微气泡
超声波传感器
材料科学
超声波
治疗性超声
生物医学工程
吸收(声学)
半径
瑞利散射
核磁共振
化学
声学
光学
物理
复合材料
医学
计算机安全
计算机科学
作者
S. Umemura,Kohei Kawabata,Narendra T. Sanghvi,Kenichi Sasaki
标识
DOI:10.1109/ultsym.2002.1192559
摘要
Ultrasonic power absorbed by a microbubble was calculated through numerically solving Rayleigh-Plesset equation to analyze its nonlinear breathing motion. At an ultrasonic intensity of 0.33 W/cm/sup 2/ and a frequency of 3.2 MHz, a resonant microbubble, approximately 0.75 /spl mu/m in radius, absorbed ultrasonic power of 8.6 /spl mu/W. This calculation predicts that tissue ultrasonic absorption will be increased by more than twice if microbubbles are delivered to the tissue at a concentration in the order of 20 resonant microbubbles/mm/sup 3/. An exteriorized murine kidney was exposed to HIFU at 3.2 MHz in degassed saline and the tissue temperature change was measured. With administration of 0.2 ml/kg Optison, the temperature elevation induced by HIFU exposure was multiplied by two to three times. This effect may have a potential use to enhance the selectivity as well as the throughput of HIFU treatments.
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