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A novel OCT-based micro-indentation technique for mechanical characterization of soft tissues

机译:一种基于OCT的新型微压痕技术,用于软组织的机械表征

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摘要

The depth-sensing micro-indentation has been well recognized as a powerful tool for characterizing mechanical properties of solid materials due to its non-destructive approach. Based on the depth-sensing principle, we have developed a new indentation method combined with a high resolution imaging technique, Optical Coherence Tomography (OCT), which can accurately measure the deformation of soft tissues or hydrogels under a spherical indenter of constant force. The Hertz contact theory has been applied for quantitatively correlating the indentation force and the deformation with the mechanical properties of the materials. The Young's modulus of hydrogels estimated by the new method are comparable with those measured by conventional depth-sensing micro-indentation. The advantages of this new method include its capability to characterize mechanical properties of bulk soft materials and amenability to perform creeping tests. More importantly, the measurement can be performed under sterile condition allowing nondestructive, in-situ and real-time investigations on the changes in mechanical properties of soft materials (e.g. hydrogel). This unique character can be applied for various biomechanical investigations such as monitoring reconstruction of engineered tissue.
机译:深度感应微压痕因其非破坏性方法而被公认为是表征固体材料机械性能的有力工具。基于深度感应原理,我们开发了一种与高分辨率成像技术光学相干断层扫描(OCT)相结合的新压痕方法,该方法可以在恒定力的球形压头下准确测量软组织或水凝胶的变形。赫兹接触理论已用于将压入力和变形与材料的机械性能定量相关。通过新方法估算的水凝胶杨氏模量可与常规深度感应微压痕法测得的杨氏模量相媲美。这种新方法的优点包括能够表征块状软材料的机械性能,并能够进行蠕变测试。更重要的是,可以在无菌条件下进行测量,从而可以对软质材料(例如水凝胶)的机械性能变化进行无损,原位和实时研究。这种独特的特性可用于各种生物力学研究,例如监测工程组织的重建。

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