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Marchi, G.; Foehr, P.; Consalvo, S.; Javadzadeh-Kalarhodi, A.; Lang, J.; Hartmann, B.; Alberton, P.; Aszodi, A.; Burgkart, R. und Roths, J. (2019): Fiberoptic microindentation technique for early osteoarthritis diagnosis: an <it><bold>in vitro</it></bold> study on human cartilage. In: Biomedical Microdevices, Bd. 21, Nr. 1, 11

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Abstract

In this study, the capability of a fiber optic microindenter sensor to discriminate between healthy and slightly degenerated human articular cartilage samples is demonstrated. The purely optical indenter sensor is characterized by extremely reduced dimensions (0.125mm in diameter and 27mm in length) in comparison to existing indenter probes offering advantages for endoscopic deployment. The indenter sensor is intended to assist the surgeon in the identification of damaged articular cartilage. From each of seven specimens of human tibia plateau three samples showing different Outerbridge grading were extracted. On each sample stress-relaxation measurements were performed with eight indentation steps, each step being 40m and the relaxation of the material was observed for 240s after each step. A viscoelastic model was used to fit the relaxation and to extract the characteristic parameters according to the model. A highly significant difference in stiffness (p value <0.01) was observed between the native (grade 0) and early diseased (grade 1) human cartilage samples demonstrating the potential of the fiber optic indenter for the diagnosis of cartilage breakdown.

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