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Remote imaging of single cell 3D morphology with ultrafast coherent phonons and their resonance harmonics

机译:利用超快相干声子及其共振谐波对单细胞3D形态进行远程成像

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摘要

Cell morphological analysis has long been used in cell biology and physiology for abnormality identification, early cancer detection, and dynamic change analysis under specific environmental stresses. This work reports on the remote mapping of cell 3D morphology with an in-plane resolution limited by optics and an out-of-plane accuracy down to a tenth of the optical wavelength. For this, GHz coherent acoustic phonons and their resonance harmonics were tracked by means of an ultrafast opto-acoustic technique. After illustrating the measurement accuracy with cell-mimetic polymer films we map the 3D morphology of an entire osteosarcoma cell. The resulting image complies with the image obtained by standard atomic force microscopy, and both reveal very close roughness mean values. In addition, while scanning macrophages and monocytes, we demonstrate an enhanced contrast of thickness mapping by taking advantage of the detection of high-frequency resonance harmonics. Illustrations are given with the remote quantitative imaging of the nucleus thickness gradient of migrating monocyte cells.
机译:细胞形态分析长期以来一直用于细胞生物学和生理学中,用于异常识别,早期癌症检测以及在特定环境压力下的动态变化分析。这项工作报告了细胞3D形态的远程映射,其平面内分辨率受到光学系统的限制,且平面外精度低至光学波长的十分之一。为此,通过超快光声技术跟踪了GHz相干声子及其共振谐波。在说明了模拟细胞的聚合物膜的测量精度之后,我们绘制了整个骨肉瘤细胞的3D形态。所得图像与通过标准原子力显微镜获得的图像一致,并且两者均显示出非常接近的粗糙度平均值。此外,在扫描巨噬细胞和单核细胞时,我们通过利用高频共振谐波的检测证明了厚度图的增强对比度。通过对迁移的单核细胞的细胞核厚度梯度进行远程定量成像,给出了图解。

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