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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >An experimental study on the stiffness of size-isolated microbubbles using atomic force microscopy
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An experimental study on the stiffness of size-isolated microbubbles using atomic force microscopy

机译:原子力显微镜对尺寸隔离微泡刚度的实验研究

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To fully assess contrast-enhanced acoustic bioeffects in diagnostic and therapeutic procedures, the mechanical properties of microbubbles need to be considered. In the present study, direct measurements of the microbubble stiffness were performed using atomic force microscopy by applying nanoscale compressions (up to 25 nN/s) on size-isolated, lipidcoated microbubbles (diameter ranges of 4 to 6 ;C;m and 6 to 8 ;C;m). The stiffness was found to lie between 4 and 22 mN/m and to decrease exponentially with the microbubble size within the diameter range investigated. No cantilever spring constant effect was found on the measured stiffness. The Young's modulus of the size-isolated microbubbles used in our study ranged between 0.4 and 2 MPa. Microstructures on the surface of the microbubbles were found to influence the overall microbubble elasticity. Our results indicated that more detailed theoretical models are needed to account for the size-dependent microbubble mechanical properties to accurately predict their acoustic behavior. The findings provided useful insights into guidance of cavitation-induced drug and gene delivery and could be used as part of the framework in studies on the shear stresses induced on the blood vessel walls by oscillating microbubbles.
机译:为了在诊断和治疗程序中全面评估对比增强的声学生物效应,需要考虑微泡的机械性能。在本研究中,使用原子力显微镜对尺寸分离的脂质包裹的微气泡(直径范围为4至6; C; m和6至6至6)进行纳米级压缩(最高25 nN / s),直接测量了微气泡的刚度。 8; C; m)。发现刚度在4至22 mN / m之间,并且随着所研究直径范围内的微气泡尺寸呈指数下降。没有发现悬臂弹簧常数对测得的刚度有影响。在我们的研究中,尺寸隔离的微泡的杨氏模量在0.4和2 MPa之间。发现微泡表面上的微结构影响整体微泡弹性。我们的结果表明,需要更详细的理论模型来说明尺寸相关的微泡机械性能,以准确预测其声学行为。这些发现为指导空化诱导的药物和基因传递提供了有用的见解,并可作为研究框架的一部分,用于研究通过振荡微气泡在血管壁上引起的剪切应力。

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