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首页> 外文期刊>Journal of Medical Imaging and Health Informatics >An Integrated and Dynamic Imaging Technique for Simultaneously Monitoring Tissue Damage Formation and Cavitation Bubble Activity During High Intensity Focused Ultrasound (HIFU) Therapy
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An Integrated and Dynamic Imaging Technique for Simultaneously Monitoring Tissue Damage Formation and Cavitation Bubble Activity During High Intensity Focused Ultrasound (HIFU) Therapy

机译:在高强度聚焦超声(HIFU)治疗过程中同时监测组织损伤形成和空化气泡活动的集成动态成像技术

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摘要

High intensity focused ultrasound (HIFU) is a widely used and non-invasive surgery technique, which requires real-time monitoring for safety and efficiency. However, current imaging methods usually display information associated with tissue thermal lesions and cavitation bubble activities in a mixed fashion. This paper proposes an integrated and dynamic monitoring imaging technique that uses specific temporal sequences of HIFU exposures and radio frequency (RF) data acquisition, and post-treatment algorithms to separate the cavitation information from the tissue thermal lesion information and display them simultaneously. Two kinds of imaging pulse sequences synchronized with HIFU were designed: (1) Two consecutive frames with the same transmission waveforms were transmitted, and the two corresponding RF data frames were acquired before and between every two HIFU exposures. (2) A pulse inversion (PI) transmission technique was utilized, and the corresponding RF data frame was acquired, which was divided into a positive frame and a negative frame. By choosing the two RF data frames with positive pulse transmission before and during HIFU treatment, the integral differential images could be obtained. This can reflect whole changes of a treated area, including tissue damage formation and cavitation bubble activity. By choosing the two consecutive RF data frames or the PI-based frame between HIFU exposures at the same time, the transient differential images or PI-based second-/sub-harmonic images could be obtained, which could reflect cavitation bubble activity. The former was related to the movement, dissolution, and/or collapse of cavitation bubbles, and the latter was related to the non-linearity of cavitation bubbles. The in vitro experimental results from porcine muscle verified the validity of the proposed monitoring imaging method. This method could monitor tissue damage formation and cavitation bubble activity simultaneously during HIFU therapy, and it has the potential to be used on a low-cost ultrasound platform due to the simple algorithms.
机译:高强度聚焦超声(HIFU)是一种广泛使用的非侵入性手术技术,需要实时监控以确保安全性和效率。然而,当前的成像方法通常以混合的方式显示与组织热损伤和空化气泡活动相关的信息。本文提出了一种集成的动态监控成像技术,该技术使用HIFU曝光和射频(RF)数据采集的特定时间序列,并采用后处理算法将气蚀信息与组织热损伤信息分开并同时显示。设计了两种与HIFU同步的成像脉冲序列:(1)发送两个具有相同传输波形的连续帧,并在每两次HIFU曝光之前和之间采集两个相应的RF数据帧。 (2)利用脉冲反转(PI)传输技术,获取相应的RF数据帧,将其分为正帧和负帧。通过在HIFU治疗之前和期间选择两个具有正脉冲传输的RF数据帧,可以获得积分差分图像。这可以反映出治疗区域的整体变化,包括组织损伤的形成和空化气泡的活动。通过同时在HIFU曝光之间选择两个连续的RF数据帧或基于PI的帧,可以获得瞬态差分图像或基于PI的次谐波/次谐波图像,它们可以反映空化气泡活动。前者与空化气泡的运动,溶解和/或塌陷有关,而后者与空化气泡的非线性有关。猪肌肉的体外实验结果证实了所提出的监测成像方法的有效性。这种方法可以在HIFU治疗期间同时监测组织损伤的形成和空化气泡的活动,由于其简单的算法,它有可能在低成本的超声平台上使用。

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