冲的较大峰值负压。与标准平面波成像相比,气泡云灰度晶体中的泡沫特异性序列更快地降低。总的来说,这些结果突出了高帧速率成像作为监测和调节组特阶泡沫云溶解的手段。

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