首页> 外文会议>Ultrasonics Symposium (IUS), 2009 >Theoretical exploration of shear stress generated by oscillating microbubbles on the cell membrane in the context of sonoporation
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Theoretical exploration of shear stress generated by oscillating microbubbles on the cell membrane in the context of sonoporation

机译:声波作用下细胞膜上微气泡振荡产生的剪切应力的理论探索

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The subject of this study is shear stress exerted on the cell membrane by acoustic microstreaming generated by a contrast microbubble pulsating nearby a cell. This effect is presumed to play a major role in the sonoporation process. However, the analytical formula currently used for estimating the shear stress is based on the assumption that the bubble is hemispherical and resting on the cell membrane. Such a model is not adequate for an encapsulated bubble. In this paper, an improved theory is suggested that assumes a contrast microbubble to be detached from the cell membrane. The second problem considered is how to apply the model for pairwise bubble-cell interactions to bubble-cell solutions which one has to deal with in experiments. An approach is proposed to evaluate the number of cells undergoing sonoporation in a bubble-cell solution.
机译:这项研究的主题是通过声学微流施加在细胞膜上的切应力,该声学微流是由造影剂微泡在细胞附近脉动产生的。据推测这种作用在声波形成过程中起主要作用。但是,当前用于估算剪切应力的分析公式是基于这样的假设,即气泡是半球形的,并停留在细胞膜上。这样的模型对于封装的气泡是不够的。在本文中,提出了一种改进的理论,该理论假设造影剂微泡将从细胞膜上脱落。考虑的第二个问题是如何将成对气泡-细胞相互作用模型应用于气泡-细胞解决方案,这是实验中必须处理的问题。提出了一种方法来评估在气泡细胞溶液中进行声穿孔的细胞数量。

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