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Non-contact observation of cultured cells by acoustic impedance microscope

机译:通过声阻抗显微镜非接触观察培养细胞

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We are proposing the acoustic microscope for imaging cross sectional acoustic impedance of biological tissues. A focused acoustic beam is transmitted to the object placed on the “rear surface” of a plastic substrate. By scanning the focal point on the surface, a 2-D reflection intensity profile is obtained. A reference material is observed under the same condition. The reflection is interpreted into characteristic acoustic impedance. This paper deals with a new system with a high resolution for observing cultured cells. A pulse voltage was applied to a ZnO type transducer with a sapphire rod. The frequency range of the acoustic wave employed was 200 – 400 MHz. A plastic film of 50 – 70 μm in thickness was used as the substrate. Rat-derived glial (astrocyte) cells were cultured on the film. The reflection was converted into local acoustic impedance at the focal spot. The distance between adjacent pixels was 2 μm, however, the diameter of the focal spot would be as large as 3 – 5 μm. The image reveals the morphological features of astrocyte. Calibration and compensation of acoustic impedance by considering oblique incidence is demonstrated. The acoustic impedance of the cells was spreading between 1.5 – 1.7 MN s/m
机译:我们提出一种用于对生物组织的横截面声阻抗进行成像的声学显微镜。聚焦的声束被传输到放置在塑料基板“后表面”上的物体。通过扫描表面上的焦点,可以获得二维反射强度轮廓。在相同条件下观察参考物质。反射被解释为特征声阻抗。本文研究了一种高分辨率的观察培养细胞的新系统。将脉冲电压施加到具有蓝宝石棒的ZnO型传感器。所使用的声波的频率范围是200 – 400 MHz。使用厚度为50 – 70μm的塑料膜作为基材。在膜上培养大鼠来源的神经胶质细胞(星形胶质细胞)。反射在焦点处转换为局部声阻抗。相邻像素之间的距离为2μm,但是,焦点的直径将高达3-5μm。该图像揭示了星形胶质细胞的形态特征。通过考虑斜入射,证明了声阻抗的校准和补偿。电池的声阻抗在1.5 – 1.7 MN s / m之间扩散

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