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Noninvasive Subcellular Imaging Using Atomic Force Acoustic Microscopy (AFAM)

机译:使用原子力声波显微镜(AFAM)的无创性亚细胞成像

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摘要

We report an imaging approach applying the atomic force acoustic microscopy (AFAM), which has unique potential for nondestructive imaging of cell internal structures. To obtain high spatial resolution images, we optimized the significant imaging parameters, including scanning speeds, feedback configurations and acoustic frequencies of an AFAM system, to increase the amplitude of the acoustic signal and to stabilize the morphological signals. We also combined the acoustic amplitude and phase signals, and generated pseudo-color figures for better illustration of subcellular features such as pseudopodia, membranes and nucleus-like. The subcellular structural image atlas can describe nanoscale details of multiple samples and provide clearer images of the subcellular features compared to other conventional techniques. This study builds a strong basis of transmission AFAM for cell imaging, which can help researchers to clarify the cell structures in diverse biological fields and push the understanding of biology evolution to a new stage.
机译:我们报告了一种应用原子力声学显微镜(AFAM)的成像方法,该方法具有对细胞内部结构进行非破坏性成像的独特潜力。为了获得高空间分辨率的图像,我们优化了重要的成像参数,包括AFAM系统的扫描速度,反馈配置和声频,以增加声信号的幅度并稳定形态信号。我们还结合了声振幅和相位信号,并生成了伪彩色图形,以更好地说明亚细胞特征,例如伪足,膜和核样。与其他常规技术相比,亚细胞结构图像图谱可以描述多个样品的纳米级细节,并提供亚细胞特征的更清晰图像。这项研究为细胞成像的透射AFAM奠定了坚实的基础,可以帮助研究人员阐明不同生物学领域的细胞结构,并将对生物学进化的理解推向新的阶段。

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