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Modeling and Characterization of Encapsulated Microbubbles for Ultrasound Imaging and Drug Delivery

机译:超声成像和药物递送封装微泡的建模与表征

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Intravenously injected encapsulated microbubbles improve the contrast of an ultrasound image. Their destruction is used in measuring blood flow, stimulating arteriogenesis, and drug delivery. We measure attenuation and scattering of ultrasound through solution of commercial contrast agents such as Optison (GE Health Care, Princeton, NJ) and Definity (Bristol Meyer-Squibb Imaging, North Ballerina, MA). We have developed an interfacial rheology model for the encapsulation of such microbubbles. By matching with experimental data, we obtain the characteristic rheological parameters. We compare model predictions with other experiments. We also investigate microbubble destruction under acoustic excitation by measuring time-varying attenuation data. Three regions of acoustic pressure amplitudes are found: at low pressure, there is no destruction; at slightly higher pressure bubbles are destroyed, and the rate of destruction depends on a combination of PRF and amplitude. At a still higher pressure amplitude, the attenuation decreases catastrophically. The last two regimes correspond respectively to 1) slow destruction of bubbles due to increased gas diffusion and 2) complete bubble destruction leading to release of free bubbles. An analytical model for the bubble growth and dissolution will be presented. The effects of membrane permeability and elasticity on the stability of microbubbles are investigated. (Supported by DOD, NSF and NIH).
机译:静脉内注射封装的微泡改善了超声图像的对比度。它们的破坏用于测量血液流动,刺激动脉发生和药物递送。我们通过商业造影剂的解决方案来测量超声波的衰减和散射,例如Okeish(GE Health Care,Princeton,NJ)和明确(Bristol Meyer-Squibb成像,北芭蕾舞女演员,MA)。我们开发了一种用于这种微泡的封装的界面流变模型。通过与实验数据匹配,我们获得特征流变参数。我们将模型预测与其他实验进行比较。我们还通过测量时变衰减数据来研究声学激发的微泡破坏。发现了三个声压幅度的区域:在低压下,没有破坏;在稍高的压力气泡被破坏,破坏率取决于PRF和幅度的组合。在仍然更高的压力幅度下,衰减降低了灾难性。最后两种制度分别对应于1)由于气体扩散的增加​​而缓慢破坏气泡,2)完全泡沫破坏导致释放自由气泡。将介绍泡沫生长和溶解的分析模型。研究了膜渗透性和弹性对微泡的稳定性的影响。 (由国防部,NSF和NIH的支持)。

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