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微泡振动的起始

The onset of microbubble vibration.

作者信息

Emmer Marcia, van Wamel Annemieke, Goertz Dave E, de Jong Nico

机构信息

Biomedical Engineering, Erasmus MC, Rotterdam, The Netherlands; Stichting FOM, Utrecht, The Netherlands.

出版信息

Ultrasound Med Biol. 2007 Jun;33(6):941-9. doi: 10.1016/j.ultrasmedbio.2006.11.004. Epub 2007 Apr 23.

Abstract

A linear relationship between the relative expansion of an off-resonance ultrasound contrast microbubble and low acoustic pressures is expected. In this study, high-speed optical recordings of individual phospholipid-coated microbubbles were used to investigate this relationship for microbubbles ranging from 2 to 11 microm and for acoustic pressures ranging from 20 to 250 kPa at a driving frequency of 1.7 MHz. For microbubbles larger than 5 microm, the relative expansion (DeltaD/D0) increased linearly with applied acoustic pressure, starting at the origin. The response of smaller microbubbles (<5 microm) also increased linearly with the applied acoustic pressure. However, linearity started at an acoustic pressure threshold value of 30 to 120 kPa for the different individual microbubbles. Below these pressure values, little or no oscillation was observed. The results may be explained by size-dependent mechanical properties of the phospholipid shells. An imaging technique such as power modulation imaging could profit from the presence of an acoustic pressure threshold in the microbubble response.

摘要

非共振超声造影微泡的相对膨胀与低声压之间预计存在线性关系。在本研究中,使用高速光学记录单个磷脂包被的微泡,以研究直径为2至11微米的微泡在1.7MHz驱动频率下,声压范围为20至250kPa时的这种关系。对于直径大于5微米的微泡,相对膨胀(ΔD/D0)从原点开始随施加的声压呈线性增加。较小微泡(<5微米)的响应也随施加的声压呈线性增加。然而,对于不同的单个微泡,线性关系从30至120kPa的声压阈值开始。在这些压力值以下,几乎没有观察到振荡。这些结果可以用磷脂壳的尺寸依赖性机械性能来解释。诸如功率调制成像之类的成像技术可以从微泡响应中的声压阈值中受益。

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