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使用诊断超声系统对高强度聚焦超声(HIFU)诱导的惯性空化和热蒸汽空化进行时空检测。

Temporal and spatial detection of HIFU-induced inertial and hot-vapor cavitation with a diagnostic ultrasound system.

作者信息

Farny Caleb H, Holt R Glynn, Roy Ronald A

机构信息

Department of Radiology, Harvard Medical School, Brigham and Women's Hospital, 221 Longwood Ave., Boston, MA 02115, USA.

出版信息

Ultrasound Med Biol. 2009 Apr;35(4):603-15. doi: 10.1016/j.ultrasmedbio.2008.09.025. Epub 2008 Dec 24.

DOI:10.1016/j.ultrasmedbio.2008.09.025
PMID:19110368
Abstract

The onset and presence of inertial cavitation and near-boiling temperatures in high-intensity focused ultrasound (HIFU) therapy have been identified as important indicators of energy deposition for therapy guidance. Passive cavitation detection is commonly used to detect bubble emissions, where a fixed-focus single-element acoustic transducer is typically used as a passive cavitation detector (PCD). This technique is suboptimal for clinical applications, because most PCD transducers are tightly focused and afford limited spatial coverage of the HIFU focal region. A Terason 2000 Ultrasound System was used as a PCD array to expand the spatial detection region for cavitation by operating in passive mode, obtaining the radiofrequency signals corresponding to each scan line and filtering the contribution from scattering of the HIFU signal harmonics. This approach allows for spatially resolved detection of both inertial and stable cavitation throughout the focal region. Measurements with the PCD array during sonication with a 1.1-MHz HIFU source in tissue phantoms were compared with single-element PCD and thermocouple sensing. Stable cavitation signals at the harmonics and superharmonics increased in a threshold fashion for temperatures >90 degrees C, an effect attributed to high vapor pressure in the cavities. Incorporation of these detection techniques in a diagnostic ultrasound platform could result in a powerful tool for improving HIFU guidance and treatment.

摘要

高强度聚焦超声(HIFU)治疗中惯性空化和近沸点温度的发生及存在已被确定为用于治疗引导的能量沉积的重要指标。被动空化检测通常用于检测气泡发射,其中固定聚焦的单元素声学换能器通常用作被动空化探测器(PCD)。这种技术在临床应用中并非最佳选择,因为大多数PCD换能器聚焦紧密,对HIFU聚焦区域的空间覆盖有限。使用Terason 2000超声系统作为PCD阵列,通过在被动模式下操作来扩大空化的空间检测区域,获取与每条扫描线对应的射频信号,并过滤HIFU信号谐波散射的贡献。这种方法允许在整个聚焦区域对惯性空化和稳定空化进行空间分辨检测。在组织模型中使用1.1 MHz HIFU源进行超声处理期间,将PCD阵列的测量结果与单元素PCD和热电偶传感进行了比较。对于温度>90摄氏度,谐波和超谐波处的稳定空化信号以阈值方式增加,这种效应归因于空化中的高蒸气压。将这些检测技术整合到诊断超声平台中可能会产生一个强大的工具,用于改善HIFU引导和治疗。

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