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Two-dimensional cell trapping by ultrasound microbeam

机译:超声微束二维细胞捕获

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The availability of sound beams with its beamwidth approaching cell size is extremely important in order to apply the droplet trapping method to cellular manipulation in the Mie regime (cell diameter > wavelength). This can be achieved at frequencies higher than 100 MHz. We thus call ultrasound beams in the frequency range from 100 MHz to a few GHz as ultrasound microbeams. A zinc oxide (ZnO) transducer that is designed and fabricated to transmit a 200 MHz focused sound beam is employed to immobilize a 10 µm leukemia cell (K-562) within the trap. The cell is transversely displaced from the trap center. Lateral displacement and trajectory of the trapped cell location are measured in a two-dimensional domain, validating the retracting cell motion. The potential of this technique for studying cellular adhesion between white blood cells and endothelial cells is discussed, suggesting its capability as a single cell manipulator.
机译:为了将液滴捕获方法应用于Mie态(细胞直径>波长)中的细胞处理,声束的可用度及其束宽接近细胞大小非常重要。这可以在高于100 MHz的频率下实现。因此,我们将频率范围从100 MHz到几GHz的超声波束称为超声波微束。设计和制造用于传输200 MHz聚焦声束的氧化锌(ZnO)换能器用于固定阱中的10 µm白血病细胞(K-562)。细胞从阱中心横向移位。在二维域中测量捕获细胞位置的横向位移和轨迹,从而验证收缩细胞的运动。讨论了这项技术研究白细胞与内皮细胞之间细胞粘附的潜力,表明其作为单细胞操纵剂的能力。

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