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Determination of mechanical properties of layered materialswith vector-contrast scanning acoustic microscopyby polar diagram image representation

机译:极谱图图像表示的矢量对比扫描声学显微镜测定层状材料的力学性能

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Microscopic objects including living cells on a planar substrate are investigated in bio-medical applications of scanning acoustic microscopy. Beside of the observation of lateral structures, the determination of sample properties such as density, sound velocity, and attenuation is desired, from which elastic properties can be derived. This can be achieved with the aid of the acoustic phase and magnitude contrast represented in a polar plot. For homogeneous and sufficiently planar objects the contrast in magnitude and phase is a function of the properties of the substrate and the coupling fluid, which both can easily be determined, and of the mechanical properties of the sample under observation. For observation in reflection and variable thickness of the sample the signal will depend on the actual thickness. This signature of the object can be fitted based on a conventional ray model for the sound propagating in the coupling medium and the sample. The model includes also the refraction and reflection at all interfaces between transducer, lens material, coupling fluid, object, and substrate. The method is demonstrated for a chitosan firm deposited on a glass substrate. The scheme presented here is capable to reach a resolution of about and even below 1% for relevant quantities in applications involving imaging at 1.2 GHz in aqueous coupling fluids.
机译:在扫描声学显微镜的生物医学应用中研究了平面基质上的活细胞的微观物体。除了观察侧面结构之外,需要确定样品性质,如密度,声速和衰减,可以从中获得弹性性质。这可以通过借助于在极性图中表示的声相和幅度对比度来实现。对于均匀且足够平面的物体,幅度和相位的对比度是基板和偶联流体的性质的函数,其两者都可以容易地确定,并且在观察中的样品的机械性能。对于样品的反射和可变厚度的观察,信号将取决于实际厚度。该物体的这种签名可以基于传统的射线模型,用于在耦合介质和样品中传播的声音。该模型还包括换能器,透镜材料,耦合流体,物体和基板之间的所有接口的折射和反射。该方法用于沉积在玻璃基板上的壳聚糖件。本文呈现的方案能够在涉及在水性偶联液中的1.2GHz成像中的应用中的相关量来达到约甚至低于1%的分辨率。

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