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A Fully Automated System for Measuring Cellular Mechanical Properties

机译:全自动的细胞力学性能测量系统

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摘要

As a novel effective label-free biomarker, the mechanical properties of cells have become increasingly important. However, the current methods of mapping cellular mechanical properties are mostly carried out manually, resulting in measurements that are time-consuming with low efficiency. In this article, a fully automated system of measuring the mechanical properties of cells based on atomic force microscopy (AFM) is proposed. In this system, the cells are recognized using an image-processing method and the relative position of the cell, and the AFM tip is accurately calibrated by the local scan method, meaning that the mechanical properties of cells can be measured sequentially without performing the step of AFM imaging. In addition, with the implementation of the automation, the high-throughput measurement of cellular mechanical properties can be performed rapidly. The capability of our system is validated on Raji cells, and the results indicate that the measurement rate of our system is 26 times faster than that of the traditional manual method, providing the technology for high-throughput measurement of cellular mechanical properties.
机译:作为一种新型的有效的无标记生物标志物,细胞的机械性能变得越来越重要。但是,目前绘制细胞力学特性的方法大多是手动执行的,导致测量工作耗时且效率低下。在本文中,提出了一种基于原子力显微镜(AFM)的全自动细胞力学性能测量系统。在该系统中,使用图像处理方法识别细胞,并确定细胞的相对位置,并通过局部扫描方法精确校准AFM尖端,这意味着无需进行步骤即可连续测量细胞的机械性能原子力显微镜成像。另外,通过自动化的实施,可以快速执行细胞机械性能的高通量测量。我们的系统在Raji细胞上的能力得到了验证,结果表明,我们的系统的测量速率比传统的手动方法快26倍,为细胞力学性能的高通量测量提供了技术。

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