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首页> 外文期刊>Japanese journal of applied physics >Improvement in microhollow production using bubble cloud cavitation by dual-frequency ultrasonic wave irradiation
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Improvement in microhollow production using bubble cloud cavitation by dual-frequency ultrasonic wave irradiation

机译:利用双频超声波辐照改善气泡空化产生的微空心

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摘要

Bubble cloud cavitation plays an important role in sonoporation, which produces microhollows on the cell membrane using a microjet. However, it has complicated mechanisms and the optimization of the ultrasonic wave irradiation sequence is difficult. The optimization of an ultrasonic wave irradiation sequence, which allows for effective bubble cloud cavitation, is very important for producing high-quality microhollows. Thus, it is necessary to clarify the mechanism of cavitation for different-frequency ultrasonic waves. In this study, we evaluate bubble cloud cavitation for ultrasonic wave irradiations of different frequencies. The observation of bubble cloud dynamics using a high-speed camera and of microhollows using a confocal laser microscope are performed in this study. From these results, a novel ultrasonic wave irradiation sequence that uses two ultrasonic waves with different frequencies is proposed.
机译:气泡云空化在声孔作用中起着重要作用,声孔作用通过微喷射在细胞膜上产生微空洞。然而,它具有复杂的机制,并且难以优化超声波照射序列。允许有效气泡云空化的超声波辐照顺序的优化对于生产高质量的微空心非常重要。因此,有必要阐明不同频率超声波的空化机理。在这项研究中,我们评估气泡云空化对不同频率的超声波辐射的影响。在这项研究中,使用高速相机观察气泡云动力学,并使用共聚焦激光显微镜观察微孔。从这些结果出发,提出了使用频率不同的两个超声波的新颖的超声波照射顺序。

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  • 来源
    《Japanese journal of applied physics》 |2014年第7s期|07KF18.1-07KF18.6|共6页
  • 作者单位

    Graduate School Engineering, Gunma University, Kiryu, Gunma 376-8515, Japan;

    Graduate School Engineering, Gunma University, Kiryu, Gunma 376-8515, Japan;

    Graduate School Engineering, Gunma University, Kiryu, Gunma 376-8515, Japan;

    Graduate School Engineering, Gunma University, Kiryu, Gunma 376-8515, Japan;

    Graduate School Engineering, Gunma University, Kiryu, Gunma 376-8515, Japan;

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  • 正文语种 eng
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