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Mechanical Response of Embryonic Stem Cells Using Haptics-Enabled Atomic Force Microscopy

机译:胚胎干细胞使用触觉的原子力显微镜的机械响应

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Mechanical manipulation and characterization of biological cells is currently one of the most exciting research areas in the field of medical robotics applied to cellular level interactions. While biologists are able to ascertain the change in cell status visually based on mRNA or proteins markers, it is often qualitative and difficult to quantitatively define the outcome of a cell progression during differentiation. Consequently, we propose to develop a haptics-enabled atomic force microscopy system to mechanically manipulate and characterize an individual cell. The haptic feedback interface proposed in this paper comprises of a PHANToM haptic feedback device combined with the atomic force microscope (AFM). The system has the capability of measuring forces in nN range and provides a haptic display of the cell indentation forces in real time. We conducted studies on mouse embryonic stem cells (mESC) and our experimental results indicate that the mechanical property of undifferentiated mESC differs from differenttiated mESC.
机译:生物细胞的机械操纵和表征目前是应用于细胞水平相互作用的医学机器人领域中最令人兴奋的研究领域之一。虽然生物学家能够在目测基于mRNA或蛋白质标记的视觉上确定细胞状态的变化,但通常是定性的,并且难以定量地定义分化期间细胞进展的结果。因此,我们建议开发一种能够实现触觉的原子力显微镜系统,以机械地操纵和表征个体细胞。本文提出的触觉反馈界面包括与原子力显微镜(AFM)结合的幻影触觉反馈装置。该系统具有在NN范围内测量力的能力,并且实时地提供细胞缩进力的触觉显示。我们对小鼠胚胎干细胞(MESC)进行了研究,我们的实验结果表明未分化的MESC的力学性质不同于不同的MESC。

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