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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Characterization of cellular mechanical behavior at the microscale level by a hybrid force sensing device.
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Characterization of cellular mechanical behavior at the microscale level by a hybrid force sensing device.

机译:混合力传感装置在微观尺度上表征细胞力学行为。

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摘要

This paper deals with the development of an open design platform for characterization of mechanical cellular behavior. The resulting setup combines Scanning Probe Microscopy (SPM) techniques and advanced robotic approaches in order to carry out both prolonged observations and spatial measurements on biological samples. Visual and force feedback is controlled to achieve automatic data acquisition and to monitor process when high skills are required. The issue of the spring constant calibration is addressed using an accurate dynamic vibration approach. Experimentation on the mechanical cell characterization under in vitro conditions on human adherent Epithelial Hela cells demonstrates the viability and effectiveness of the proposed setup. Finally, the JKR (Johnson, Kendall and Roberts), the DMT (Derjaguin, Muller and Toporov) and Hertz contact theories are used to estimate the contact area between the cantilever and the biological sample.
机译:本文讨论了用于表征机械细胞行为的开放设计平台的开发。最终的设置结合了扫描探针显微镜(SPM)技术和先进的机器人方法,以便对生物样品进行长时间的观察和空间测量。控制视觉和力反馈,以实现自动数据采集并在需要高技能时监控过程。使用精确的动态振动方法可以解决弹簧常数校准的问题。在体外条件下对人粘附的上皮Hela细胞进行机械细胞表征的实验证明了所提出装置的可行性和有效性。最后,使用JKR(约翰逊,肯德尔和罗伯茨),DMT(Derjaguin,Muller和Toporov)和赫兹接触理论来估计悬臂和生物样品之间的接触面积。

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