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声致发光空化映射在 1.2MHz 高强度聚焦超声中通过声辐射力引起的气泡位移较少。

Cavitation mapping by sonochemiluminescence with less bubble displacement induced by acoustic radiation force in a 1.2 MHz HIFU.

出版信息

Ultrason Sonochem. 2014 Mar;21(2):559-65. doi: 10.1016/j.ultsonch.2013.10.005.

Abstract

An acoustic radiation force counterbalanced appliance was employed to map the cavitation distribution in water. The appliance was made up of a focused ultrasound transducer and an aluminum alloy reflector with the exactly same shape. They were centrosymmetry around the focus of the source transducer. Spatial-temporal dynamics of cavitation bubble clouds in the 1.2 MHz ultrasonic field within this appliance were observed in water. And they were mapped by sonochemiluminescence (SCL) recordings and high-speed photography. There were significant differences in spatial distribution and temporal evolution between normal group and counterbalanced group. The reflector could avoid bubble directional displacement induced by acoustic radiation force under certain electric power (≤50 W). As a result, the SCL intensity in the pre-focal region was larger than that of normal group. In event of high electric power (≥70 W), most of the bubbles were moving in acoustic streaming. When electric power decreased, bubbles kept stable and showed stripe structure in SCL images. Both stationary bubbles and moving bubbles have been captured, and exhibited analytical potential with respect to bubbles in therapeutic ultrasound.

摘要

采用声辐射力平衡装置对水中空化分布进行测绘。该装置由聚焦超声换能器和形状完全相同的铝合金反射器组成。它们以换能器焦点为中心对称。在该装置内 1.2MHz 超声场中,观察到水中空化泡云的时空动力学,并通过声致化学发光(SCL)记录和高速摄影进行测绘。正常组和平衡组在空间分布和时间演化上存在显著差异。在一定电功率(≤50W)下,反射器可以避免声辐射力引起的气泡定向位移。因此,焦点前区域的 SCL 强度大于正常组。在高电功率(≥70W)下,大部分气泡随声流运动。当电功率降低时,气泡保持稳定,并在 SCL 图像中呈现条纹结构。既捕获了静止气泡,也捕获了运动气泡,为治疗超声中的气泡提供了分析潜力。

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